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Articles 751 - 780 of 1666
Full-Text Articles in Biomedical Informatics
Central Irf4/5 Signaling Are Critical For Microglial Activation And Impact On Stroke Outcomes, Conelius Ngwa, Abdullah Al Mamun, Shaohua Qi, Romana Sharmeen, Maria P Blasco Conesa, Bhanu P Ganesh, Bharti Manwani, Fudong Liu
Central Irf4/5 Signaling Are Critical For Microglial Activation And Impact On Stroke Outcomes, Conelius Ngwa, Abdullah Al Mamun, Shaohua Qi, Romana Sharmeen, Maria P Blasco Conesa, Bhanu P Ganesh, Bharti Manwani, Fudong Liu
Faculty, Staff and Student Publications
Microglia and monocytes play a critical role in immune responses to cerebral ischemia. Previous studies have demonstrated that interferon regulatory factor 4 (IRF4) and IRF5 direct microglial polarization after stroke and impact outcomes. However, IRF4/5 are expressed by both microglia and monocytes, and it is not clear if it is the microglial (central) or monocytic (peripheral) IRF4-IRF5 regulatory axis that functions in stroke. In this work, young (8-12 weeks) male pep boy (PB), IRF4 or IRF5 flox, and IRF4 or IRF5 conditional knockout (CKO) mice were used to generate 8 types of bone marrow chimeras, to differentiate the role of …
P53r172h And P53r245w Hotspot Mutations Drive Distinct Transcriptomes In Mouse Mammary Tumors Through A Convergent Transcriptional Mediator, Joy M Mcdaniel, Rhiannon L Morrissey, Denada Dibra, Lalit R Patel, Shunbin Xiong, Yun Zhang, Gilda P Chau, Xiaoping Su, Yuan Qi, Adel K El-Naggar, Guillermina Lozano
P53r172h And P53r245w Hotspot Mutations Drive Distinct Transcriptomes In Mouse Mammary Tumors Through A Convergent Transcriptional Mediator, Joy M Mcdaniel, Rhiannon L Morrissey, Denada Dibra, Lalit R Patel, Shunbin Xiong, Yun Zhang, Gilda P Chau, Xiaoping Su, Yuan Qi, Adel K El-Naggar, Guillermina Lozano
Faculty, Staff and Student Publications
Aggressive breast cancers harbor TP53 missense mutations. Tumor cells with TP53 missense mutations exhibit enhanced growth and survival through transcriptional rewiring. To delineate how TP53 mutations in breast cancer contribute to tumorigenesis and progression in vivo, we created a somatic mouse model driven by mammary epithelial cell-specific expression of Trp53 mutations. Mice developed primary mammary tumors reflecting the human molecular subtypes of luminal A, luminal B, HER2-enriched, and triple-negative breast cancer with metastases. Transcriptomic analyses comparing MaPR172H/− or MaPR245W/− mammary tumors to MaP−/− tumors revealed (1) differences in cancer-associated pathways activated in both p53 …
Structural Dynamics In Α-Amino-3-Hydroxy-5-Methyl-4-Isoxazole Propionic Acid Receptor Gating, Cuauhtemoc U Gonzalez, Vasanthi Jayaraman
Structural Dynamics In Α-Amino-3-Hydroxy-5-Methyl-4-Isoxazole Propionic Acid Receptor Gating, Cuauhtemoc U Gonzalez, Vasanthi Jayaraman
Faculty, Staff and Student Publications
The ionotropic glutamate receptors (iGluRs) are comprised of α-amino-3-hydroxy-5-methyl-4-isoxazole propionic acid (AMPA), N-methyl-d-aspartate receptor, kainate, and delta subtypes and are pivotal in neuronal plasticity. Recent structural studies on AMPA receptors reveal intricate conformational changes during activation and desensitization elucidating the steps from agonist binding to channel opening and desensitization. Additionally, interactions with auxiliary subunits, including transmembrane AMPA-receptor regulatory proteins, germ-cell-specific gene 1-like protein, and cornichon homologs, intricately modulate AMPA receptors. We discuss the recent high-resolution structures of these complexes that unveil stoichiometry, subunit positioning, and differences in specific side-chain interactions that influence these functional modulations.
A Cell Cycle-Aware Network For Data Integration And Label Transferring Of Single-Cell Rna-Seq And Atac-Seq, Jiajia Liu, Jian Ma, Jianguo Wen, Xiaobo Zhou
A Cell Cycle-Aware Network For Data Integration And Label Transferring Of Single-Cell Rna-Seq And Atac-Seq, Jiajia Liu, Jian Ma, Jianguo Wen, Xiaobo Zhou
Faculty, Staff and Student Publications
In recent years, the integration of single-cell multi-omics data has provided a more comprehensive understanding of cell functions and internal regulatory mechanisms from a non-single omics perspective, but it still suffers many challenges, such as omics-variance, sparsity, cell heterogeneity, and confounding factors. As it is known, the cell cycle is regarded as a confounder when analyzing other factors in single-cell RNA-seq data, but it is not clear how it will work on the integrated single-cell multi-omics data. Here, a cell cycle-aware network (CCAN) is developed to remove cell cycle effects from the integrated single-cell multi-omics data while keeping the cell …
T-Bet Suppresses Proliferation Of Malignant B Cells In Chronic Lymphocytic Leukemia, Philipp M Roessner, Isabelle Seufert, Vicente Chapaprieta, Ruparoshni Jayabalan, Hannah Briesch, Ramon Massoni-Badosa, Pavle Boskovic, Julian Benckendorff, Tobias Roider, Lavinia Arseni, Mariana Coelho, Supriya Chakraborty, Alicia M Vaca, Mariela Sivina, Markus Muckenhuber, Sonia Rodriguez-Rodriguez, Alice Bonato, Sophie A Herbst, Marc Zapatka, Clare Sun, Helene Kretzmer, Thomas Naake, Peter-Martin Bruch, Felix Czernilofsky, Elisa Ten Hacken, Martin Schneider, Dominic Helm, Deyan Y Yosifov, Joseph Kauer, Alexey V Danilov, Moritz Bewarder, Kristina Heyne, Christof Schneider, Stephan Stilgenbauer, Adrian Wiestner, Jan-Philipp Mallm, Jan A Burger, Dimitar G Efremov, Peter Lichter, Sascha Dietrich, José I Martin-Subero, Karsten Rippe, Martina Seiffert
T-Bet Suppresses Proliferation Of Malignant B Cells In Chronic Lymphocytic Leukemia, Philipp M Roessner, Isabelle Seufert, Vicente Chapaprieta, Ruparoshni Jayabalan, Hannah Briesch, Ramon Massoni-Badosa, Pavle Boskovic, Julian Benckendorff, Tobias Roider, Lavinia Arseni, Mariana Coelho, Supriya Chakraborty, Alicia M Vaca, Mariela Sivina, Markus Muckenhuber, Sonia Rodriguez-Rodriguez, Alice Bonato, Sophie A Herbst, Marc Zapatka, Clare Sun, Helene Kretzmer, Thomas Naake, Peter-Martin Bruch, Felix Czernilofsky, Elisa Ten Hacken, Martin Schneider, Dominic Helm, Deyan Y Yosifov, Joseph Kauer, Alexey V Danilov, Moritz Bewarder, Kristina Heyne, Christof Schneider, Stephan Stilgenbauer, Adrian Wiestner, Jan-Philipp Mallm, Jan A Burger, Dimitar G Efremov, Peter Lichter, Sascha Dietrich, José I Martin-Subero, Karsten Rippe, Martina Seiffert
Faculty, Staff and Student Publications
The T-box transcription factor T-bet is known as a master regulator of the T-cell response but its role in malignant B cells has not been sufficiently explored. Here, we conducted single-cell resolved multi-omics analyses of malignant B cells from patients with chronic lymphocytic leukemia (CLL) and studied a CLL mouse model with a genetic knockout of Tbx21. We found that T-bet acts as a tumor suppressor in malignant B cells by decreasing their proliferation rate. NF-κB activity, induced by inflammatory signals provided by the microenvironment, triggered T-bet expression, which affected promoter-proximal and distal chromatin coaccessibility and controlled a specific gene …
Tumoral Interferon Beta Induces An Immune-Stimulatory Phenotype In Tumor-Associated Macrophages In Melanoma Brain Metastases, Julia Gellert, Dennis A Agardy, Swaminathan Kumar, Alexandros Kourtesakis, Tamara Boschert, Kristine Jähne, Michael O Breckwoldt, Lukas Bunse, Wolfgang Wick, Michael A Davies, Michael Platten, Theresa Bunse
Tumoral Interferon Beta Induces An Immune-Stimulatory Phenotype In Tumor-Associated Macrophages In Melanoma Brain Metastases, Julia Gellert, Dennis A Agardy, Swaminathan Kumar, Alexandros Kourtesakis, Tamara Boschert, Kristine Jähne, Michael O Breckwoldt, Lukas Bunse, Wolfgang Wick, Michael A Davies, Michael Platten, Theresa Bunse
Faculty, Staff and Student Publications
Type I interferons (IFN) are immune-stimulatory cytokines involved in antiviral and antitumor immune responses. They enhance the efficacy of immunogenic anticancer therapies such as radiotherapy by activating both innate and adaptive immune cells. Macrophages are one of the most abundant innate immune cells in the immune microenvironment of melanoma brain metastases (MBM) and can exert potent immune-suppressive functions. Here, we investigate the potential of tumoral type I IFNs to repolarize tumor-associated macrophages (TAM) in two murine MBM models and assess the effects of radiotherapy-induced type I IFN on TAMs in a transcriptomic MBM patient dataset. In mice, we describe a …
Systematic Transcriptome Profiling Of Hpsc-Derived Osteoblasts Unveils Corin’S Mastery In Governing Osteogenesis Through Cebpd Modulation, Dandan Zhu, Mo-Fan Huang, An Xu, Xueqin Gao, Yu-Wen Huang, Trinh T T Phan, Linchao Lu, Ting-Yen Chi, Yulin Dai, Lon Kai Pang, Julian A Gingold, Jian Tu, Zijun Huo, Danielle A Bazer, Rachel Shoemaker, Jun Wang, Catherine G Ambrose, Jingnan Shen, Jun Kameoka, Zhongming Zhao, Lisa L Wang, Yang Zhang, Ruiying Zhao, Dung-Fang Lee
Systematic Transcriptome Profiling Of Hpsc-Derived Osteoblasts Unveils Corin’S Mastery In Governing Osteogenesis Through Cebpd Modulation, Dandan Zhu, Mo-Fan Huang, An Xu, Xueqin Gao, Yu-Wen Huang, Trinh T T Phan, Linchao Lu, Ting-Yen Chi, Yulin Dai, Lon Kai Pang, Julian A Gingold, Jian Tu, Zijun Huo, Danielle A Bazer, Rachel Shoemaker, Jun Wang, Catherine G Ambrose, Jingnan Shen, Jun Kameoka, Zhongming Zhao, Lisa L Wang, Yang Zhang, Ruiying Zhao, Dung-Fang Lee
Faculty, Staff and Student Publications
The commitment of stem cells to differentiate into osteoblasts is a highly regulated and complex process that involves the coordination of extrinsic signals and intrinsic transcriptional machinery. While rodent osteoblastic differentiation has been extensively studied, research on human osteogenesis has been limited by cell sources and existing models. Here, we systematically dissect human pluripotent stem cell-derived osteoblasts to identify functional membrane proteins and their downstream transcriptional networks involved in human osteogenesis. Our results reveal an enrichment of type II transmembrane serine protease CORIN in humans but not rodent osteoblasts. Functional analyses demonstrated that CORIN depletion significantly impairs osteogenesis. Genome-wide chromatin …
Chick Embryo Chorioallantoic Membrane As A Platform For Assessing The In Vivo Efficacy Of Chimeric Antigen Receptor T-Cell Therapy In Solid Tumors, Allison J Nipper, Emilie A K Warren, Kershena S Liao, Hsuan-Chen Liu, Chieko Michikawa, Caroline E Porter, Gabrielle A Wells, Mariana Villanueva, Fabio Henrique Brasil Da Costa, Ratna Veeramachaneni, Hugo Villanueva, Masataka Suzuki, Andrew G Sikora
Chick Embryo Chorioallantoic Membrane As A Platform For Assessing The In Vivo Efficacy Of Chimeric Antigen Receptor T-Cell Therapy In Solid Tumors, Allison J Nipper, Emilie A K Warren, Kershena S Liao, Hsuan-Chen Liu, Chieko Michikawa, Caroline E Porter, Gabrielle A Wells, Mariana Villanueva, Fabio Henrique Brasil Da Costa, Ratna Veeramachaneni, Hugo Villanueva, Masataka Suzuki, Andrew G Sikora
Faculty, Staff and Student Publications
The fertilized chicken egg chorioallantoic membrane (CAM), a highly vascularized membrane nourishing the developing embryo, also supports rapid growth of three-dimensional vascularized tumors from engrafted cells and tumor explants. Because murine xenograft models suffer limitations of time, cost, and scalability, we propose CAM tumors as a rapid, efficient screening tool for assessing anti-tumor efficacy of chimeric Ag receptor (CAR) T cells against solid tumors. We tested the efficacy of human epidermal growth factor receptor 2 (HER2)-specific CAR T cells against luminescent, HER2-expressing (FaDu, SCC-47) or HER2-negative (MDA-MB-468) CAM-engrafted tumors. Three days after tumor engraftment, HER2-specific CAR T cells were applied …
Bigh3 Mediates Apoptosis And Gap Junction Failure In Osteocytes During Renal Cell Carcinoma Bone Metastasis Progression, Tianhong Pan, Fengshuo Liu, Xiaoxin Hao, Shubo Wang, Murtaza Wasi, Jian H Song, Valerae O Lewis, Patrick P Lin, Bryan Moon, Justin E Bird, Theocharis Panaretakis, Sue-Hwa Lin, Danielle Wu, Mary C Farach-Carson, Liyun Wang, Ningyan Zhang, Zhiqiang An, Xiang H-F Zhang, Robert L Satcher
Bigh3 Mediates Apoptosis And Gap Junction Failure In Osteocytes During Renal Cell Carcinoma Bone Metastasis Progression, Tianhong Pan, Fengshuo Liu, Xiaoxin Hao, Shubo Wang, Murtaza Wasi, Jian H Song, Valerae O Lewis, Patrick P Lin, Bryan Moon, Justin E Bird, Theocharis Panaretakis, Sue-Hwa Lin, Danielle Wu, Mary C Farach-Carson, Liyun Wang, Ningyan Zhang, Zhiqiang An, Xiang H-F Zhang, Robert L Satcher
Faculty, Staff and Student Publications
Renal cell carcinoma (RCC) bone metastatis progression is driven by crosstalk between tumor cells and the bone microenvironment, which includes osteoblasts, osteoclasts, and osteocytes. RCC bone metastases (RCCBM) are predominantly osteolytic and resistant to antiresorptive therapy. The molecular mechanisms underlying pathologic osteolysis and disruption of bone homeostasis remain incompletely understood. We previously reported that BIGH3/TGFBI (transforming growth factor-beta-induced protein ig-h3, shortened to BIGH3 henceforth) secreted by colonizing RCC cells drives osteolysis by inhibiting osteoblast differentiation, impairing healing of osteolytic lesions, which is reversible with osteoanabolic agents. Here, we report that BIGH3 induces osteocyte apoptosis in both human RCCBM tissue specimens …
Adaptation Of The Protein Misfolding Cyclic Amplification (Pmca) Technique For The Screening Of Anti-Prion Compounds, Katherine Do, Rebeca Benavente, Celso S G Catumbela, Uffaf Khan, Carlos Kramm, Claudio Soto, Rodrigo Morales
Adaptation Of The Protein Misfolding Cyclic Amplification (Pmca) Technique For The Screening Of Anti-Prion Compounds, Katherine Do, Rebeca Benavente, Celso S G Catumbela, Uffaf Khan, Carlos Kramm, Claudio Soto, Rodrigo Morales
Faculty, Staff and Student Publications
Prion diseases result from the misfolding of the physiological prion protein (PrPC) to a pathogenic conformation (PrPSc). Compelling evidence indicates that prevention and/or reduction of PrPSc replication are promising therapeutic strategies against prion diseases. However, the existence of different PrPSc conformations (or strains) associated with disease represents a major problem when identifying anti-prion compounds. Efforts to identify strain-specific anti-prion molecules are limited by the lack of biologically relevant high-throughput screening platforms to interrogate compound libraries. Here, we describe adaptations to the protein misfolding cyclic amplification (PMCA) technology (able to faithfully replicate PrPSc strains) that increase its throughput to facilitate the …
Exploring The Pdz, Duf, And Lim Domains Of Pdlim5 In Dendrite Branching, Yogesh Srivastava, Maxsam Donta, Lydia L Mireles, Adriana Paulucci-Holthauzen, Leilei Shi, Mark T Bedford, M Neal Waxham, Pierre D Mccrea
Exploring The Pdz, Duf, And Lim Domains Of Pdlim5 In Dendrite Branching, Yogesh Srivastava, Maxsam Donta, Lydia L Mireles, Adriana Paulucci-Holthauzen, Leilei Shi, Mark T Bedford, M Neal Waxham, Pierre D Mccrea
Faculty, Staff and Student Publications
The branched architecture of neuronal dendrites is a key factor in how neurons form ordered networks and discoveries continue to be made identifying proteins and protein-protein interactions that direct or execute the branching and extension of dendrites. Our prior work showed that the molecular scaffold Pdlim5 and delta-catenin, in conjunction, are two proteins that help regulate the branching and elongation of dendrites in cultured hippocampal neurons and do so through a phosphorylation-dependent mechanism triggered by upstream glutamate signaling. In this report we have focused on Pdlim5's multiple scaffolding domains and how each contributes to dendrite branching. The three identified regions …
The Significant Role Of Amino Acid Metabolic Reprogramming In Cancer, Xiaohong Liu, Bo Ren, Jie Ren, Minzhi Gu, Lei You, Yupei Zhao
The Significant Role Of Amino Acid Metabolic Reprogramming In Cancer, Xiaohong Liu, Bo Ren, Jie Ren, Minzhi Gu, Lei You, Yupei Zhao
Faculty, Staff and Student Publications
Amino acid metabolism plays a pivotal role in tumor microenvironment, influencing various aspects of cancer progression. The metabolic reprogramming of amino acids in tumor cells is intricately linked to protein synthesis, nucleotide synthesis, modulation of signaling pathways, regulation of tumor cell metabolism, maintenance of oxidative stress homeostasis, and epigenetic modifications. Furthermore, the dysregulation of amino acid metabolism also impacts tumor microenvironment and tumor immunity. Amino acids can act as signaling molecules that modulate immune cell function and immune tolerance within the tumor microenvironment, reshaping the anti-tumor immune response and promoting immune evasion by cancer cells. Moreover, amino acid metabolism can …
Targeting Astrogliosis In The Retrotrapezoid Nucleus: A Novel Approach To Ameliorate Respiratory Dysfunction And Alzheimer's Pathology In Mice, Zahid Iqbal, Ahmad El Hamamy, Ngoc Mai Le, Arya Ranjan, Yuxing Zhang, Li Qi, Bharti Manwani, Chunfeng Tan, Louise D Mccullough, Jun Li
Targeting Astrogliosis In The Retrotrapezoid Nucleus: A Novel Approach To Ameliorate Respiratory Dysfunction And Alzheimer's Pathology In Mice, Zahid Iqbal, Ahmad El Hamamy, Ngoc Mai Le, Arya Ranjan, Yuxing Zhang, Li Qi, Bharti Manwani, Chunfeng Tan, Louise D Mccullough, Jun Li
Faculty, Staff and Student Publications
Alzheimer's disease (AD), a leading cause of dementia, is associated with significant respiratory dysfunctions. Our study explores the role of astrogliosis in the brainstem retrotrapezoid nucleus (RTN), a key breathing regulatory center, and its impact on breathing control and AD pathology in mice. Using Tg-2576 AD and wild-type mice, we investigated the effect of silencing the transforming growth factor-beta receptor II (TGFβR II) in the RTN. We performed behavioral tests, including the Barnes maze and novel object recognition test, along with whole-body plethysmography to assess breathing disorders. Our results showed that AD mice exhibited increased apneas and cognitive impairment, which …
Tert Activation Targets Dna Methylation And Multiple Aging Hallmarks, Hong Seok Shim, Jonathan Iaconelli, Xiaoying Shang, Jiexi Li, Zheng D Lan, Shan Jiang, Kayla Nutsch, Brittney A Beyer, Luke L Lairson, Adam T Boutin, Michael J Bollong, Peter G Schultz, Ronald A Depinho
Tert Activation Targets Dna Methylation And Multiple Aging Hallmarks, Hong Seok Shim, Jonathan Iaconelli, Xiaoying Shang, Jiexi Li, Zheng D Lan, Shan Jiang, Kayla Nutsch, Brittney A Beyer, Luke L Lairson, Adam T Boutin, Michael J Bollong, Peter G Schultz, Ronald A Depinho
Faculty, Staff and Student Publications
Insufficient telomerase activity, stemming from low telomerase reverse transcriptase (TERT) gene transcription, contributes to telomere dysfunction and aging pathologies. Besides its traditional function in telomere synthesis, TERT acts as a transcriptional co-regulator of genes pivotal in aging and age-associated diseases. Here, we report the identification of a TERT activator compound (TAC) that upregulates TERT transcription via the MEK/ERK/AP-1 cascade. In primary human cells and naturally aged mice, TAC-induced elevation of TERT levels promotes telomere synthesis, blunts tissue aging hallmarks with reduced cellular senescence and inflammatory cytokines, and silences p16INK4a expression via upregulation of DNMT3B-mediated promoter hypermethylation. In the brain, …
Multi-Antigen Intranasal Vaccine Protects Against Challenge With Sarbecoviruses And Prevents Transmission In Hamsters, Ankita Leekha, Arash Saeedi, K M Samiur Rahman Sefat, Monish Kumar, Melisa Martinez-Paniagua, Adrian Damian, Rohan Kulkarni, Kate Reichel, Ali Rezvan, Shalaleh Masoumi, Xinli Liu, Laurence J N Cooper, Manu Sebastian, Courtney M Sands, Vallabh E Das, Nimesh B Patel, Brett Hurst, Navin Varadarajan
Multi-Antigen Intranasal Vaccine Protects Against Challenge With Sarbecoviruses And Prevents Transmission In Hamsters, Ankita Leekha, Arash Saeedi, K M Samiur Rahman Sefat, Monish Kumar, Melisa Martinez-Paniagua, Adrian Damian, Rohan Kulkarni, Kate Reichel, Ali Rezvan, Shalaleh Masoumi, Xinli Liu, Laurence J N Cooper, Manu Sebastian, Courtney M Sands, Vallabh E Das, Nimesh B Patel, Brett Hurst, Navin Varadarajan
Faculty, Staff and Student Publications
Immunization programs against SARS-CoV-2 with commercial intramuscular vaccines prevent disease but are less efficient in preventing infections. Mucosal vaccines can provide improved protection against transmission, ideally for different variants of concern (VOCs) and related sarbecoviruses. Here, we report a multi-antigen, intranasal vaccine, NanoSTING-SN (NanoSTING-Spike-Nucleocapsid), eliminates virus replication in both the lungs and the nostrils upon challenge with the pathogenic SARS-CoV-2 Delta VOC. We further demonstrate that NanoSTING-SN prevents transmission of the SARS-CoV-2 Omicron VOC (BA.5) to vaccine-naïve hamsters. To evaluate protection against other sarbecoviruses, we immunized mice with NanoSTING-SN. We showed that immunization affords protection against SARS-CoV, leading to protection …
Cell-Specific Regulation Of The Circadian Clock By Bmal1 In The Paraventricular Nucleus: Implications For Regulation Of Systemic Biological Rhythms, Rachel Van Drunen, Yulin Dai, Haichao Wei, Baharan Fekry, Sina Noori, Samay Shivshankar, Rafael Bravo, Zhongming Zhao, Seung-Hee Yoo, Nicholas Justice, Jia Qian Wu, Qingchun Tong, Kristin Eckel-Mahan
Cell-Specific Regulation Of The Circadian Clock By Bmal1 In The Paraventricular Nucleus: Implications For Regulation Of Systemic Biological Rhythms, Rachel Van Drunen, Yulin Dai, Haichao Wei, Baharan Fekry, Sina Noori, Samay Shivshankar, Rafael Bravo, Zhongming Zhao, Seung-Hee Yoo, Nicholas Justice, Jia Qian Wu, Qingchun Tong, Kristin Eckel-Mahan
Faculty, Staff and Student Publications
Circadian rhythms are internal biological rhythms driving temporal tissue-specific, metabolic programs. Loss of the circadian transcription factor BMAL1 in the paraventricular nucleus (PVN) of the hypothalamus reveals its importance in metabolic rhythms, but its functions in individual PVN cells are poorly understood. Here, loss of BMAL1 in the PVN results in arrhythmicity of processes controlling energy balance and alters peripheral diurnal gene expression. BMAL1 chromatin immunoprecipitation sequencing (ChIP-seq) and single-nucleus RNA sequencing (snRNA-seq) reveal its temporal regulation of target genes, including oxytocin (OXT), and restoring circulating OXT peaks in BMAL1-PVN knockout (KO) mice rescues absent activity rhythms. While glutamatergic neurons …
Membrane Vectorial Lipidomic Features Of Coral Host Cells’ Plasma Membrane And Lipid Profiles Of Their Endosymbionts Cladocopium, Tatyana V Sikorskaya, Ekaterina V Ermolenko, Taliya T Ginanova, Andrey V Boroda, Kseniya V Efimova, Mikhail Bogdanov
Membrane Vectorial Lipidomic Features Of Coral Host Cells’ Plasma Membrane And Lipid Profiles Of Their Endosymbionts Cladocopium, Tatyana V Sikorskaya, Ekaterina V Ermolenko, Taliya T Ginanova, Andrey V Boroda, Kseniya V Efimova, Mikhail Bogdanov
Faculty, Staff and Student Publications
The symbiotic relationships between coral animal host and autotrophic dinoflagellates are based on the mutual exchange and tight control of nutritional inputs supporting successful growth. The corals Sinularia heterospiculata and Acropora aspera were cultivated using a flow-through circulation system supplying seawater during cold and warm seasons of the year, then sorted into host cells and symbionts and subjected to phylogenetic, morphological, and advanced lipid analyses. Here we show, that the lipidomes of the dinoflagellates Cladocopium C1/C3 and acroporide-specific Cladocopium hosted by the corals, are determined by lipidomic features of different thermosensitivity and unique betaine- and phospholipid molecular species. Phosphatidylserines and …
Investigating Gene Functions And Single-Cell Expression Profiles Of De Novo Variants In Orofacial Clefts, Toshiyuki Itai, Fangfang Yan, Andi Liu, Yulin Dai, Chihiro Iwaya, Sarah W Curtis, Elizabeth J Leslie, Lukas M Simon, Peilin Jia, Xiangning Chen, Junichi Iwata, Zhongming Zhao
Investigating Gene Functions And Single-Cell Expression Profiles Of De Novo Variants In Orofacial Clefts, Toshiyuki Itai, Fangfang Yan, Andi Liu, Yulin Dai, Chihiro Iwaya, Sarah W Curtis, Elizabeth J Leslie, Lukas M Simon, Peilin Jia, Xiangning Chen, Junichi Iwata, Zhongming Zhao
Faculty, Staff and Student Publications
Orofacial clefts (OFCs) are common congenital birth defects with various etiologies, including genetic variants. Online Mendelian Inheritance in Man (OMIM) annotated several hundred genes involving OFCs. Furthermore, several hundreds of de novo variants (DNVs) have been identified from individuals with OFCs. Some DNVs are related to known OFC genes or pathways, but there are still many DNVs whose relevance to OFC development is unknown. To explore novel gene functions and their cellular expression profiles, we focused on DNVs in genes that were not listed in OMIM. We collected 960 DNVs in 853 genes from published studies and curated these genes, …
Crispr-Cas9 And Cas12a Target Site Richness Reflects Genomic Diversity In Natural Populations Of Anopheles Gambiae And Aedes Aegypti Mosquitoes, Travis C Collier, Yoosook Lee, Derrick K Mathias, Víctor López Del Amo
Crispr-Cas9 And Cas12a Target Site Richness Reflects Genomic Diversity In Natural Populations Of Anopheles Gambiae And Aedes Aegypti Mosquitoes, Travis C Collier, Yoosook Lee, Derrick K Mathias, Víctor López Del Amo
Faculty, Staff and Student Publications
Due to limitations in conventional disease vector control strategies including the rise of insecticide resistance in natural populations of mosquitoes, genetic control strategies using CRISPR gene drive systems have been under serious consideration. The identification of CRISPR target sites in mosquito populations is a key aspect for developing efficient genetic vector control strategies. While genome-wide Cas9 target sites have been explored in mosquitoes, a precise evaluation of target sites focused on coding sequence (CDS) is lacking. Additionally, target site polymorphisms have not been characterized for other nucleases such as Cas12a, which require a different DNA recognition site (PAM) and would …
Biophysics Of Protein-Lipid Interactions, Paula A Bender, Vasanthi Jayaraman
Biophysics Of Protein-Lipid Interactions, Paula A Bender, Vasanthi Jayaraman
Faculty, Staff and Student Publications
The biological phenomenon of protein-lipid interactions in cell membranes underlies the diversity of peripheral membrane protein function and physical properties of the membrane. To summarize novel findings in the field, this research highlight focuses on recent publications in Biophysical Journal.
Learning To Express Reward Prediction Error-Like Dopaminergic Activity Requires Plastic Representations Of Time, Ian Cone, Claudia Clopath, Harel Z Shouval
Learning To Express Reward Prediction Error-Like Dopaminergic Activity Requires Plastic Representations Of Time, Ian Cone, Claudia Clopath, Harel Z Shouval
Faculty, Staff and Student Publications
The dominant theoretical framework to account for reinforcement learning in the brain is temporal difference learning (TD) learning, whereby certain units signal reward prediction errors (RPE). The TD algorithm has been traditionally mapped onto the dopaminergic system, as firing properties of dopamine neurons can resemble RPEs. However, certain predictions of TD learning are inconsistent with experimental results, and previous implementations of the algorithm have made unscalable assumptions regarding stimulus-specific fixed temporal bases. We propose an alternate framework to describe dopamine signaling in the brain, FLEX (Flexibly Learned Errors in Expected Reward). In FLEX, dopamine release is similar, but not identical …
Monoallelic De Novo Ajap1 Loss-Of-Function Variants Disrupt Trans-Synaptic Control Of Neurotransmitter Release, Simon Früh, Sami Boudkkazi, Peter Koppensteiner, Vita Sereikaite, Li-Yuan Chen, Diego Fernandez-Fernandez, Pascal D Rem, Daniel Ulrich, Jochen Schwenk, Ziyang Chen, Elodie Le Monnier, Thorsten Fritzius, Sabrina M Innocenti, Valérie Besseyrias, Luca Trovò, Michal Stawarski, Emanuela Argilli, Elliott H Sherr, Bregje Van Bon, Erik-Jan Kamsteeg, Maria Iascone, Alba Pilotta, Maria R Cutrì, Mahshid S Azamian, Andrés Hernández-García, Seema R Lalani, Jill A Rosenfeld, Xiaonan Zhao, Tiphanie P Vogel, Herda Ona, Daryl A Scott, Peter Scheiffele, Kristian Strømgaard, Mehdi Tafti, Martin Gassmann, Bernd Fakler, Ryuichi Shigemoto, Bernhard Bettler
Monoallelic De Novo Ajap1 Loss-Of-Function Variants Disrupt Trans-Synaptic Control Of Neurotransmitter Release, Simon Früh, Sami Boudkkazi, Peter Koppensteiner, Vita Sereikaite, Li-Yuan Chen, Diego Fernandez-Fernandez, Pascal D Rem, Daniel Ulrich, Jochen Schwenk, Ziyang Chen, Elodie Le Monnier, Thorsten Fritzius, Sabrina M Innocenti, Valérie Besseyrias, Luca Trovò, Michal Stawarski, Emanuela Argilli, Elliott H Sherr, Bregje Van Bon, Erik-Jan Kamsteeg, Maria Iascone, Alba Pilotta, Maria R Cutrì, Mahshid S Azamian, Andrés Hernández-García, Seema R Lalani, Jill A Rosenfeld, Xiaonan Zhao, Tiphanie P Vogel, Herda Ona, Daryl A Scott, Peter Scheiffele, Kristian Strømgaard, Mehdi Tafti, Martin Gassmann, Bernd Fakler, Ryuichi Shigemoto, Bernhard Bettler
Faculty, Staff and Students Publications
Adherens junction–associated protein 1 (AJAP1) has been implicated in brain diseases; however, a pathogenic mechanism has not been identified. AJAP1 is widely expressed in neurons and binds to γ-aminobutyric acid type B receptors (GBRs), which inhibit neurotransmitter release at most synapses in the brain. Here, we show that AJAP1 is selectively expressed in dendrites and trans-synaptically recruits GBRs to presynaptic sites of neurons expressing AJAP1. We have identified several monoallelic AJAP1 variants in individuals with epilepsy and/or neurodevelopmental disorders. Specifically, we show that the variant p.(W183C) lacks binding to GBRs, resulting in the inability to recruit them. Ultrastructural analysis revealed …
Psmd11 Loss-Of-Function Variants Correlate With A Neurobehavioral Phenotype, Obesity, And Increased Interferon Response, Wallid Deb, Cory Rosenfelt, Virginie Vignard, Jonas Johannes Papendorf, Sophie Möller, Martin Wendlandt, Maja Studencka-Turski, Benjamin Cogné, Thomas Besnard, Léa Ruffier, Bérénice Toutain, Léa Poirier, Silvestre Cuinat, Amy Kritzer, Amy Crunk, Janette Dimonda, Jaime Vengoechea, Sandra Mercier, Lotte Kleinendorst, Mieke M Van Haelst, Linda Zuurbier, Telma Sulem, Hildigunnur Katrínardóttir, Rún Friðriksdóttir, Patrick Sulem, Kari Stefansson, Berglind Jonsdottir, Shimriet Zeidler, Margje Sinnema, Alexander P A Stegmann, Natali Naveh, Cara M Skraban, Christopher Gray, Jill R Murrell, Sedat Isikay, Davut Pehlivan, Daniel G Calame, Jennifer E Posey, Mathilde Nizon, Kirsty Mcwalter, James R Lupski, Bertrand Isidor, François V Bolduc, Stéphane Bézieau, Elke Krüger, Sébastien Küry, Frédéric Ebstein
Psmd11 Loss-Of-Function Variants Correlate With A Neurobehavioral Phenotype, Obesity, And Increased Interferon Response, Wallid Deb, Cory Rosenfelt, Virginie Vignard, Jonas Johannes Papendorf, Sophie Möller, Martin Wendlandt, Maja Studencka-Turski, Benjamin Cogné, Thomas Besnard, Léa Ruffier, Bérénice Toutain, Léa Poirier, Silvestre Cuinat, Amy Kritzer, Amy Crunk, Janette Dimonda, Jaime Vengoechea, Sandra Mercier, Lotte Kleinendorst, Mieke M Van Haelst, Linda Zuurbier, Telma Sulem, Hildigunnur Katrínardóttir, Rún Friðriksdóttir, Patrick Sulem, Kari Stefansson, Berglind Jonsdottir, Shimriet Zeidler, Margje Sinnema, Alexander P A Stegmann, Natali Naveh, Cara M Skraban, Christopher Gray, Jill R Murrell, Sedat Isikay, Davut Pehlivan, Daniel G Calame, Jennifer E Posey, Mathilde Nizon, Kirsty Mcwalter, James R Lupski, Bertrand Isidor, François V Bolduc, Stéphane Bézieau, Elke Krüger, Sébastien Küry, Frédéric Ebstein
Faculty, Staff and Students Publications
Primary proteasomopathies have recently emerged as a new class of rare early-onset neurodevelopmental disorders (NDDs) caused by pathogenic variants in the PSMB1, PSMC1, PSMC3, or PSMD12 proteasome genes. Proteasomes are large multi-subunit protein complexes that maintain cellular protein homeostasis by clearing ubiquitin-tagged damaged, misfolded, or unnecessary proteins. In this study, we have identified PSMD11 as an additional proteasome gene in which pathogenic variation is associated with an NDD-causing proteasomopathy. PSMD11 loss-of-function variants caused early-onset syndromic intellectual disability and neurodevelopmental delay with recurrent obesity in 10 unrelated children. Our findings demonstrate that the cognitive impairment observed in these individuals could be …
Tsg-6+ Cancer-Associated Fibroblasts Modulate Myeloid Cell Responses And Impair Anti-Tumor Response To Immune Checkpoint Therapy In Pancreatic Cancer, Swetha Anandhan, Shelley Herbrich, Sangeeta Goswami, Baoxiang Guan, Yulong Chen, Marc Daniel Macaluso, Sonali Jindal, Seanu Meena Natarajan, Samuel W Andrewes, Liangwen Xiong, Ashwat Nagarajan, Sreyashi Basu, Derek Ng Tang, Jielin Liu, Jimin Min, Anirban Maitra, Padmanee Sharma
Tsg-6+ Cancer-Associated Fibroblasts Modulate Myeloid Cell Responses And Impair Anti-Tumor Response To Immune Checkpoint Therapy In Pancreatic Cancer, Swetha Anandhan, Shelley Herbrich, Sangeeta Goswami, Baoxiang Guan, Yulong Chen, Marc Daniel Macaluso, Sonali Jindal, Seanu Meena Natarajan, Samuel W Andrewes, Liangwen Xiong, Ashwat Nagarajan, Sreyashi Basu, Derek Ng Tang, Jielin Liu, Jimin Min, Anirban Maitra, Padmanee Sharma
Faculty, Staff and Student Publications
Resistance to immune checkpoint therapy (ICT) presents a growing clinical challenge. The tumor microenvironment (TME) and its components, namely tumor-associated macrophages (TAMs) and cancer-associated fibroblasts (CAFs), play a pivotal role in ICT resistance; however, the underlying mechanisms remain under investigation. In this study, we identify expression of TNF-Stimulated Factor 6 (TSG-6) in ICT-resistant pancreatic tumors, compared to ICT-sensitive melanoma tumors, both in mouse and human. TSG-6 is expressed by CAFs within the TME, where suppressive macrophages expressing Arg1, Mafb, and Mrc1, along with TSG-6 ligand Cd44, predominate. Furthermore, TSG-6 expressing CAFs co-localize with the CD44 expressing macrophages in the TME. …
Leukocyte Immunoglobulin-Like Receptor B1 (Lilrb1) Protects Human Multiple Myeloma Cells From Ferroptosis By Maintaining Cholesterol Homeostasis, Miao Xian, Qiang Wang, Liuling Xiao, Ling Zhong, Wei Xiong, Lingqun Ye, Pan Su, Chuanchao Zhang, Yabo Li, Robert Z Orlowski, Fenghuang Zhan, Siddhartha Ganguly, Youli Zu, Jianfei Qian, Qing Yi
Leukocyte Immunoglobulin-Like Receptor B1 (Lilrb1) Protects Human Multiple Myeloma Cells From Ferroptosis By Maintaining Cholesterol Homeostasis, Miao Xian, Qiang Wang, Liuling Xiao, Ling Zhong, Wei Xiong, Lingqun Ye, Pan Su, Chuanchao Zhang, Yabo Li, Robert Z Orlowski, Fenghuang Zhan, Siddhartha Ganguly, Youli Zu, Jianfei Qian, Qing Yi
Faculty, Staff and Student Publications
Multiple myeloma (MM) is a hematologic malignancy characterized by uncontrolled proliferation of plasma cells in the bone marrow. MM patients with aggressive progression have poor survival, emphasizing the urgent need for identifying new therapeutic targets. Here, we show that the leukocyte immunoglobulin-like receptor B1 (LILRB1), a transmembrane receptor conducting negative immune response, is a top-ranked gene associated with poor prognosis in MM patients. LILRB1 deficiency inhibits MM progression in vivo by enhancing the ferroptosis of MM cells. Mechanistic studies reveal that LILRB1 forms a complex with the low-density lipoprotein receptor (LDLR) and LDLR adapter protein 1 (LDLRAP1) to facilitate LDL/cholesterol …
Cotargeting Ebv Lytic As Well As Latent Cycle Antigens Increases T-Cell Potency Against Lymphoma, Sandhya Sharma, Naren U Mehta, Tim Sauer, Lisa A Rollins, Dirk P Dittmer, Cliona M Rooney
Cotargeting Ebv Lytic As Well As Latent Cycle Antigens Increases T-Cell Potency Against Lymphoma, Sandhya Sharma, Naren U Mehta, Tim Sauer, Lisa A Rollins, Dirk P Dittmer, Cliona M Rooney
Faculty, Staff and Students Publications
The remarkable efficacy of Epstein-Barr virus (EBV)-specific T cells for the treatment of posttransplant lymphomas has not been reproduced for EBV-positive (EBV+) malignancies outside the transplant setting. This is because of, in part, the heterogeneous expression and poor immunogenicity of the viral antigens expressed, namely latent membrane proteins 1 and 2, EBV nuclear antigen 1, and BamHI A rightward reading frame 1 (type-2 [T2] latency). However, EBV lytic cycle proteins are also expressed in certain EBV+ malignancies and, because several EBV lytic cycle proteins are abundantly expressed, have oncogenic activity, and likely contribute to malignancy, we sought and identified viral …
Intratumoral Immune Triads Are Required For Immunotherapy-Mediated Elimination Of Solid Tumors, Gabriel Espinosa-Carrasco, Edison Chiu, Aurora Scrivo, Paul Zumbo, Asim Dave, Doron Betel, Sung Wook Kang, Hee-Jin Jang, Matthew D Hellmann, Bryan M Burt, Hyun-Sung Lee, Andrea Schietinger
Intratumoral Immune Triads Are Required For Immunotherapy-Mediated Elimination Of Solid Tumors, Gabriel Espinosa-Carrasco, Edison Chiu, Aurora Scrivo, Paul Zumbo, Asim Dave, Doron Betel, Sung Wook Kang, Hee-Jin Jang, Matthew D Hellmann, Bryan M Burt, Hyun-Sung Lee, Andrea Schietinger
Faculty, Staff and Students Publications
Tumor-specific CD8+ T cells are frequently dysfunctional and unable to halt tumor growth. We investigated whether tumor-specific CD4+ T cells can be enlisted to overcome CD8+ T cell dysfunction within tumors. We find that the spatial positioning and interactions of CD8+ and CD4+ T cells, but not their numbers, dictate anti-tumor responses in the context of adoptive T cell therapy as well as immune checkpoint blockade (ICB): CD4+ T cells must engage with CD8+ T cells on the same dendritic cell during the effector phase, forming a three-cell-type cluster (triad) to license CD8+ T cell cytotoxicity and cancer cell elimination. …
Impact Of Isotype On The Mechanism Of Action Of Agonist Anti-Ox40 Antibodies In Cancer: Implications For Therapeutic Combinations, Jane E Willoughby, Lang Dou, Sabyasachi Bhattacharya, Heather Jackson, Laura Seestaller-Wehr, David Kilian, Laura Bover, Kui S Voo, Kerry L Cox, Tom Murray, Mel John, Hong Shi, Paul Bojczuk, Junping Jing, Heather Niederer, Andrew J Shepherd, Laura Hook, Stephanie Hopley, Tatyana Inzhelevskaya, Chris A Penfold, C Ian Mockridge, Vikki English, Sara J Brett, Roopa Srinivasan, Christopher Hopson, James Smothers, Axel Hoos, Elaine Paul, Stephen L Martin, Peter J Morley, Niranjan Yanamandra, Mark S Cragg
Impact Of Isotype On The Mechanism Of Action Of Agonist Anti-Ox40 Antibodies In Cancer: Implications For Therapeutic Combinations, Jane E Willoughby, Lang Dou, Sabyasachi Bhattacharya, Heather Jackson, Laura Seestaller-Wehr, David Kilian, Laura Bover, Kui S Voo, Kerry L Cox, Tom Murray, Mel John, Hong Shi, Paul Bojczuk, Junping Jing, Heather Niederer, Andrew J Shepherd, Laura Hook, Stephanie Hopley, Tatyana Inzhelevskaya, Chris A Penfold, C Ian Mockridge, Vikki English, Sara J Brett, Roopa Srinivasan, Christopher Hopson, James Smothers, Axel Hoos, Elaine Paul, Stephen L Martin, Peter J Morley, Niranjan Yanamandra, Mark S Cragg
Faculty, Staff and Student Publications
BACKGROUND: OX40 has been widely studied as a target for immunotherapy with agonist antibodies taken forward into clinical trials for cancer where they are yet to show substantial efficacy. Here, we investigated potential mechanisms of action of anti-mouse (m) OX40 and anti-human (h) OX40 antibodies, including a clinically relevant monoclonal antibody (mAb) (GSK3174998) and evaluated how isotype can alter those mechanisms with the aim to develop improved antibodies for use in rational combination treatments for cancer.
METHODS: Anti-mOX40 and anti-hOX40 mAbs were evaluated in a number of in vivo models, including an OT-I adoptive transfer immunization model in hOX40 knock-in …
Context-Dependent T-Box Transcription Factor Family: From Biology To Targeted Therapy, Siwen Li, Xiangyuan Luo, Mengyu Sun, Yijun Wang, Zerui Zhang, Junqing Jiang, Dian Hu, Jiaqian Zhang, Zhangfan Wu, Yufei Wang, Wenjie Huang, Limin Xia
Context-Dependent T-Box Transcription Factor Family: From Biology To Targeted Therapy, Siwen Li, Xiangyuan Luo, Mengyu Sun, Yijun Wang, Zerui Zhang, Junqing Jiang, Dian Hu, Jiaqian Zhang, Zhangfan Wu, Yufei Wang, Wenjie Huang, Limin Xia
Faculty, Staff and Student Publications
T-BOX factors belong to an evolutionarily conserved family of transcription factors. T-BOX factors not only play key roles in growth and development but are also involved in immunity, cancer initiation, and progression. Moreover, the same T-BOX molecule exhibits different or even opposite effects in various developmental processes and tumor microenvironments. Understanding the multiple roles of context-dependent T-BOX factors in malignancies is vital for uncovering the potential of T-BOX-targeted cancer therapy. We summarize the physiological roles of T-BOX factors in different developmental processes and their pathological roles observed when their expression is dysregulated. We also discuss their regulatory roles in tumor …
Antitumor Effects Of Resveratrol Opposing Mechanisms Of Helicobacter Pylori In Gastric Cancer, Daniela Trautmann, Francesca Suazo, Keila Torres, Layla Simón
Antitumor Effects Of Resveratrol Opposing Mechanisms Of Helicobacter Pylori In Gastric Cancer, Daniela Trautmann, Francesca Suazo, Keila Torres, Layla Simón
Faculty, Staff and Student Publications
Gastric cancer is an aggressive and multifactorial disease. Helicobacter pylori (H. pylori) is identified as a significant etiological factor in gastric cancer. Although only a fraction of patients infected with H. pylori progresses to gastric cancer, bacterial infection is critical in the pathology and development of this malignancy. The pathogenic mechanisms of this bacterium involve the disruption of the gastric epithelial barrier and the induction of chronic inflammation, oxidative stress, angiogenesis and metastasis. Adherence molecules, virulence (CagA and VacA) and colonization (urease) factors are important in its pathogenicity. On the other hand, resveratrol is a natural polyphenol with …