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Articles 151 - 180 of 2945
Full-Text Articles in Medical Specialties
Decorin Deficiency Promotes D-Galactose-Induced Skeletal Muscle Atrophy And Fibrosis By Regulating Itgb1/Akt/Mtor Signalling Pathway, Xiaoqin Luo, Mengxue Zhang, Lili Chen, Ruichang Wang, Jiabing Lian, Zhe Yang, Renato V. Iozzo, Jin Wang, Yan Zhang, Xiuli Bi
Decorin Deficiency Promotes D-Galactose-Induced Skeletal Muscle Atrophy And Fibrosis By Regulating Itgb1/Akt/Mtor Signalling Pathway, Xiaoqin Luo, Mengxue Zhang, Lili Chen, Ruichang Wang, Jiabing Lian, Zhe Yang, Renato V. Iozzo, Jin Wang, Yan Zhang, Xiuli Bi
Department of Pathology, Anatomy, and Cell Biology Faculty Papers
BACKGROUND: Primary sarcopenia is an age-associated disorder with progressive and generalised loss of skeletal muscle strength and mass. Skeletal muscle fibrosis is one of the significant pathological manifestations of age-associated sarcopenia. Decorin, a small dermatan-sulfate proteoglycan, participates in extracellular matrix assembly. In numerous studies, the involvement of decorin is not restricted to matrix structural proteins, and it also affects a diverse variety of biological functions like cell growth, adhesion, migration, proliferation and differentiation. Additionally, it modulates the process of inflammation and fibrillogenesis. Based on these preclinical evidences, we hypothesised that decorin may potentially play an important role in skeletal muscles …
Surgical Removal Of Implanted Microchips To Correct Mri Susceptibility Artifacts In Mice, Elizabeth Hipskind, Nicole Hernandez, Sydney Fox, Tina Manirambona, Rita Schack, Brian Gibson, Robia G Pautler
Surgical Removal Of Implanted Microchips To Correct Mri Susceptibility Artifacts In Mice, Elizabeth Hipskind, Nicole Hernandez, Sydney Fox, Tina Manirambona, Rita Schack, Brian Gibson, Robia G Pautler
Center on Aging Staff Publications
Purpose: Implanted microchips are becoming increasingly common in research for animal identification and have been adopted by commercial vendors for some mouse strains. However, they often contain metal components, which generate magnetic susceptibility artifacts on MR images. Despite this, some microchips are marketed as MR-compatible, even though they are likely to affect image quality.
Methods: We assessed the impact of a radiofrequency identification microchip on MR images of the mouse brain and present a method for precise surgical removal. A handheld magnet was used to locate and stabilize the microchips during removal. Mice were imaged before and after microchip removal. …
Loss Of The Lysosomal Protein Cln3 Triggers C-Abl-Dependent Yap1 Pro-Apoptotic Signaling, Neuza Domingues, Alessia Calcagni', Sofia Freire, Joana Pires, Ricardo Casqueiro, Ivan L Salazar, Niculin Joachim Herz, Tuong Huynh, Katarzyna Wieciorek, Tiago Fleming Outeiro, Henrique Girão, Ira Milosevic, Andrea Ballabio, Nuno Raimundo
Loss Of The Lysosomal Protein Cln3 Triggers C-Abl-Dependent Yap1 Pro-Apoptotic Signaling, Neuza Domingues, Alessia Calcagni', Sofia Freire, Joana Pires, Ricardo Casqueiro, Ivan L Salazar, Niculin Joachim Herz, Tuong Huynh, Katarzyna Wieciorek, Tiago Fleming Outeiro, Henrique Girão, Ira Milosevic, Andrea Ballabio, Nuno Raimundo
Duncan NRI Faculty and Staff Publications
Batten disease is characterized by early-onset blindness, juvenile dementia and death within the second decade of life. The most common genetic cause are mutations in CLN3, encoding a lysosomal protein. Currently, no therapies targeting disease progression are available, largely because its molecular mechanisms remain poorly understood. To understand how CLN3 loss affects cellular signaling, we generated human CLN3 knock-out cells (CLN3-KO) and performed RNA-seq analysis. Our multi-dimensional analysis reveals the transcriptional regulator YAP1 as a key factor in remodeling the transcriptome in CLN3-KO cells. YAP1-mediated pro-apoptotic signaling is also increased as a consequence of CLN3 functional loss in retinal pigment …
Secretory Iga Dysfunction Underlies Poor Prognosis In Fusobacterium-Infected Colorectal Cancer, Ilseok Choi, Kyung-A Kim, Sang Cheol Kim, Donghwan Park, Ki Taek Nam, Jun Hyung Cha, Seungbyn Baek, Junha Cha, Hye-Yeong Jo, Minsun Jung, Melody Y Zeng, Irina Matei, Susan Bullman, Joong Bae Ahn, Yoon Dae Han, Han Sang Kim, Insuk Lee
Secretory Iga Dysfunction Underlies Poor Prognosis In Fusobacterium-Infected Colorectal Cancer, Ilseok Choi, Kyung-A Kim, Sang Cheol Kim, Donghwan Park, Ki Taek Nam, Jun Hyung Cha, Seungbyn Baek, Junha Cha, Hye-Yeong Jo, Minsun Jung, Melody Y Zeng, Irina Matei, Susan Bullman, Joong Bae Ahn, Yoon Dae Han, Han Sang Kim, Insuk Lee
Faculty, Staff and Student Publications
Fusobacterium nucleatum (Fn) is commonly enriched in colorectal cancer (CRC) and associated with poor outcomes, though its mechanisms remain unclear. Our study investigated how Fn affects the tumor microenvironment through single-cell transcriptomic analyses of 42 CRC patient tissues, comparing Fn-positive and Fn-negative tumors. We discovered that Fn impairs IgA plasma cell development and secretory IgA (sIgA) production by disrupting communication with tumor-associated macrophages. Additional experiments in germ-free mice, together with our re-analysis of a publicly available single-cell RNA-seq data set from a CRC mouse model with an intact gut microbiome–both models having been orally gavaged with Fn–jointly validated the causal …
Tumor Intrinsic Mettl5 Modulates Atf4 Translation To Prevent T Cell-Induced Ferroptosis In Ovarian Cancer, Jiakai Hou, Cheng-Wei Ju, Nicholas A Egan, Yanjun Wei, Yunfei Wang, Minghao Dang, Tianyi Zhou, Leilei Shi, Ningbo Zheng, Si Chen, Ashley M Guerrero, Xiaofang Liang, Wanfu Wu, Areej Akhtar, Chitra Dhiman, Debanwita Roy Burman, Andro E Gerges, Mason D Flores, Han Li, Li-Sheng Zhang, Marleen Kok, Xiaobo Mao, Linghua Wang, Qin Feng, Yiwen Chen, Sanghoon Lee, Daniel J Mcgrail, Nidhi Sahni, Chuan He, Amir A Jazaeri, Weiyi Peng
Tumor Intrinsic Mettl5 Modulates Atf4 Translation To Prevent T Cell-Induced Ferroptosis In Ovarian Cancer, Jiakai Hou, Cheng-Wei Ju, Nicholas A Egan, Yanjun Wei, Yunfei Wang, Minghao Dang, Tianyi Zhou, Leilei Shi, Ningbo Zheng, Si Chen, Ashley M Guerrero, Xiaofang Liang, Wanfu Wu, Areej Akhtar, Chitra Dhiman, Debanwita Roy Burman, Andro E Gerges, Mason D Flores, Han Li, Li-Sheng Zhang, Marleen Kok, Xiaobo Mao, Linghua Wang, Qin Feng, Yiwen Chen, Sanghoon Lee, Daniel J Mcgrail, Nidhi Sahni, Chuan He, Amir A Jazaeri, Weiyi Peng
Faculty, Staff and Student Publications
Poor clinical responses to immune checkpoint blockade (ICB) observed in ovarian cancer (OC) highlight an unmet need to understand the mechanisms driving immune evasion in this disease. To address this, an integrative analysis is conducted by combining in vitro genome‐wide immune screens, in vivo ICB screens, and clinical data mining, and METTL5 is identified as a crucial OC‐intrinsic factor that promotes immune resistance. Immunologically “cold” OC tumors and poor responders to ICB exhibit elevated METTL5 expression. Mechanistically, knocking out (KO) METTL5 in OC disrupts ATF4 translation by altering 18S rRNA m6A levels, leading to the downregulation of SLC7A11 and SLC3A2 …
Kras Inhibition Activates An Actionable Cd24 "Do Not Eat Me" Signal In Pancreatic Cancer, Yongkun Wei, Minghui Liu, Er-Yen Yen, Jun Yao, Zhenzhen Xun, Phuoc T Nguyen, Xiaofei Wang, Zecheng Yang, Abdelrahman Yousef, Dean Pan, Yanqing Jin, Ching-Fei Li, Madelaine S Theardy, Jangho Park, Yiming Cai, Mitsunobu Takeda, Matthew Vasquez, Elizabeth M Park, David H Peng, Yong Zhou, Hong Zhao, Timothy P Heffernan, Andrea Viale, Huamin Wang, Stephanie S Watowich, Han Liang, Dan Zhao, Ronald A Depinho, Wantong Yao, Haoqiang Ying
Kras Inhibition Activates An Actionable Cd24 "Do Not Eat Me" Signal In Pancreatic Cancer, Yongkun Wei, Minghui Liu, Er-Yen Yen, Jun Yao, Zhenzhen Xun, Phuoc T Nguyen, Xiaofei Wang, Zecheng Yang, Abdelrahman Yousef, Dean Pan, Yanqing Jin, Ching-Fei Li, Madelaine S Theardy, Jangho Park, Yiming Cai, Mitsunobu Takeda, Matthew Vasquez, Elizabeth M Park, David H Peng, Yong Zhou, Hong Zhao, Timothy P Heffernan, Andrea Viale, Huamin Wang, Stephanie S Watowich, Han Liang, Dan Zhao, Ronald A Depinho, Wantong Yao, Haoqiang Ying
Faculty, Staff and Student Publications
KRASG12C inhibitors (G12Ci) have produced encouraging, albeit modest and transient, clinical benefit in pancreatic ductal adenocarcinoma (PDAC). Identifying and targeting resistance mechanisms to G12Ci treatment is therefore crucial. To better understand the function of KRASG12C and possible G12Ci bypass mechanisms, we developed an autochthonous KRASG12C-driven PDAC model. Compared to the classical KRASG12D PDAC model, the G12C model exhibits slower tumor growth, yet similar histopathological and molecular features. Aligned with clinical experience, G12Ci treatment of KRASG12C tumors produced modest impact despite stimulating a ‘hot’ tumor immune microenvironment. Immunoprofiling revealed that CD24, a ‘don’t eat me’ signal, is significantly upregulated on cancer …
Impact Of Peripheral Circadian Misalignment And Alcohol On The Resiliency Of Intestinal Barrier And Microbiota, Laura Tran, Maliha Shaikh, Phillip A Engen, Ankur Naqib, Dulce M Frausto, Vivian Ramirez, Malia Gasteier, Zlata Bogin, Kristi Lawrence, Lijuan Zhang, Shiwen Song, Stefan J Green, Faraz Bishehsari, Christopher B Forsyth, Ali Keshavarzian, Garth R Swanson
Impact Of Peripheral Circadian Misalignment And Alcohol On The Resiliency Of Intestinal Barrier And Microbiota, Laura Tran, Maliha Shaikh, Phillip A Engen, Ankur Naqib, Dulce M Frausto, Vivian Ramirez, Malia Gasteier, Zlata Bogin, Kristi Lawrence, Lijuan Zhang, Shiwen Song, Stefan J Green, Faraz Bishehsari, Christopher B Forsyth, Ali Keshavarzian, Garth R Swanson
Faculty, Staff and Student Publications
Circadian organization is involved in many gastrointestinal tract (GIT) functions such as the maintenance of intestinal barrier integrity. There is compelling evidence that perturbation of the circadian clock decreases intestinal epithelial cells' resiliency to alcohol-induced injury. One of the most common causes of circadian misalignment is wrong-time eating (largest meal at dinner) in modern societies. Yet, few studies have examined the importance of peripheral circadian rhythms of the GIT to alcohol consumption. Eating patterns during physiologic rest time, defined as wrong-time eating (WTE), misalign the peripheral circadian clock of the GIT and the body's central clock. This study aims to …
Periostin Promotes Sarcoma Growth By Promoting Tumor-Associated Macrophage Migration And Differentiation, Jin-Fen Xiao, Kristin Ishaya, Emily Y Ko, Annaliese Fowler, Marina T Broz, Jlenia Guarnerio
Periostin Promotes Sarcoma Growth By Promoting Tumor-Associated Macrophage Migration And Differentiation, Jin-Fen Xiao, Kristin Ishaya, Emily Y Ko, Annaliese Fowler, Marina T Broz, Jlenia Guarnerio
Faculty, Staff and Student Publications
Soft-tissue sarcomas (STS) are characterized by abundant extracellular matrix (ECM) deposition, yet the functional contribution of specific ECM components remains poorly understood. In this study, we identify periostin (POSTN), a matricellular protein, as a regulator of sarcoma progression and the tumor immune microenvironment. Analysis of human sarcoma datasets revealed that high POSTN expression correlates with poor prognosis and elevated expression of ECM-related and myeloid cell–associated genes. In murine genetic models of sarcoma, tumors expressing high levels of Postn displayed enhanced expression of ECM genes and monocyte-recruiting cytokines. Functional silencing of Postnin vivo reduced tumor growth without altering tumor cell …
Decoding Fibrosis In Nonresolvable Covid-19: A Role For Myeloid-Specific Hif1a Deletion, Kemly Philip, Hannah P Thompson, Scott D Collum, Isabella Lefebvre, Bindu Akkanti, Bihong Zhao, Rahat Hussain, Manish Patel, Michael R Blackburn, Tingting W Mills, Harry Karmouty-Quintana
Decoding Fibrosis In Nonresolvable Covid-19: A Role For Myeloid-Specific Hif1a Deletion, Kemly Philip, Hannah P Thompson, Scott D Collum, Isabella Lefebvre, Bindu Akkanti, Bihong Zhao, Rahat Hussain, Manish Patel, Michael R Blackburn, Tingting W Mills, Harry Karmouty-Quintana
Faculty, Staff and Student Publications
A complication of viral lung infections is the development of pulmonary fibrosis. This phenomenon is most evident in patients with COVID-19, where in its most aggressive form patients developed nonresolvable (NR) COVID-19 requiring lung transplantation. NR-COVID-19 was characterized by the presentation of a fulminant fibrotic lung injury that progressed rapidly, even in patients with limited comorbidities. However, the mechanisms that led to this rapidly progressing form of fibrosis are not fully understood. A common clinical manifestation in the most severe cases of COVID-19 was the presence of "silent" hypoxemia. Thus, we hypothesized that a dysfunctional hypoxic response may result in …
Smart Spatial Omics (S2-Omics) Optimizes Region Of Interest Selection To Capture Molecular Heterogeneity In Diverse Tissues, Musu Yuan, Kaitian Jin, Hanying Yan, Amelia Schroeder, Chunyu Luo, Sicong Yao, Bernhard Dumoulin, Jonathan Levinsohn, Tianhao Luo, Jean R Clemenceau, Inyeop Jang, Minji Kim, Yunhe Liu, Minghua Deng, Emma E Furth, Parker Wilson, Anupma Nayak, Idania Lubo, Luisa Maren Solis Soto, Linghua Wang, Jeong Hwan Park, Katalin Susztak, Tae Hyun Hwang, Mingyao Li
Smart Spatial Omics (S2-Omics) Optimizes Region Of Interest Selection To Capture Molecular Heterogeneity In Diverse Tissues, Musu Yuan, Kaitian Jin, Hanying Yan, Amelia Schroeder, Chunyu Luo, Sicong Yao, Bernhard Dumoulin, Jonathan Levinsohn, Tianhao Luo, Jean R Clemenceau, Inyeop Jang, Minji Kim, Yunhe Liu, Minghua Deng, Emma E Furth, Parker Wilson, Anupma Nayak, Idania Lubo, Luisa Maren Solis Soto, Linghua Wang, Jeong Hwan Park, Katalin Susztak, Tae Hyun Hwang, Mingyao Li
Faculty, Staff and Student Publications
Spatial omics technologies have transformed biomedical research by enabling high-resolution molecular profiling while preserving the native tissue architecture. These advances provide unprecedented insights into tissue structure and function. However, the high cost and time-intensive nature of spatial omics experiments necessitate careful experimental design, particularly in selecting regions of interest (ROIs) from large tissue sections. Currently, ROI selection is performed manually, which introduces subjectivity, inconsistency and a lack of reproducibility. Previous studies have shown strong correlations between spatial molecular patterns and histological features, suggesting that readily available and cost-effective histology images can be leveraged to guide spatial omics experiments. Here we …
Differential Effects Of Murine Stroke Models On Dopaminergic Neurons, Glial Responses, And Neurobehavioral Outcomes, Sidra Tabassum, Heng Hu, Silin Wu, Shuning Huang, Bosco Seong Kyu Yang, Chang-Hun Lee, Aaron W Gusdon, Xuefang S Ren
Differential Effects Of Murine Stroke Models On Dopaminergic Neurons, Glial Responses, And Neurobehavioral Outcomes, Sidra Tabassum, Heng Hu, Silin Wu, Shuning Huang, Bosco Seong Kyu Yang, Chang-Hun Lee, Aaron W Gusdon, Xuefang S Ren
Faculty, Staff and Student Publications
Stroke is a leading cause of disability worldwide, often resulting in persistent motor, cognitive, and emotional impairments. While the hippocampus and amygdala play critical roles in post-stroke behavioral changes, specific neuronal alterations and prolonged glial responses within these regions across different stroke types remain unclear. This study investigates the behavioral, neuronal, and glial effects of subarachnoid hemorrhage (SAH), transient middle cerebral artery occlusion (tMCAO), and photothrombotic stimulation (PTS) in mice. SAH and tMCAO models exhibited significant motor deficits, spatial and recognition memory impairments, and increased anxiety- and depressive-like behaviors, whereas the PTS model showed similar motor and cognitive impairments but …
Inhibiting Monocyte Migration Reduces Arterial Thrombosis And Facilitates Thrombolysis, Hee Jeong Jang, Jiwon Kim, Ha Kim, Taesu Kim, Jinyong Chung, Sebastian Cremer, Marvin Krohn-Grimberghe, Eo Jin Kim, Dawid Schellingerhout, Matthias Nahrendorf, Dong-Eog Kim
Inhibiting Monocyte Migration Reduces Arterial Thrombosis And Facilitates Thrombolysis, Hee Jeong Jang, Jiwon Kim, Ha Kim, Taesu Kim, Jinyong Chung, Sebastian Cremer, Marvin Krohn-Grimberghe, Eo Jin Kim, Dawid Schellingerhout, Matthias Nahrendorf, Dong-Eog Kim
Faculty, Staff and Student Publications
Background: Monocytes contribute to the initiation and propagation of venous thrombosis. Little is known about the roles monocytes play in arterial thrombosis, the cause of stroke and myocardial infarction.
Methods: We investigated how CCR2 (CC chemokine receptor 2) knockout (-/-)-mediated monocyte deficiency affects platelet function, blood coagulation, thrombus volume, and thrombolytic susceptibility in 666 male mice with FeCl3-mediated carotid arterial thrombosis, including 365 C57BL/6 wild type (WT) mice, 295 CCR2-/- mice, and 6 CX3CR1-GFP (CX3C chemokine receptor 1-green fluorescent protein) mice.
Results: Intravital microscopy and flow cytometry showed that both neutrophils and monocytes were recruited to the acute arterial thrombus, …
Profiling The Preclinical Pharmacokinetics And Biodistribution Of A Platinum(Iv)-Based Oxaliplatin Prodrug Oxalitex And Their Significance To Antitumor Response, Guangan He, Gregory D Thiabaud, Kathryn A Shelton, Luke J Segura, Jonathan F Arambula, Jonathan L Sessler, Rick A Finch, Zahid H Siddik
Profiling The Preclinical Pharmacokinetics And Biodistribution Of A Platinum(Iv)-Based Oxaliplatin Prodrug Oxalitex And Their Significance To Antitumor Response, Guangan He, Gregory D Thiabaud, Kathryn A Shelton, Luke J Segura, Jonathan F Arambula, Jonathan L Sessler, Rick A Finch, Zahid H Siddik
Faculty, Staff and Student Publications
OxaliTEX (NOVO-111) is a novel gadolinium(III) texaphyrin-platinum(IV) complex that is under development for clinical trials. It was designed as a prodrug of oxaliplatin (1,2-diaminocyclohexane-platinum(II) oxalate) tethered to a tumor-affinic texaphyrin moiety to improve drug delivery to the tumor. However, oxaliTEX was not only more effective as an antitumor agent but also better tolerated in mice. To appreciate this higher therapeutic index and advance its preclinical development, studies were undertaken to profile its plasma pharmacokinetics, distribution to tumor and normal tissues, and pharmacodynamics of the p53/p21 molecular pathway. Nude mice, with or without a subcutaneous colorectal HCT-116 xenograft harboring a phenotypically …
Mecp2 Interacts With The Super Elongation Complex To Regulate Transcription, Jun Young Sonn, Wonho Kim, Marta Iwanaszko, Yuki Aoi, Yan Li, Guantong Qi, Luke Parkitny, Janice L Brissette, Lorin Weiner, Juan Botas, Ismael Al-Ramahi, Ali Shilatifard, Huda Y Zoghbi
Mecp2 Interacts With The Super Elongation Complex To Regulate Transcription, Jun Young Sonn, Wonho Kim, Marta Iwanaszko, Yuki Aoi, Yan Li, Guantong Qi, Luke Parkitny, Janice L Brissette, Lorin Weiner, Juan Botas, Ismael Al-Ramahi, Ali Shilatifard, Huda Y Zoghbi
Faculty, Staff and Students Publications
Loss-of-function mutations in methyl-CpG binding protein 2 (MECP2) cause Rett syndrome. While we know that MeCP2 binds to methylated cytosines on DNA, the full breadth of the molecular mechanisms by which MeCP2 regulates gene expression remains incompletely understood. Here, using a genetic modifier screen, we identify the super elongation complex, a P-TEFb–containing elongation factor that releases promoter-proximally paused RNA polymerase II, as a genetic interactor of MECP2. MeCP2 physically interacts with SEC subunits and directly binds AFF4, the scaffold of the SEC, via the transcriptional repression domain. Furthermore, MeCP2 facilitates the binding of AFF4 on a subset …
Targeting The Hepatic Circadian Clock Concomitant With Tyrosine Kinase Inhibition Reverses Late-Stage Hepatocellular Carcinoma, Baharan Fekry, Savera Aggarwal, Rachel Van Drunen, Rafael Bravo, Andy Escalante, Constance Atkins, Sheng Pan, Zheng Chen, Kai Sun, David R Hall, Mamoun Younes, Kristin Eckel-Mahan
Targeting The Hepatic Circadian Clock Concomitant With Tyrosine Kinase Inhibition Reverses Late-Stage Hepatocellular Carcinoma, Baharan Fekry, Savera Aggarwal, Rachel Van Drunen, Rafael Bravo, Andy Escalante, Constance Atkins, Sheng Pan, Zheng Chen, Kai Sun, David R Hall, Mamoun Younes, Kristin Eckel-Mahan
Faculty, Staff and Student Publications
Hepatocellular carcinoma (HCC) is a leading cause of cancer-related deaths. Most patients present at advanced stages, and the effectiveness of tyrosine kinase inhibitors (TKIs) and immune checkpoint inhibitors is constrained by limited patient response. A subset of HCC shows elevated expression of the promoter 2 ("P2")-driven hepatocyte nuclear factor 4 alpha (HNF4α) isoform, which directly transcriptionally represses the circadian brain and muscle ARNT-like protein 1 (BMAL1) transcription factor. This subtype of HCC is robustly inhibited by the plant-based flavonoid nobiletin (NOB), a circadian-fortifying compound. Using patient-matched human HCC and serum, we show that BMAL1-deficient HCC shows exaggerated carnitine palmitoyl transferase …
Nivolumab Plus Ipilimumab Induce Hyper-Progression In Renal Medullary Carcinoma: Results Of A Phase Ii Trial And Preclinical Evidence, Melinda Soeung, Xinmiao Yan, Ciro Zanca, Jing Qian, Menuka Karki, Fei Duan, Hania Khan, Li Zhang, David H Peng, Mariah Williams, Rong He, Ziheng Chen, Luigi Perelli, Jianfeng Chen, Rebecca S Tidwell, Pankaj K Chauhan, Courtney N Le, Truong N A Lam, Nirjar Bhattacharya, Rutvi Shah, I-Lin Ho, Jason P Gay, Caroline C Carrillo, Ningping Feng, Kang Le, Guang Gao, Teresa L Perry, Faika Mseeh, Yongying Jiang, Quanyun A Xu, Niki Marie Zacharias, Rahul A Sheth, Tharakeswara K Bathala, Priya Rao, Najat C Daw, Durga N Tripathi, Cheryl L Walker, Mohammad M Mohammad, Jianhua Zhang, Guangchun Han, Yanshuo Chu, Ruiping Wang, Minghao Dang, Enyu Dai, Fuduan Peng, Yunhe Liu, Akshaya Jadhav, Wenhua Lang, Claudio A Arrechedera, Leticia Campos Clemente, Edwin R Parra, Hsinyi Lu, Cara L Haymaker, Ignacio I Wistuba, Andrew Futreal, Andrea Viale, Michael J Soth, Philip Jones, Joseph R Marszalek, Timothy Heffernan, Giulio F Draetta, Nizar M Tannir, Jianjun Gao, Linghua Wang, Giannicola Genovese, Pavlos Msaouel
Nivolumab Plus Ipilimumab Induce Hyper-Progression In Renal Medullary Carcinoma: Results Of A Phase Ii Trial And Preclinical Evidence, Melinda Soeung, Xinmiao Yan, Ciro Zanca, Jing Qian, Menuka Karki, Fei Duan, Hania Khan, Li Zhang, David H Peng, Mariah Williams, Rong He, Ziheng Chen, Luigi Perelli, Jianfeng Chen, Rebecca S Tidwell, Pankaj K Chauhan, Courtney N Le, Truong N A Lam, Nirjar Bhattacharya, Rutvi Shah, I-Lin Ho, Jason P Gay, Caroline C Carrillo, Ningping Feng, Kang Le, Guang Gao, Teresa L Perry, Faika Mseeh, Yongying Jiang, Quanyun A Xu, Niki Marie Zacharias, Rahul A Sheth, Tharakeswara K Bathala, Priya Rao, Najat C Daw, Durga N Tripathi, Cheryl L Walker, Mohammad M Mohammad, Jianhua Zhang, Guangchun Han, Yanshuo Chu, Ruiping Wang, Minghao Dang, Enyu Dai, Fuduan Peng, Yunhe Liu, Akshaya Jadhav, Wenhua Lang, Claudio A Arrechedera, Leticia Campos Clemente, Edwin R Parra, Hsinyi Lu, Cara L Haymaker, Ignacio I Wistuba, Andrew Futreal, Andrea Viale, Michael J Soth, Philip Jones, Joseph R Marszalek, Timothy Heffernan, Giulio F Draetta, Nizar M Tannir, Jianjun Gao, Linghua Wang, Giannicola Genovese, Pavlos Msaouel
Faculty, Staff and Students Publications
Therapeutic options for patients with renal medullary carcinoma (RMC) are limited. Here we report the results of a phase II clinical trial (NCT03274258) of anti-PD1 nivolumab plus anti-CTLA4 ipilimumab in patients with RMC, with objective response rate as primary outcome. Enrollment was halted for futility at a prespecified interim analysis as all 10 treated patients experienced rapid disease progression. 5/10 met radiological criteria for hyperprogression and median progression-free survival (secondary outcome) was 1.38 months (95% confidence interval: 1.28, 1.60). In a post-hoc single-cell RNA sequencing analysis, data from patients with RMC before and after nivolumab plus ipilimumab treatment indicated that …
Naphthalimide-Based Type-I Nano-Photosensitizers For Enhanced Antitumor Photodynamic Therapy: H2s Synergistically Regulates Pet And Self-Assembly, Huiyu Niu, Songnan Wang, Yang Liu, Nana Ma, Shuaiwei Cheng, Beidou Feng, Hyunsun Jeong, Yonggang Yang, Ge Wang, Tony D James, Juyoung Yoon, Jonathan L Sessler, Hua Zhang
Naphthalimide-Based Type-I Nano-Photosensitizers For Enhanced Antitumor Photodynamic Therapy: H2s Synergistically Regulates Pet And Self-Assembly, Huiyu Niu, Songnan Wang, Yang Liu, Nana Ma, Shuaiwei Cheng, Beidou Feng, Hyunsun Jeong, Yonggang Yang, Ge Wang, Tony D James, Juyoung Yoon, Jonathan L Sessler, Hua Zhang
Faculty, Staff and Student Publications
Photodynamic therapy (PDT) relies on a combination of light and photosensitizers (PSs) to achieve local control over cancerous lesions. However, it is subject to limitations, including tumor hypoxia, low tumor targeting, off‐target phototoxicity, and always‐on fluorescence. Here, we propose a design strategy for activated nano‐PSs (N‐PSs) to simultaneously overcome the limitations of PDT, wherein photoinduced electron transfer (PeT) is coupled with an endogenous H2S‐regulated self‐association process to promote Type‐I photochemical reactions. Using theoretical calculations, spectral analysis, and microscopic imaging, we verified the generation of self‐assembly and occurrence of PeT. And it was also shown that H2S could synergistically inhibit the …
Tca Cycle Mode Switch Determines The Fate Of Pirtobrutinib-Tolerant Persister Cells In Mantle Cell Lymphoma, Wei Wang, Qingsong Cai, Yang Liu, Lei Nie, Heng-Huan Lee, Fangfang Yan, Yue Fei, Yixin Yao, Yijing Li, Lin Tan, Philip L Lorenzi, Ying-Nai Wang, Jun Yao, Zhihong Chen, Joseph Mitchell Mcintosh, Cheng-Tai Yu, Preetesh Jain, Vivian C Jiang, Jovanny Vargas, Xiaolin Li, Tianci Zhang, Shaoying Li, David Santos, Selvi Thirumurthi, Erin Heather Seeley, Lukas Mikolaj Simon, Christopher Flowers, Chi Young Ok, Michael Wang
Tca Cycle Mode Switch Determines The Fate Of Pirtobrutinib-Tolerant Persister Cells In Mantle Cell Lymphoma, Wei Wang, Qingsong Cai, Yang Liu, Lei Nie, Heng-Huan Lee, Fangfang Yan, Yue Fei, Yixin Yao, Yijing Li, Lin Tan, Philip L Lorenzi, Ying-Nai Wang, Jun Yao, Zhihong Chen, Joseph Mitchell Mcintosh, Cheng-Tai Yu, Preetesh Jain, Vivian C Jiang, Jovanny Vargas, Xiaolin Li, Tianci Zhang, Shaoying Li, David Santos, Selvi Thirumurthi, Erin Heather Seeley, Lukas Mikolaj Simon, Christopher Flowers, Chi Young Ok, Michael Wang
Faculty, Staff and Student Publications
Bruton tyrosine kinase inhibitors (BTKis) and cell therapy have successfully been used to treat mantle cell lymphoma (MCL). However, therapy resistance inevitably emerges. Cancer cells can progressively develop stable resistance by traversing through a transient drug-tolerant persister (DTP) state. The mechanisms enabling DTP cells to reversibly adapt to therapies and evolve to acquire heterogeneity remain poorly understood, and characterizing DTP cells in MCL continues to pose a challenge for clinic translation. Here, using pirtobrutinib, a recently US Food and Drug Administration-approved noncovalent BTKi, we identified pirtobrutinib-tolerant persister cells exhibiting morphological variability by presenting a unique population of enlarged cells (giant …
Multiomic Analysis Reveals A Key Bcat1 Role In Mtor Activation By B Cell Receptor And Tlr9, Rui Guo, Yizhe Sun, Matthew Y Lim, Hardik Shah, Joao A Paulo, Rahaman A Ahmed, Weixing Li, Yuchen Zhang, Haopeng Yang, Liang Wei Wang, Daniel Strebinger, Nicholas A Smith, Meng Li, Merrin Man Long Leong, Michael Lutchenkov, Jin Hua Liang, Zhixuan Li, Yin Wang, Rishi Puri, Ari Melnick, Michael R Green, John M Asara, Adonia E Papathanassiu, Duane R Wesemann, Steven P Gygi, Vamsi K Mootha, Benjamin E Gewurz
Multiomic Analysis Reveals A Key Bcat1 Role In Mtor Activation By B Cell Receptor And Tlr9, Rui Guo, Yizhe Sun, Matthew Y Lim, Hardik Shah, Joao A Paulo, Rahaman A Ahmed, Weixing Li, Yuchen Zhang, Haopeng Yang, Liang Wei Wang, Daniel Strebinger, Nicholas A Smith, Meng Li, Merrin Man Long Leong, Michael Lutchenkov, Jin Hua Liang, Zhixuan Li, Yin Wang, Rishi Puri, Ari Melnick, Michael R Green, John M Asara, Adonia E Papathanassiu, Duane R Wesemann, Steven P Gygi, Vamsi K Mootha, Benjamin E Gewurz
Faculty, Staff and Student Publications
B lymphocytes play major adaptive immune roles, producing antibodies and driving T cell responses. However, how immunometabolism networks support B cell activation and differentiation in response to distinct receptor stimuli remains incompletely understood. To gain insights, we systematically investigated acute primary human B cell transcriptional, translational, and metabolomic responses to B cell receptor (BCR), TLR9, CD40-ligand (CD40L), IL-4, or combinations thereof. T cell-independent BCR/TLR9 costimulation, which drives malignant and autoimmune B cell states, highly induced transaminase branched chain amino acid transaminase 1 (BCAT1), which localized to lysosomal membranes to support branched chain amino acid synthesis and mTORC1 activation. BCAT1 inhibition …
Characterizing The Metabolites Of The Tyrosine-Kinase Inhibitor Pexidartinib In Mouse Feces, Urine, Plasma, And Liver, Xuan Qin, Si Chen, John M Hakenjos, Jian Wang, Lei Guo, Ashish Dogra, Zhaoyong Hu, Kevin R Mackenzie, Feng Li
Characterizing The Metabolites Of The Tyrosine-Kinase Inhibitor Pexidartinib In Mouse Feces, Urine, Plasma, And Liver, Xuan Qin, Si Chen, John M Hakenjos, Jian Wang, Lei Guo, Ashish Dogra, Zhaoyong Hu, Kevin R Mackenzie, Feng Li
Faculty, Staff and Students Publications
Pexidartinib (PEX, TURALIO®), a tyrosine kinase inhibitor, is approved for treating tenosynovial giant cell tumor in adults. However, its potential to cause fatal liver injury has prompted the U.S. FDA to issue a black box warning, and the mechanisms underlying its hepatotoxicity remain largely unknown. As biotransformation may contribute to PEX-induced hepatotoxicity, understanding its metabolism is essential. Our previous research indicated that PEX forms reactive metabolites in human and mouse liver microsomes and in human hepatocytes. We investigated PEX metabolism and liver distribution in mice with a focus on metabolite characterization. Our data shows that PEX is mainly excreted into …
Multisite Assembly Of Gateway Induced Clones (Magic): A Flexible Cloning Toolbox For Use In Vertebrate Model Systems, William B Gillespie, Yuwen Zhang, Oscar E Ruiz, Juan Cerda, Joshua Ortiz-Guzman, Michelle Sherman, Williamson D Turner, Gabrielle Largoza, Lili E Mosser, Esther Fujimoto, Chi-Bin Chien, Kristen M Kwan, Benjamin R Arenkiel, W Patrick Devine, Joshua D Wythe
Multisite Assembly Of Gateway Induced Clones (Magic): A Flexible Cloning Toolbox For Use In Vertebrate Model Systems, William B Gillespie, Yuwen Zhang, Oscar E Ruiz, Juan Cerda, Joshua Ortiz-Guzman, Michelle Sherman, Williamson D Turner, Gabrielle Largoza, Lili E Mosser, Esther Fujimoto, Chi-Bin Chien, Kristen M Kwan, Benjamin R Arenkiel, W Patrick Devine, Joshua D Wythe
Duncan NRI Faculty and Staff Publications
Here, we present MultiSite Assembly of Gateway Induced Clones (MAGIC), which leverages Gateway-based recombinatorial cloning technology for rapid, modular assembly of plasmids to facilitate transgenesis in cells and vertebrate animal models. The MAGIC collection of plasmids spans a range of in vitro and in vivo uses, from tools for optically and chemically tunable gene expression, to simultaneous expression of microRNAs and fluorescent reporters, to a suite of distinct subcellular compartmental fluorescent reporters, to Cre and Dre recombinase-dependent gene expression. MAGIC system components are compatible with existing MultiSite Gateway Tol2 systems currently used in zebrafish and mammalian lentiviral and adenoviral Destination …
Oligomeric Cystatin C Supports The Immunosuppressive Activity Of Myeloid Cells Through Interaction With Inhibitory Receptors, Chengcheng Zhang, Yubo He, Xiaoye Liu, Jingjing Xie, Meng Fang, Xing Yang, Ryan Huang, Qi Lou, Bufan Li, Ankit Gupta, Cheryl Lewis, Marc I Diamond, Ningyan Zhang, Zhiqiang An, Cheng Cheng Zhang
Oligomeric Cystatin C Supports The Immunosuppressive Activity Of Myeloid Cells Through Interaction With Inhibitory Receptors, Chengcheng Zhang, Yubo He, Xiaoye Liu, Jingjing Xie, Meng Fang, Xing Yang, Ryan Huang, Qi Lou, Bufan Li, Ankit Gupta, Cheryl Lewis, Marc I Diamond, Ningyan Zhang, Zhiqiang An, Cheng Cheng Zhang
Faculty, Staff and Student Publications
Amyloid proteins are linked to various diseases; however, their functional roles in immunity and cancer remain unclear. Here, we establish a direct link between oligomeric cystatin C-a cysteine cathepsin inhibitor and a well-characterized amyloidogenic protein-within the tumor microenvironment and the immune inhibitory receptors LILRB2 and LILRB5 on myeloid cells. We demonstrated that human LILRB2 and LILRB5, along with their murine counterpart PIRB, serve as functional receptors for cystatin C oligomers. Engagement of these inhibitory receptors by oligomeric cystatin C enhances the immunosuppressive activity of myeloid cells, leading to T-cell suppression and tumor progression. Deletion of the CST3 gene, which encodes …
A Role For Gut Mycobiome And Altered Fungal-Bacterial Interactions In Women With Endometriosis†, Chandni Talwar, Ashirbad Guria, Kristi Hoffman, Scott Biest, Patricia Jimenez, Ramakrishna Kommagani
A Role For Gut Mycobiome And Altered Fungal-Bacterial Interactions In Women With Endometriosis†, Chandni Talwar, Ashirbad Guria, Kristi Hoffman, Scott Biest, Patricia Jimenez, Ramakrishna Kommagani
Faculty, Staff and Students Publications
Endometriosis is a gynecological pathology prevalent in reproductive age women in which the inner uterine wall (endometrium) grows outside as ectopic lesions. The inflammation resulting from these growing implants closely associates with disease severity, causing chronic pain and infertility. Emerging studies have found altered bacterial communities in endometriosis and a causal role for gut bacteria in endometriosis. However, the role of the gut mycobiome, i.e., the fungal component of the microbiome in endometriosis is a current knowledge gap that needs to be addressed. In this study, utilizing the stool samples from women with endometriosis, we found that the gut fungal …
Design, Optimization, And Development Of Ripk1 Degraders With Improved Pharmacokinetic And Pharmacodynamic Properties, Dong Lu, Xin Yu, Hanfeng Lin, Ran Cheng, Bin Yang, Min Zhang, Jingjing Chen, Feng Li, Xiaoli Qi, Jin Wang
Design, Optimization, And Development Of Ripk1 Degraders With Improved Pharmacokinetic And Pharmacodynamic Properties, Dong Lu, Xin Yu, Hanfeng Lin, Ran Cheng, Bin Yang, Min Zhang, Jingjing Chen, Feng Li, Xiaoli Qi, Jin Wang
Faculty, Staff and Students Publications
Pharmacological degradation of receptor-interacting protein kinase 1 (RIPK1) offers a compelling therapeutic strategy to overcome its scaffolding role in tumor resistance and to enhance the efficacy of immune checkpoint blockade (ICB) therapies. In this study, we report the discovery of a novel RIPK1 degrader, LD5097(24b), developed through systematic optimization of its precursor compound, LD4172—specifically refining the linker, RIPK1 warhead exit vector, and VHL ligand components. LD5097(24b) exhibits potent and selective RIPK1 degradation, triggering rapid and efficient downregulation of RIPK1 and significantly enhancing TNFα-mediated apoptosis in Jurkat cells. Compared to LD4172, LD5097(24b) demonstrates markedly improved metabolic stability and pharmacokinetic properties. In …
Developing A General Ai Model For Integrating Diverse Genomic Modalities And Comprehensive Genomic Knowledge, Zhenhao Zhang, Xinyu Bao, Linghua Jiang, Xin Luo, Zheyu Zhang, Jing Yin, Meiqi Zhao, Yichun Wang, Annelise Comai, Joerg Waldhaus, Anders S Hansen, Wenbo Li, Jie Liu
Developing A General Ai Model For Integrating Diverse Genomic Modalities And Comprehensive Genomic Knowledge, Zhenhao Zhang, Xinyu Bao, Linghua Jiang, Xin Luo, Zheyu Zhang, Jing Yin, Meiqi Zhao, Yichun Wang, Annelise Comai, Joerg Waldhaus, Anders S Hansen, Wenbo Li, Jie Liu
Faculty, Staff and Student Publications
Advances in next-generation sequencing technologies have vastly expanded the availability of diverse genomic, epigenomic, and transcriptomic data, presenting the opportunity to develop a general AI model that integrates comprehensive genomic knowledge into a unified model. Unlike previous predictive models, which are typically specialized to certain tasks, our general AI model unifies a wide range of genomic modalities, such as nascent RNA and ultra-high-resolution chromatin organization, within a multi-task architecture. Using ATAC-seq and DNA sequences as inputs, we incorporated diverse genomic modalities as output, and the model exhibits strong generalizability across different cell types and tissues in all tasks we trained. …
Slc35g3 Is A Udp-N-Acetylglucosamine Transporter For Sperm Glycoprotein Formation And Underpins Male Fertility In Mice, Daisuke Mashiko, Shingo Tonai, Haruhiko Miyata, Martin M Matzuk, Masahito Ikawa
Slc35g3 Is A Udp-N-Acetylglucosamine Transporter For Sperm Glycoprotein Formation And Underpins Male Fertility In Mice, Daisuke Mashiko, Shingo Tonai, Haruhiko Miyata, Martin M Matzuk, Masahito Ikawa
Faculty, Staff and Students Publications
Despite the recognized importance of glycans in biological phenomena, their complex roles in spermatogenesis and sperm function remain unclear. SLC35G3, a 10-transmembrane protein specifically found in early round spermatids, belongs to the sugar-nucleotide transporter family, indicating its involvement in glycan formation. In this study, we found that Slc35g3 knockout male mice were sterile due to impaired sperm functions in uterotubal junction passage, zona pellucida binding, and oocyte fusion. Mouse SLC35G3 has UDP-GlcNAc transporter activity, and its ablation caused abnormal processing of the sperm plasma membrane and acrosome membrane proteins. Reported human SLC35G3 mutations (F267L and T179HfsTer27) diminished the UDP-GlcNAc transporter …
Preclinical Efficacy Of Tasquinimod-Based Combinations In Advanced Myeloproliferative Neoplasms In Blastic Phase, Warren Fiskus, Lucia Masarova, Christopher P Mill, Christine E Birdwell, Kaberi Das, Hanxi Hou, John A Davis, Antrix Jain, Anna Malovannaya, Taghi Manshouri, Andrew Dunbar, Surbhi Sharma, Tapan M Kadia, Courtney D Dinardo, Prithviraj Bose, Naveen Pemmaraju, Sanam Loghavi, Xiaoping Su, Raajit K Rampal, Marie Törngren, Kapil N Bhalla
Preclinical Efficacy Of Tasquinimod-Based Combinations In Advanced Myeloproliferative Neoplasms In Blastic Phase, Warren Fiskus, Lucia Masarova, Christopher P Mill, Christine E Birdwell, Kaberi Das, Hanxi Hou, John A Davis, Antrix Jain, Anna Malovannaya, Taghi Manshouri, Andrew Dunbar, Surbhi Sharma, Tapan M Kadia, Courtney D Dinardo, Prithviraj Bose, Naveen Pemmaraju, Sanam Loghavi, Xiaoping Su, Raajit K Rampal, Marie Törngren, Kapil N Bhalla
Faculty, Staff and Students Publications
The alarmins, S100A8 (A8) and S100A9 (A9), are low molecular weight proteins belonging to the S100 protein family. A8 and A9 are secreted into the extracellular space and plasma, in which they interact with Toll-like receptor 4, receptor for advanced glycation end products, and CD33. In these studies, we determined the preclinical efficacy of tasquinimod (TQ) against advanced myeloproliferative neoplasm (MPN) cell lines and patient-derived (PD) CD34+ blastic phase (BP; >5% blasts in the peripheral blood) MPN cells. TQ induced loss of viability in cell lines and PD MPN-BP cells, but not in normal CD34+ progenitor cells. In TQ-treated PD …
Reprogramming Tumor Microenvironment Via Systemic Delivery Of Tlr3 Agonist And Manganese Nanoparticle, Young Seok Cho, Xingwu Zhou, Xiaoqi Sun, Ziye Wan, Julia Crowther, Mariko Takahashi, Swetha Kodamasimham, Qi Wu, May Thazin Phoo, Youngseo Na, Kai Han, Zaiye Li, Anna Schwendeman, Steven P Schwendeman, Yu Leo Lei, James J Moon
Reprogramming Tumor Microenvironment Via Systemic Delivery Of Tlr3 Agonist And Manganese Nanoparticle, Young Seok Cho, Xingwu Zhou, Xiaoqi Sun, Ziye Wan, Julia Crowther, Mariko Takahashi, Swetha Kodamasimham, Qi Wu, May Thazin Phoo, Youngseo Na, Kai Han, Zaiye Li, Anna Schwendeman, Steven P Schwendeman, Yu Leo Lei, James J Moon
Faculty, Staff and Student Publications
Toll-like receptor (TLR) agonists, as potent immunostimulatory adjuvants, play a critical role in linking the innate and adaptive immune responses. However, their antitumor effects as cancer immunotherapeutic agents have been limited. Here, we report our finding that manganese ion (Mn2+) potentiates various TLR agonists, leading to robust activation of the TLR pathway and the stimulator of interferon genes (STING) pathway among innate immune cells. In particular, we have observed robust antitumor efficacy after intratumoral administration of a TLR3 agonist and Mn2+. To achieve systemic codelivery of TLR3 agonist and Mn2+, we have developed a low-molecular-weight poly(inosinic:cytidylic acid)-Mn2+ coordination lipid nanoparticle …
Genome-Wide Crispr Screens Identify Critical Targets To Enhance Car-Nk Cell Antitumor Potency, Alexander Biederstädt, Rafet Basar, Jeong-Min Park, Nadima Uprety, Rejeena Shrestha, Francia Reyes Silva, Merve Dede, John Watts, Sunil Acharya, Donghai Xiong, Bin Liu, May Daher, Hind Rafei, Pinaki Banerjee, Ping Li, Sanjida Islam, Huihui Fan, Mayra Shanley, Jingling Jin, Bijender Kumar, Vernikka Woods, Paul Lin, Silvia Tiberti, Ana Karen Nunez Cortes, Xin Ru Jiang, Inci Biederstädt, Patrick Zhang, Ye Li, Seema Rawal, Enli Liu, Luis Muniz-Feliciano, Gary M Deyter, Elizabeth J Shpall, Natalie Wall Fowlkes, Ken Chen, Katayoun Rezvani
Genome-Wide Crispr Screens Identify Critical Targets To Enhance Car-Nk Cell Antitumor Potency, Alexander Biederstädt, Rafet Basar, Jeong-Min Park, Nadima Uprety, Rejeena Shrestha, Francia Reyes Silva, Merve Dede, John Watts, Sunil Acharya, Donghai Xiong, Bin Liu, May Daher, Hind Rafei, Pinaki Banerjee, Ping Li, Sanjida Islam, Huihui Fan, Mayra Shanley, Jingling Jin, Bijender Kumar, Vernikka Woods, Paul Lin, Silvia Tiberti, Ana Karen Nunez Cortes, Xin Ru Jiang, Inci Biederstädt, Patrick Zhang, Ye Li, Seema Rawal, Enli Liu, Luis Muniz-Feliciano, Gary M Deyter, Elizabeth J Shpall, Natalie Wall Fowlkes, Ken Chen, Katayoun Rezvani
Faculty, Staff and Student Publications
Adoptive cell therapy using engineered natural killer (NK) cells is a promising approach for cancer treatment, with targeted gene editing offering the potential to further enhance their therapeutic efficacy. However, the spectrum of actionable genetic targets to overcome tumor and microenvironment-mediated immunosuppression remains largely unexplored. We performed multiple genome-wide CRISPR screens in primary human NK cells and identified critical checkpoints regulating resistance to immunosuppressive pressures. Ablation of MED12, ARIH2, and CCNC significantly improved NK cell antitumor activity against multiple treatment-refractory human cancers in vitro and in vivo. CRISPR editing augmented both innate and CAR-mediated NK cell function, associated with enhanced …
Development Of A Targeted Bioprotac Degrader Selective For Misfolded Sod1, Christen G Chisholm, Rachael Bartlett, Mikayla L Brown, Emma-Jayne Proctor, Natalie E Farrawell, Jody Gorman, Fabien Delerue, Lars M Ittner, Kara L Vine-Perrow, Heath Ecroyd, Neil R Cashman, Darren N Saunders, Luke Mcalary, Jeremy S Lum, Justin J Yerbury
Development Of A Targeted Bioprotac Degrader Selective For Misfolded Sod1, Christen G Chisholm, Rachael Bartlett, Mikayla L Brown, Emma-Jayne Proctor, Natalie E Farrawell, Jody Gorman, Fabien Delerue, Lars M Ittner, Kara L Vine-Perrow, Heath Ecroyd, Neil R Cashman, Darren N Saunders, Luke Mcalary, Jeremy S Lum, Justin J Yerbury
Faculty, Staff and Student Publications
The accumulation of misfolded proteins underlies a broad range of neurodegenerative diseases, including amyotrophic lateral sclerosis (ALS). Due to their dynamic nature, these misfolded proteins have proven challenging to target therapeutically. Here, we specifically target misfolded disease variants of the ALS-associated protein superoxide dismutase 1 (SOD1), using a biological proteolysis targeting chimera (BioPROTAC) composed of a SOD1-specific intrabody and an E3 ubiquitin ligase. Screening of intrabodies and E3 ligases for optimal BioPROTAC construction reveals a candidate capable of degrading multiple disease variants of SOD1, preventing their aggregation in cells. Using CRISPR/Cas9 technology to develop a BioPROTAC transgenic mouse line, we …