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2023

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Articles 181 - 210 of 263

Full-Text Articles in Medical Cell Biology

Actin Cytoskeleton Vulnerability To Disulfide Stress Mediates Disulfidptosi, Xiaoguang Liu, Litong Nie, Yilei Zhang, Yuelong Yan, Chao Wang, Medina Colic, Kellen Olszewski, Amber Horbath, Xiong Chen, Guang Lei, Chao Mao, Shiqi Wu, Li Zhuang, Masha V Poyurovsky, M James You, Traver Hart, Daniel D Billadeau, Junjie Chen, Boyi Gan Mar 2023

Actin Cytoskeleton Vulnerability To Disulfide Stress Mediates Disulfidptosi, Xiaoguang Liu, Litong Nie, Yilei Zhang, Yuelong Yan, Chao Wang, Medina Colic, Kellen Olszewski, Amber Horbath, Xiong Chen, Guang Lei, Chao Mao, Shiqi Wu, Li Zhuang, Masha V Poyurovsky, M James You, Traver Hart, Daniel D Billadeau, Junjie Chen, Boyi Gan

Faculty, Staff and Student Publications

SLC7A11-mediated cystine uptake suppresses ferroptosis yet promotes cell death under glucose starvation; the nature of the latter cell death remains unknown. Here, we show that aberrant accumulation of intracellular disulfides in SLC7A11high cells under glucose starvation induces a previously uncharacterized form of cell death distinct from apoptosis or ferroptosis. We term this cell death disulfidptosis. Chemical proteomics and cell biological analyses showed that glucose starvation in SLC7A11high cells induces aberrant disulfide bonds in actin cytoskeleton proteins and F-actin collapse in a SLC7A11-dependent manner. CRISPR screens and functional studies revealed that inactivation of the WAVE regulatory complex (WRC, which promotes actin …


Pyroptosis In Neutrophils: Multimodal Integration Of Inflammasome And Regulated Cell Death Signaling Pathways, George R Dubyak, Brandon A Miller, Eric Pearlman Mar 2023

Pyroptosis In Neutrophils: Multimodal Integration Of Inflammasome And Regulated Cell Death Signaling Pathways, George R Dubyak, Brandon A Miller, Eric Pearlman

Faculty, Staff and Student Publications

Pyroptosis is a proinflammatory mode of lytic cell death mediated by accumulation of plasma membrane (PM) macropores composed of gasdermin-family (GSDM) proteins. It facilitates two major functions in innate immunity: (i) elimination of intracellular replicative niches for pathogenic bacteria; and (ii) non-classical secretion of IL-1 family cytokines that amplify host-beneficial inflammatory responses to microbial infection or tissue damage. Physiological roles for gasdermin D (GSDMD) in pyroptosis and IL-1β release during inflammasome signaling have been extensively characterized in macrophages. This involves cleavage of GSDMD by caspase-1 to generate GSDMD macropores that mediate IL-1β efflux and progression to pyroptotic lysis. Neutrophils, which …


Ferroptosis In Life: To Be Or Not To Be, Ling Xu, Yu'e Liu, Xi Chen, Hua Zhong, Yi Wang Mar 2023

Ferroptosis In Life: To Be Or Not To Be, Ling Xu, Yu'e Liu, Xi Chen, Hua Zhong, Yi Wang

Faculty, Staff and Students Publications

Ferroptosis is a novel type of programmed cell death, characterized by a dysregulated iron metabolism and accumulation of lipid peroxides. It features the alteration of mitochondria and aberrant accumulation of excessive iron as well as loss of the cysteine-glutathione-GPX4 axis. Eventually, the accumulated lipid peroxides result in lethal damage to the cells. Ferroptosis is induced by the overloading of iron and the accumulation of ROS and can be inhibited by the activation of the GPX4 pathway, FS1-CoQ10 pathway, GCH1-BH4 pathway, and the DHODH pathway, it is also regulated by the oncogenes and tumor suppressors. Ferroptosis involves various physiological and pathological …


Deep Learning-Based Pathology Image Analysis Predicts Cancer Progression Risk In Patients With Oral Leukoplakia, Xinyi Zhang, Frederico O Gleber-Netto, Shidan Wang, Roberta Rayra Martins-Chaves, Ricardo Santiago Gomez, Nadarajah Vigneswaran, Arunangshu Sarkar, William N William, Vassiliki Papadimitrakopoulou, Michelle Williams, Diana Bell, Doreen Palsgrove, Justin Bishop, John V Heymach, Ann M Gillenwater, Jeffrey N Myers, Renata Ferrarotto, Scott M Lippman, Curtis Rg Pickering, Guanghua Xiao Mar 2023

Deep Learning-Based Pathology Image Analysis Predicts Cancer Progression Risk In Patients With Oral Leukoplakia, Xinyi Zhang, Frederico O Gleber-Netto, Shidan Wang, Roberta Rayra Martins-Chaves, Ricardo Santiago Gomez, Nadarajah Vigneswaran, Arunangshu Sarkar, William N William, Vassiliki Papadimitrakopoulou, Michelle Williams, Diana Bell, Doreen Palsgrove, Justin Bishop, John V Heymach, Ann M Gillenwater, Jeffrey N Myers, Renata Ferrarotto, Scott M Lippman, Curtis Rg Pickering, Guanghua Xiao

Faculty, Staff and Student Publications

BACKGROUND: Oral leukoplakia (OL) is associated with an increased risk for oral cancer (OC) development. Prediction of OL cancer progression may contribute to decreased OC morbidity and mortality by favoring early intervention. Current OL progression risk assessment approaches face large interobserver variability and is weakly prognostic. We hypothesized that convolutional neural networks (CNN)-based histology image analyses could accelerate the discovery of better OC progression risk models.

METHODS: Our CNN-based oral mucosa risk stratification model (OMRS) was trained to classify a set of nondysplastic oral mucosa (OM) and a set of OC H&E slides. As a result, the OMRS model could …


Supporting A Culture Of Patient Safety: Resident-Led Patient Safety Event Reviews In A Pathology Residency Training Program, Catherine Tucker, Rebecca C. Jaffe,, Allison F Goldberg Feb 2023

Supporting A Culture Of Patient Safety: Resident-Led Patient Safety Event Reviews In A Pathology Residency Training Program, Catherine Tucker, Rebecca C. Jaffe,, Allison F Goldberg

Department of Pathology, Anatomy, and Cell Biology Faculty Papers

Patient safety is a critical component of quality patient care at any healthcare institution. In order to support a culture of patient safety, and in the context of a hospital-wide patient safety initiative at our institution, we have created and implemented a new patient safety curriculum within our training program. The curriculum is embedded in an introductory course for first-year residents, in which residents gain an understanding of the multifaceted role of the pathologist in patient care. The patient safety curriculum is a resident-centered event review process and includes 1) identification and reporting of a patient safety event, 2) event …


Toll-Like Receptor 4 Signaling In Osteoblasts Is Required For Load-Induced Bone Formation In Mice, Ibtesam Rajpar, Gaurav Kumar, Paolo Fortina, Ryan E. Tomlinson Feb 2023

Toll-Like Receptor 4 Signaling In Osteoblasts Is Required For Load-Induced Bone Formation In Mice, Ibtesam Rajpar, Gaurav Kumar, Paolo Fortina, Ryan E. Tomlinson

Department of Orthopaedic Surgery Faculty Papers

In mature bone, NGF is produced by osteoblasts following mechanical loading and signals through resident sensory nerves expressing its high affinity receptor, neurotrophic tyrosine kinase receptor type 1 (TrkA), to support bone formation. Here, we investigated whether osteoblastic expression of Toll-like receptor 4 (TLR4), a key receptor in the NF-κB signaling pathway, is required to initiate NGF-TrkA signaling required for load-induced bone formation. Although Tlr4 conditional knockout mice have normal skeletal mass and strength in adulthood, the loss of TLR4 signaling significantly reduced lamellar bone formation following loading. Inhibition of TLR4 signaling reduced Ngf expression in primary osteoblasts and RNA …


Excess Folic Acid Intake Increases Dna De Novo Point Mutations, Xuanye Cao, Jianfeng Xu, Ying L Lin, Robert M Cabrera, Qiuying Chen, Chaofan Zhang, John W Steele, Xiao Han, Steven S Gross, Bogdan J Wlodarczyk, James R Lupski, Wei Li, Hongyan Wang, Richard H Finnell, Yunping Lei Feb 2023

Excess Folic Acid Intake Increases Dna De Novo Point Mutations, Xuanye Cao, Jianfeng Xu, Ying L Lin, Robert M Cabrera, Qiuying Chen, Chaofan Zhang, John W Steele, Xiao Han, Steven S Gross, Bogdan J Wlodarczyk, James R Lupski, Wei Li, Hongyan Wang, Richard H Finnell, Yunping Lei

Faculty, Staff and Students Publications

No abstract provided.


Uncovering Novel Regulators Of Memory Using C Elegans Genetic And Genomic Analysis, Katie L Brandel-Ankrapp, Rachel N Arey Feb 2023

Uncovering Novel Regulators Of Memory Using C Elegans Genetic And Genomic Analysis, Katie L Brandel-Ankrapp, Rachel N Arey

Faculty, Staff and Students Publications

How organisms learn and encode memory is an outstanding question in neuroscience research. Specifically, how memories are acquired and consolidated at the level of molecular and gene pathways remains unclear. In addition, memory is disrupted in a wide variety of neurological disorders; therefore, discovering molecular regulators of memory may reveal therapeutic targets for these disorders. C. elegans are an excellent model to uncover molecular and genetic regulators of memory. Indeed, the nematode's invariant neuronal lineage, fully mapped genome, and conserved associative behaviors have allowed the development of a breadth of genetic and genomic tools to examine learning and memory. In …


The Tfiis N-Terminal Domain (Tnd): A Transcription Assembly Module At The Interface Of Order And Disorder, Katerina Cermakova, Vaclav Veverka, H Courtney Hodges Feb 2023

The Tfiis N-Terminal Domain (Tnd): A Transcription Assembly Module At The Interface Of Order And Disorder, Katerina Cermakova, Vaclav Veverka, H Courtney Hodges

Faculty, Staff and Students Publications

Interaction scaffolds that selectively recognize disordered protein strongly shape protein interactomes. An important scaffold of this type that contributes to transcription is the TFIIS N-terminal domain (TND). The TND is a five-helical bundle that has no known enzymatic activity, but instead selectively reads intrinsically disordered sequences of other proteins. Here, we review the structural and functional properties of TNDs and their cognate disordered ligands known as TND-interacting motifs (TIMs). TNDs or TIMs are found in prominent members of the transcription machinery, including TFIIS, super elongation complex, SWI/SNF, Mediator, IWS1, SPT6, PP1-PNUTS phosphatase, elongin, H3K36me3 readers, the transcription factor MYC, and …


Role Of Ribosome Recycling Factor In Natural Termination And Translational Coupling As A Ribosome Releasing Factor, Yoshio Inokuchi, Fabio Quaglia, Akikazu Hirashima, Yoshihiro Yamamoto, Hideko Kaji, Akira Kaji Feb 2023

Role Of Ribosome Recycling Factor In Natural Termination And Translational Coupling As A Ribosome Releasing Factor, Yoshio Inokuchi, Fabio Quaglia, Akikazu Hirashima, Yoshihiro Yamamoto, Hideko Kaji, Akira Kaji

Department of Biochemistry and Molecular Biology Faculty Papers

The role of ribosome recycling factor (RRF) of E. coli was studied in vivo and in vitro. We used the translational coupling without the Shine-Dalgarno sequence of downstream ORF (d-ORF) as a model system of the RRF action in natural termination of protein synthesis. For the in vivo studies we used the translational coupling by the adjacent coat and lysis genes of RNA phage GA sharing the termination and initiation (UAAUG) and temperature sensitive RRF. The d-ORF translation was measured by the expression of the reporter lacZ gene connected to the 5'-terminal part of the lysis gene. The results showed …


Emerging Treatments For Myelodysplastic Syndromes: Biological Rationales And Clinical Translation, Juan Jose Rodriguez-Sevilla, Vera Adema, Guillermo Garcia-Manero, Simona Colla Feb 2023

Emerging Treatments For Myelodysplastic Syndromes: Biological Rationales And Clinical Translation, Juan Jose Rodriguez-Sevilla, Vera Adema, Guillermo Garcia-Manero, Simona Colla

Faculty, Staff and Student Publications

Myelodysplastic syndromes (MDSs) are a heterogeneous group of clonal hematopoietic stem cell disorders characterized by myeloid dysplasia, peripheral blood cytopenias, and increased risk of progression to acute myeloid leukemia (AML). The standard of care for patients with MDS is hypomethylating agent (HMA)-based therapy; however, nearly 50% of patients have no response to the treatment. Patients with MDS in whom HMA therapy has failed have a dismal prognosis and no approved second-line therapy options, so enrollment in clinical trials of experimental agents represents these patients' only chance for improved outcomes. A better understanding of the molecular and biological mechanisms underpinning MDS …


Differential Regulation Of H3k9/H3k14 Acetylation By Small Molecules Drives Neuron-Fate-Induction Of Glioma Cell, Xincheng Liu, Cui Guo, Tiandong Leng, Zhen Fan, Jialuo Mai, Jiehong Chen, Jinhai Xu, Qianyi Li, Bin Jiang, Ke Sai, Wenzhuo Yang, Jiayu Gu, Jingyi Wang, Shuxin Sun, Zhijie Chen, Yingqian Zhong, Xuanming Liang, Chaoxin Chen, Jing Cai, Yuan Lin, Jiankai Liang, Jun Hu, Guangmei Yan, Wenbo Zhu, Wei Yin Feb 2023

Differential Regulation Of H3k9/H3k14 Acetylation By Small Molecules Drives Neuron-Fate-Induction Of Glioma Cell, Xincheng Liu, Cui Guo, Tiandong Leng, Zhen Fan, Jialuo Mai, Jiehong Chen, Jinhai Xu, Qianyi Li, Bin Jiang, Ke Sai, Wenzhuo Yang, Jiayu Gu, Jingyi Wang, Shuxin Sun, Zhijie Chen, Yingqian Zhong, Xuanming Liang, Chaoxin Chen, Jing Cai, Yuan Lin, Jiankai Liang, Jun Hu, Guangmei Yan, Wenbo Zhu, Wei Yin

Faculty, Staff and Student Publications

Differentiation therapy using small molecules is a promising strategy for improving the prognosis of glioblastoma (GBM). Histone acetylation plays an important role in cell fate determination. Nevertheless, whether histone acetylation in specific sites determines GBM cells fate remains to be explored. Through screening from a 349 small molecule-library, we identified that histone deacetylase inhibitor (HDACi) MS-275 synergized with 8-CPT-cAMP was able to transdifferentiate U87MG GBM cells into neuron-like cells, which were characterized by cell cycle arrest, rich neuron biomarkers, and typical neuron electrophysiology. Intriguingly, acetylation tags of histone 3 at lysine 9 (H3K9ac) were decreased in the promoter of multiple …


Transcriptome, Proteome, And Protein Synthesis Within The Intracellular Cytomatrix, Tattym E Shaiken, Sandra L Grimm, Mohamad Siam, Amanda Williams, Abdol-Hossein Rezaeian, Daniel Kraushaar, Emily Ricco, Matthew J Robertson, Cristian Coarfa, Antrix Jain, Anna Malovannaya, Fabio Stossi, Antone R Opekun, Alyssa P Price, Julien Dubrulle Feb 2023

Transcriptome, Proteome, And Protein Synthesis Within The Intracellular Cytomatrix, Tattym E Shaiken, Sandra L Grimm, Mohamad Siam, Amanda Williams, Abdol-Hossein Rezaeian, Daniel Kraushaar, Emily Ricco, Matthew J Robertson, Cristian Coarfa, Antrix Jain, Anna Malovannaya, Fabio Stossi, Antone R Opekun, Alyssa P Price, Julien Dubrulle

Faculty, Staff and Students Publications

Despite the knowledge that protein translation and various metabolic reactions that create and sustain cellular life occur in the cytoplasm, the structural organization within the cytoplasm remains unclear. Recent models indicate that cytoplasm contains viscous fluid and elastic solid phases. We separated these viscous fluid and solid elastic compartments, which we call the cytosol and cytomatrix, respectively. The distinctive composition of the cytomatrix included structural proteins, ribosomes, and metabolome enzymes. High-throughput analysis revealed unique biosynthetic pathways within the cytomatrix. Enrichment of biosynthetic pathways in the cytomatrix indicated the presence of immobilized biocatalysis. Enzymatic immobilization and segregation can surmount spatial impediments, …


Endothelial-To-Osteoblast Transition In Normal Mouse Bone Development, Song-Chang Lin, Guoyu Yu, Yu-Chen Lee, Jian H Song, Xingzhi Song, Jianhua Zhang, Theocharis Panaretakis, Christopher J Logothetis, Yoshihiro Komatsu, Li-Yuan Yu-Lee, Guocan Wang, Sue-Hwa Lin Feb 2023

Endothelial-To-Osteoblast Transition In Normal Mouse Bone Development, Song-Chang Lin, Guoyu Yu, Yu-Chen Lee, Jian H Song, Xingzhi Song, Jianhua Zhang, Theocharis Panaretakis, Christopher J Logothetis, Yoshihiro Komatsu, Li-Yuan Yu-Lee, Guocan Wang, Sue-Hwa Lin

Faculty, Staff and Student Publications

Metastatic prostate cancer (PCa) in bone induces bone-forming lesions. We have previously shown that PCa-induced bone originates from endothelial cells (ECs) that have undergone EC-to-osteoblast (OSB) transition. Here, we investigated whether EC-to-OSB transition also occurs during normal bone formation. We developed an EC and OSB dual-color reporter mouse (DRM) model that marks EC-OSB hybrid cells with red and green fluorescent proteins. We observed EC-to-OSB transition (RFP and GFP co-expression) in both endochondral and intramembranous bone formation during embryonic development and in adults. Co-expression was confirmed in cells isolated from DRM. Bone marrow– and lung-derived ECs underwent transition to OSBs and …


Estimated Impact Of Low Isolate Numbers On The Reliability Of Cumulative Antibiogram Data, Christian Tran, John Hargy, Bryan Hess, Matthew Pettengill Feb 2023

Estimated Impact Of Low Isolate Numbers On The Reliability Of Cumulative Antibiogram Data, Christian Tran, John Hargy, Bryan Hess, Matthew Pettengill

Department of Pathology, Anatomy, and Cell Biology Faculty Papers

Antibiograms are cumulative reports of antimicrobial susceptibility results that are used to guide the selection of empirical antibiotic therapy. Although Clinical and Laboratory Standards Institute (CLSI) guidelines recommend including only organisms that have at least 30 isolates in an antibiogram, previous studies demonstrated that adherence to this recommendation is highly variable. This paper aims to model the impact of small sample sizes on expected levels of error in cumulative antibiograms by comparing percent susceptibility results for random samples to those of the larger, entire data set. The results demonstrate relatively high error rates when utilizing low numbers of isolates in …


Optimizing Dna Extraction From Pediatric Stool For Diagnosis Of Tuberculosis And Use In Next-Generation Sequencing Applications, Tara E Ness, Lennard Meiwes, Alexander Kay, Rojelio Mejia, Christoph Lange, Maha Farhat, Anna Mandalakas, Andrew Dinardo Feb 2023

Optimizing Dna Extraction From Pediatric Stool For Diagnosis Of Tuberculosis And Use In Next-Generation Sequencing Applications, Tara E Ness, Lennard Meiwes, Alexander Kay, Rojelio Mejia, Christoph Lange, Maha Farhat, Anna Mandalakas, Andrew Dinardo

Faculty, Staff and Students Publications

The WHO has endorsed the use of stool samples for diagnosis of tuberculosis (TB) in children, and targeted next-generation sequencing (tNGS) of stool has been shown to support diagnosis and provide information about drug susceptibility (DS). Optimizing extraction of DNA from stool for sequencing is critical to ensure high diagnostic sensitivity and accurate DS information. Human stool samples were spiked with various concentrations of Mycobacterium bovis bacillus Calmette-Guérin (BCG), and DNA was extracted from the samples using four different DNA extraction kits. Each sample was subjected to quantitative PCR for identifying Mycobacterium tuberculosis complex bacteria and underwent further analysis to …


Visualization Of Preimplantation Uterine Fluid Absorption In Mice Using Alexa Fluor™ 488 Hydrazide†, Yuehuan Li, Taylor Elijah Martin, Jonathan Matthew Hancock, Rong Li, Suvitha Viswanathan, John P Lydon, Yi Zheng, Xiaoqin Ye Feb 2023

Visualization Of Preimplantation Uterine Fluid Absorption In Mice Using Alexa Fluor™ 488 Hydrazide†, Yuehuan Li, Taylor Elijah Martin, Jonathan Matthew Hancock, Rong Li, Suvitha Viswanathan, John P Lydon, Yi Zheng, Xiaoqin Ye

Faculty, Staff and Students Publications

Uterine fluid plays important roles in supporting early pregnancy events and its timely absorption is critical for embryo implantation. In mice, its volume is maximum on day 0.5 post-coitum (D0.5) and approaches minimum upon embryo attachment ~D4.0. Its secretion and absorption in ovariectomized rodents were shown to be promoted by estrogen and progesterone (P4), respectively. The temporal mechanisms in preimplantation uterine fluid absorption remain to be elucidated. We have established an approach using intraluminally injected Alexa Fluor™ 488 Hydrazide (AH) in preimplantation control (RhoAf/f) and P4-deficient RhoAf/fPgrCre/+ mice. In control mice, bulk entry (seen as smeared cellular staining) via uterine …


In Vivo Gene Delivery Into Mouse Mammary Epithelial Cells Through Mammary Intraductal Injection, Wen Bu, Yi Li Feb 2023

In Vivo Gene Delivery Into Mouse Mammary Epithelial Cells Through Mammary Intraductal Injection, Wen Bu, Yi Li

Faculty, Staff and Students Publications

Mouse mammary glands comprise ductal trees, which are lined by epithelial cells and have one opening at the tip of each nipple. The epithelial cells play a major role in mammary gland function and are the origin of most mammary tumors. Introducing genes of interest into mouse mammary epithelial cells is a critical step in evaluating gene function in epithelial cells and generating mouse mammary tumor models. This goal can be accomplished through the intraductal injection of a viral vector carrying the genes of interest into the mouse mammary ductal tree. The injected virus subsequently infects mammary epithelial cells, bringing …


Massive Loss Of Proprioceptive Ia Synapses In Rat Spinal Motoneurons After Nerve Crush Injuries In The Postnatal Period, Ariadna Arbat-Plana, Sara Bolívar, Xavier Navarro, Esther Udina, Francisco J. Alvarez Feb 2023

Massive Loss Of Proprioceptive Ia Synapses In Rat Spinal Motoneurons After Nerve Crush Injuries In The Postnatal Period, Ariadna Arbat-Plana, Sara Bolívar, Xavier Navarro, Esther Udina, Francisco J. Alvarez

Neuroscience, Cell Biology & Physiology Faculty Publications

Peripheral nerve injuries (PNIs) induce the retraction from the ventral horn of the synaptic collaterals of Ia afferents injured in the nerve, effectively removing Ia synapses from α-motoneurons. The loss of Ia input impairs functional recovery and could explain, in part, better recovery after PNIs with better Ia synaptic preservation. Synaptic losses correlate with injury severity, speed, and efficiency of muscle reinnervation and requires ventral microglia activation. It is unknown whether this plasticity is age dependent. In neonates, axotomized motoneurons and sensory neurons undergo apoptosis, but after postnatal day 10 most survive. The goal of this study was to analyze …


Post-Transcriptional Regulation In Cranial Neural Crest Cells Expands Developmental Potential, Rachel A Keuls, Young Sun Oh, Ivanshi Patel, Ronald J Parchem Feb 2023

Post-Transcriptional Regulation In Cranial Neural Crest Cells Expands Developmental Potential, Rachel A Keuls, Young Sun Oh, Ivanshi Patel, Ronald J Parchem

Faculty, Staff and Students Publications

Developmental potential is progressively restricted after germ layer specification during gastrulation. However, cranial neural crest cells challenge this paradigm, as they develop from anterior ectoderm, yet give rise to both ectodermal derivatives of the peripheral nervous system and ectomesenchymal bone and cartilage. How cranial neural crest cells differentiate into multiple lineages is poorly understood. Here, we demonstrate that cranial neural crest cells possess a transient state of increased chromatin accessibility. We profile the spatiotemporal emergence of premigratory neural crest and find evidence of lineage bias toward either a neuronal or ectomesenchymal fate, with each expressing distinct factors from earlier stages …


Short-Term Pi3k Inhibition Prevents Breast Cancer In Preclinical Models, Amy T Ku, Adelaide I J Young, Ahmed Atef Ibrahim, Wen Bu, Weiyu Jiang, Meng Lin, Laterrica C Williams, Bryant Lee Mccue, George Miles, Chandandeep Nagi, Fariba Behbod, Yi Li Feb 2023

Short-Term Pi3k Inhibition Prevents Breast Cancer In Preclinical Models, Amy T Ku, Adelaide I J Young, Ahmed Atef Ibrahim, Wen Bu, Weiyu Jiang, Meng Lin, Laterrica C Williams, Bryant Lee Mccue, George Miles, Chandandeep Nagi, Fariba Behbod, Yi Li

Faculty, Staff and Students Publications

Antiestrogen medication is the only chemoprevention currently available for women at a high risk of developing breast cancer; however, antiestrogen therapy requires years to achieve efficacy and has adverse side effects. Therefore, it is important to develop an efficacious chemoprevention strategy that requires only a short course of treatment. PIK3CA is commonly activated in breast atypical hyperplasia, the known precancerous precursor of breast cancer. Targeting PI3K signaling in these precancerous lesions may offer a new strategy for chemoprevention. Here, we first established a mouse model that mimics the progression from precancerous lesions to breast cancer. Next, we demonstrated that a …


Bone Metastasis Initiation Is Coupled With Bone Remodeling Through Osteogenic Differentiation Of Ng2+ Cells, Weijie Zhang, Zhan Xu, Xiaoxin Hao, Tiancheng He, Jiasong Li, Yichao Shen, Kai Liu, Yang Gao, Jun Liu, David G Edwards, Aaron M Muscarella, Ling Wu, Liqun Yu, Longyong Xu, Xi Chen, Yi-Hsuan Wu, Igor L Bado, Yunfeng Ding, Sergio Aguirre, Hai Wang, Zbigniew Gugala, Robert L Satcher, Stephen T C Wong, Xiang H-F Zhang Feb 2023

Bone Metastasis Initiation Is Coupled With Bone Remodeling Through Osteogenic Differentiation Of Ng2+ Cells, Weijie Zhang, Zhan Xu, Xiaoxin Hao, Tiancheng He, Jiasong Li, Yichao Shen, Kai Liu, Yang Gao, Jun Liu, David G Edwards, Aaron M Muscarella, Ling Wu, Liqun Yu, Longyong Xu, Xi Chen, Yi-Hsuan Wu, Igor L Bado, Yunfeng Ding, Sergio Aguirre, Hai Wang, Zbigniew Gugala, Robert L Satcher, Stephen T C Wong, Xiang H-F Zhang

Faculty, Staff and Students Publications

The bone microenvironment is dynamic and undergoes remodeling in normal and pathologic conditions. Whether such remodeling affects disseminated tumor cells (DTC) and bone metastasis remains poorly understood. Here, we demonstrated that pathologic fractures increase metastatic colonization around the injury. NG2+ cells are a common participant in bone metastasis initiation and bone remodeling in both homeostatic and fractured conditions. NG2+ bone mesenchymal stem/stromal cells (BMSC) often colocalize with DTCs in the perivascular niche. Both DTCs and NG2+ BMSCs are recruited to remodeling sites. Ablation of NG2+ lineage impaired bone remodeling and concurrently diminished metastatic colonization. In cocultures, NG2+ BMSCs, especially when …


Lef1 Drives A Central Memory Program And Supports Antitumor Activity Of Natural Killer T Cells, Ho Ngai, Gabriel A Barragan, Gengwen Tian, Julien C Balzeau, Chunchao Zhang, Amy N Courtney, Linjie Guo, Xin Xu, Michael S Wood, Janice M Drabek, Thorsten Demberg, Caroline M Sands, Cynthia N Chauvin-Fleurence, Erica J Di Pierro, Jeffrey M Rosen, Leonid S Metelitsa Feb 2023

Lef1 Drives A Central Memory Program And Supports Antitumor Activity Of Natural Killer T Cells, Ho Ngai, Gabriel A Barragan, Gengwen Tian, Julien C Balzeau, Chunchao Zhang, Amy N Courtney, Linjie Guo, Xin Xu, Michael S Wood, Janice M Drabek, Thorsten Demberg, Caroline M Sands, Cynthia N Chauvin-Fleurence, Erica J Di Pierro, Jeffrey M Rosen, Leonid S Metelitsa

Faculty, Staff and Students Publications

Vα24-invariant natural killer T cells (NKT) possess innate antitumor properties that can be exploited for cancer immunotherapy. We have shown previously that the CD62L+ central memory-like subset of these cells drives the in vivo antitumor activity of NKTs, but molecular mediators of NKT central memory differentiation remain unknown. Here, we demonstrate that relative to CD62L- cells, CD62L+ NKTs express a higher level of the gene encoding the Wnt/β-catenin transcription factor lymphoid enhancer binding factor 1 (LEF1) and maintain active Wnt/β-catenin signaling. CRISPR/Cas9-mediated LEF1 knockout reduced CD62L+ frequency after antigenic stimulation, whereas Wnt/β-catenin activator Wnt3a ligand increased CD62L+ frequency. LEF1 overexpression …


A Dlg1-Arhgap31-Cdc42 Axis Is Essential For The Intestinal Stem Cell Response To Fluctuating Niche Wnt Signaling, David Castillo-Azofeifa, Tomas Wald, Efren A Reyes, Aaron Gallagher, Julia Schanin, Stephanie Vlachos, Nathalie Lamarche-Vane, Carolyn Bomidi, Sarah Blutt, Mary K Estes, Todd Nystul, Ophir D Klein Feb 2023

A Dlg1-Arhgap31-Cdc42 Axis Is Essential For The Intestinal Stem Cell Response To Fluctuating Niche Wnt Signaling, David Castillo-Azofeifa, Tomas Wald, Efren A Reyes, Aaron Gallagher, Julia Schanin, Stephanie Vlachos, Nathalie Lamarche-Vane, Carolyn Bomidi, Sarah Blutt, Mary K Estes, Todd Nystul, Ophir D Klein

Faculty, Staff and Students Publications

A central factor in the maintenance of tissue integrity is the response of stem cells to variations in the levels of niche signals. In the gut, intestinal stem cells (ISCs) depend on Wnt ligands for self-renewal and proliferation. Transient increases in Wnt signaling promote regeneration after injury or in inflammatory bowel diseases, whereas constitutive activation of this pathway leads to colorectal cancer. Here, we report that Discs large 1 (Dlg1), although dispensable for polarity and cellular turnover during intestinal homeostasis, is required for ISC survival in the context of increased Wnt signaling. RNA sequencing (RNA-seq) and genetic mouse models demonstrated …


Development Of A Novel Mathematical Model That Explains Sars-Cov-2 Infection Dynamics In Caco-2 Cells, Vladimir Staroverov, Stepan Nersisyan, Alexei Galatenko, Dmitriy Alekseev, Sofya Lukashevich, Fedor Ployakov, Nikita Anisimov, Alexander Tonevitsky Feb 2023

Development Of A Novel Mathematical Model That Explains Sars-Cov-2 Infection Dynamics In Caco-2 Cells, Vladimir Staroverov, Stepan Nersisyan, Alexei Galatenko, Dmitriy Alekseev, Sofya Lukashevich, Fedor Ployakov, Nikita Anisimov, Alexander Tonevitsky

COVID-19 Papers, Posters, and Presentations

Mathematical modeling is widely used to study within-host viral dynamics. However, to the best of our knowledge, for the case of SARS-CoV-2 such analyses were mainly conducted with the use of viral load data and for the wild type (WT) variant of the virus. In addition, only few studies analyzed models for in vitro data, which are less noisy and more reproducible. In this work we collected multiple data types for SARS-CoV-2-infected Caco-2 cell lines, including infectious virus titers, measurements of intracellular viral RNA, cell viability data and percentage of infected cells for the WT and Delta variants. We showed …


The Nlrp3 Inflammasome Fires Up Heme-Induced Inflammation In Hemolytic Conditions, Suruchi Salgar, Beatriz E Bolívar, Jonathan M Flanagan, Shaniqua J Anum, Lisa Bouchier-Hayes Feb 2023

The Nlrp3 Inflammasome Fires Up Heme-Induced Inflammation In Hemolytic Conditions, Suruchi Salgar, Beatriz E Bolívar, Jonathan M Flanagan, Shaniqua J Anum, Lisa Bouchier-Hayes

Faculty, Staff and Students Publications

Overactive inflammatory responses are central to the pathophysiology of many hemolytic conditions including sickle cell disease. Excessive hemolysis leads to elevated serum levels of heme due to saturation of heme scavenging mechanisms. Extracellular heme has been shown to activate the NLRP3 inflammasome, leading to activation of caspase-1 and release of pro-inflammatory cytokines IL-1β and IL-18. Heme also activates the non-canonical inflammasome pathway, which may contribute to NLRP3 inflammasome formation and leads to pyroptosis, a type of inflammatory cell death. Some clinical studies indicate there is a benefit to blocking the NLRP3 inflammasome pathway in patients with sickle cell disease and …


Early Life Reprogramming-Based Treatment Promotes Longevity, Patrizia Pessina, Bruno Di Stefano Feb 2023

Early Life Reprogramming-Based Treatment Promotes Longevity, Patrizia Pessina, Bruno Di Stefano

Faculty, Staff and Students Publications

Short-term expression of Yamanaka factors early in life promotes epigenetic reprogramming and an increased healthy lifespan in a mouse model of accelerated aging.


Tissue-Resident Memory T Cells Trigger Rapid Exudation And Local Antibody Accumulation, Pamela C Rosato, Sahar Lotfi-Emran, Vineet Joag, Sathi Wijeyesinghe, Clare F Quarnstrom, Hanna N Degefu, Rebecca Nedellec, Jason M Schenkel, Lalit K Beura, Lars Hangartner, Dennis R Burton, David Masopust Feb 2023

Tissue-Resident Memory T Cells Trigger Rapid Exudation And Local Antibody Accumulation, Pamela C Rosato, Sahar Lotfi-Emran, Vineet Joag, Sathi Wijeyesinghe, Clare F Quarnstrom, Hanna N Degefu, Rebecca Nedellec, Jason M Schenkel, Lalit K Beura, Lars Hangartner, Dennis R Burton, David Masopust

Faculty, Staff and Student Publications

Adaptive immunity is didactically partitioned into humoral and cell-mediated effector mechanisms, which may imply that each arm is separate and does not function together. Here, we report that the activation of CD8+ resident memory T cells (TRM) in nonlymphoid tissues triggers vascular permeability, which facilitates rapid distribution of serum antibodies into local tissues. TRM reactivation was associated with transcriptional upregulation of antiviral signaling pathways as well as Fc receptors and components of the complement cascade. Effects were local, but evidence is presented that TRM in brain and reproductive mucosa are both competent to induce rapid antibody exudation. TRM reactivation in …


Fibrinogen-Like Protein 2: Its Biological Function Across Cell Types And The Potential To Serve As An Immunotherapy Target For Brain Tumors, Sheng Zhang, Ganesh Rao, Amy Heimberger, Shulin Li Feb 2023

Fibrinogen-Like Protein 2: Its Biological Function Across Cell Types And The Potential To Serve As An Immunotherapy Target For Brain Tumors, Sheng Zhang, Ganesh Rao, Amy Heimberger, Shulin Li

Faculty, Staff and Student Publications

Brain tumors are among the 10 leading causes of cancer-related death and present unique treatment challenges due to their critical location, genetic heterogeneity, and the blood-brain barrier. Recent advances in targeted immunotherapy and immune checkpoint blocking therapy provide alternative therapeutic strategies for brain tumors. Fibrinogen-like protein 2 (FGL2), which induces transformation from low-grade glioma to high-grade glioblastoma, is a type II membrane protein that is highly expressed in both host immune cells and tumor cells. Studies have uncovered multiple forms of FGL2 proteins with a broad range of roles in inducing immune tolerance and avoiding immune surveillance in tumor cells. …


Modeling Ewing Sarcoma Lung Metastasis, Atreyi Dasgupta, Lyazat Kurenbekova, Tajhal D Patel, Kimal Rajapakshe, Gargi Ghosal, Bikesh Nirala, Cristian Coarfa, Jason Yustein Feb 2023

Modeling Ewing Sarcoma Lung Metastasis, Atreyi Dasgupta, Lyazat Kurenbekova, Tajhal D Patel, Kimal Rajapakshe, Gargi Ghosal, Bikesh Nirala, Cristian Coarfa, Jason Yustein

Faculty, Staff and Students Publications

Ewing Sarcoma (EwS) is the second most common malignant bone tumor in adolescents and young adults. The single-most powerful predictor of outcome in EwS is presence of metastatic burden at the time of diagnosis. Patients with metastatic Ewing Sarcoma have an abysmal 5-year survival rate of 10–25%, which has not changed over the past 30–40 years. Thus, unraveling underlying mechanisms of EwS metastasis are imperative for developing effective therapeutic measures. Investigations towards this goal are limited by the lack of reliable genetically engineered mouse models and specialized metastatic models. Using two established cell lines, A673 and TC71, we generated lung …