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Articles 331 - 360 of 7163
Full-Text Articles in Entire DC Network
Poly(A) Probe Hcr Rna-Fish Specifically Marks Pyriform Nurse Cells In The Brown Anole Lizard Ovary, Zoe B Griffin, Bonnie K Kircher, Richard R Behringer
Poly(A) Probe Hcr Rna-Fish Specifically Marks Pyriform Nurse Cells In The Brown Anole Lizard Ovary, Zoe B Griffin, Bonnie K Kircher, Richard R Behringer
Faculty, Staff and Student Publications
Hybridization chain reaction RNA-fluorescent in situ hybridization (HCR RNA-FISH) is a powerful and increasingly used method for visualizing gene expression in cells and tissues. A probe set against polyadenylated RNA (poly(A)) is often used as a positive control for RNA integrity and staining quality. While optimizing this technique in the ovary of the brown anole lizard (Anolis sagrei), we found that the poly(A) probe produced a strikingly specific and intense signal in pyriform cells, a specialized lizard-specific nurse cell type. This staining pattern was found in both whole-mount samples and paraffin sections, suggesting that poly(A) signal intensity can serve as …
Astrocytic Sox9 Overexpression In Alzheimer’S Disease Mouse Models Promotes Aβ Plaque Phagocytosis And Preserves Cognitive Function, Dong-Joo Choi, Sanjana Murali, Wookbong Kwon, Junsung Woo, Eun-Ah Christine Song, Yeunjung Ko, Debosmita Sardar, Brittney Lozzi, Yi-Ting Cheng, Michael R Williamson, Teng-Wei Huang, Kaitlyn Sanchez, Joanna Jankowsky, Benjamin Deneen
Astrocytic Sox9 Overexpression In Alzheimer’S Disease Mouse Models Promotes Aβ Plaque Phagocytosis And Preserves Cognitive Function, Dong-Joo Choi, Sanjana Murali, Wookbong Kwon, Junsung Woo, Eun-Ah Christine Song, Yeunjung Ko, Debosmita Sardar, Brittney Lozzi, Yi-Ting Cheng, Michael R Williamson, Teng-Wei Huang, Kaitlyn Sanchez, Joanna Jankowsky, Benjamin Deneen
Faculty, Staff and Students Publications
Astrocytes play essential roles in the brain, and their dysfunction is associated with nearly every form of neurological disease. Despite their ubiquity, knowledge of how astrocytes contribute to disease pathogenesis is incomplete; accordingly, harnessing their biology toward therapeutics remains a major challenge. Here we show that the transcription factor Sox9 plays a context-specific role in maintaining astrocyte function and circuit activity in the aging hippocampus and Alzheimer's disease (AD) models. We found that Sox9 overexpression in astrocytes in AD models clears existing amyloid beta (Aβ) plaques and preserves cognitive function. Mechanistically, Sox9 promotes the phagocytosis of Aβ plaques by astrocytes …
Multi-Omics To Study Chronic Respiratory Diseases And Viral Infections, Sobia Idrees, Hao Chen, Tayyaba Sadaf, Saima Firdous Rehman, Matt D Johansen, Keshav Raj Paudel, Gang Liu, Yuting Wang, Malte D Luecken, Elinor Hortle, Ashleigh S Philp, Kurtis F Budden, Matthew O'Rourke, Gerard E Kaiko, Sionne E M Lucas, Joanne L Dickinson, Peter C Allen, Joseph E Powell, Lai-Ying Zhang, Daniel C Chambers, Tamera Corte, Gaetano Caramori, Maor Sauler, Peter A Wark, Janine Gote-Schniering, Mareike Lehmann, Thomas M Conlon, Theodore S Kapellos, Ali Önder Yildirim, Rosa Faner, Shyamali C Dharmage, Craig E Wheelock, Maarten Van Den Berge, Martijn C Nawijn, Francesca Polverino, Gabrielle T Belz, Sanjay H Chotirmall, Leopoldo N Segal, Alen Faiz, Philip M Hansbro
Multi-Omics To Study Chronic Respiratory Diseases And Viral Infections, Sobia Idrees, Hao Chen, Tayyaba Sadaf, Saima Firdous Rehman, Matt D Johansen, Keshav Raj Paudel, Gang Liu, Yuting Wang, Malte D Luecken, Elinor Hortle, Ashleigh S Philp, Kurtis F Budden, Matthew O'Rourke, Gerard E Kaiko, Sionne E M Lucas, Joanne L Dickinson, Peter C Allen, Joseph E Powell, Lai-Ying Zhang, Daniel C Chambers, Tamera Corte, Gaetano Caramori, Maor Sauler, Peter A Wark, Janine Gote-Schniering, Mareike Lehmann, Thomas M Conlon, Theodore S Kapellos, Ali Önder Yildirim, Rosa Faner, Shyamali C Dharmage, Craig E Wheelock, Maarten Van Den Berge, Martijn C Nawijn, Francesca Polverino, Gabrielle T Belz, Sanjay H Chotirmall, Leopoldo N Segal, Alen Faiz, Philip M Hansbro
Faculty, Staff and Students Publications
Integrating omics layers reveals complex biological systems, unveiling vital insights into chronic respiratory diseases and COVID-19. This holistic approach is crucial for developing more effective treatments and understanding intricate relationships. https://bit.ly/3VKFzJH
Unraveling Posttranslational Modification Complexity: Advances In Quantitative Histone Proteoform Mass Spectrometry, Karl F Poncha, Alyssa T Paparella, Nicolas L Young
Unraveling Posttranslational Modification Complexity: Advances In Quantitative Histone Proteoform Mass Spectrometry, Karl F Poncha, Alyssa T Paparella, Nicolas L Young
Faculty, Staff and Students Publications
Histone proteins and their posttranslational modifications are central to chromatin structure and function. These modifications often occur in combinations, generating a diverse array of histone proteoforms that contribute to the dynamic regulation of chromatin architecture. Advancements in mass spectrometry-based proteomics, particularly top-down and middle-down approaches, have significantly enhanced our ability to characterize these proteoforms and elucidate PTM crosstalk. This review provides an analysis of the epigenetic machinery involved in the addition, recognition, and removal of histone PTMs, emphasizing the complexity introduced by histone variants and combinatorial PTM patterns. We examine the challenges and limitations of traditional antibody-based methods for PTM …
Cgrp Expression And Signaling Sensitization In A Mouse Model Of Chronic Oxaliplatin-Induced Peripheral Neuropathy, Junwei Du, Leland C Sudlow, Margaret H Johnson, Kanishk Satish, Abraham Villagomez, Hongzhen Hu, Mikhail Y Berezin
Cgrp Expression And Signaling Sensitization In A Mouse Model Of Chronic Oxaliplatin-Induced Peripheral Neuropathy, Junwei Du, Leland C Sudlow, Margaret H Johnson, Kanishk Satish, Abraham Villagomez, Hongzhen Hu, Mikhail Y Berezin
2020-Current year OA Pubs
Chemotherapy-induced peripheral neuropathy (CIPN) is a frequent and dose-limiting side effect of oxaliplatin treatment, yet its molecular mechanisms remain incompletely understood. Calcitonin gene-related peptide alpha (CGRPα, encoded by
Focused Ultrasound-Enhanced Nose-To-Brain Delivery Of A Therapeutic Antibody In A Large-Animal Model, Siaka Fadera, Cristian Antonio Wieczorek Villas Boas, Yimei Yue, Zhaoning Gu, Jinyun Yuan, Debolina De, Buck E Rogers, Arash Nazeri, Hong Chen
Focused Ultrasound-Enhanced Nose-To-Brain Delivery Of A Therapeutic Antibody In A Large-Animal Model, Siaka Fadera, Cristian Antonio Wieczorek Villas Boas, Yimei Yue, Zhaoning Gu, Jinyun Yuan, Debolina De, Buck E Rogers, Arash Nazeri, Hong Chen
2020-Current year OA Pubs
No abstract provided.
Coordinated Regulation Of Capping Protein By Carmil And V-1/Myotrophin, John A Hammer, John A Cooper
Coordinated Regulation Of Capping Protein By Carmil And V-1/Myotrophin, John A Hammer, John A Cooper
2020-Current year OA Pubs
Capping Protein (CP) plays a central role in controlling actin filament dynamics in almost all eukaryotic cell types by virtue of its ability to block monomer addition and loss at the barbed end of the actin filament. Like other proteins that control actin assembly, CP is subject to regulation. Here we focus on two direct regulators of CP-CARMIL and V-1/Myotrophin. Specifically, we review recent biochemical, structural, imaging, and cell biological data that argue these two proteins cooperate to create a regulatory cycle for CP that controls its availability, activity, and site of action in the cell. Finally, we discuss unresolved …
Mouse Alport Podocytes Are Susceptible To Aav9 Transduction In Vivo, Meei-Hua Lin, Kohei Omachi, Joshua F Begin, Jennifer L Richardson, Jeffrey H Miner
Mouse Alport Podocytes Are Susceptible To Aav9 Transduction In Vivo, Meei-Hua Lin, Kohei Omachi, Joshua F Begin, Jennifer L Richardson, Jeffrey H Miner
2020-Current year OA Pubs
INTRODUCTION: Alport syndrome features a defective glomerular basement membrane (GBM) due to variants in COL4A3, COL4A4, and COL4A5. The most severe forms, which lack the GBM's collagen α3α4α5(IV) network, progress from hematuria in early childhood to proteinuria, chronic kidney disease, and kidney failure by the age of ∼30. As a monogenic disease without specific treatments, and with podocytes being the only glomerular cells that synthesize collagen α3α4α5(IV), the ability to efficiently deliver genes to Alport podocytes could open up new possibilities for treatment.
METHODS: As a proof-of-concept study, we investigated whether podocytes in X-linked Alport mice were susceptible to transduction …
Dcpr: A Deep Learning Framework For Circadian Phase Reconstruction, Xiao Han, Xiaochen Cen, Zhijin Li, Xiaobo Zhou, Zhiwei Ji
Dcpr: A Deep Learning Framework For Circadian Phase Reconstruction, Xiao Han, Xiaochen Cen, Zhijin Li, Xiaobo Zhou, Zhiwei Ji
Faculty, Staff and Student Publications
Background: The circadian clock is an evolutionarily conserved system that orchestrates 24-h physiological rhythms through transcriptional and translational feedback loops. Mounting evidence suggests a bidirectional relationship between circadian rhythm alteration and disease progression, positioning the circadian clock as a potential therapeutic target. Due to the scarcity of high-resolution temporal omics data, it remains very challenging to elucidate the underlying regulatory mechanisms of the circadian system. As a practical alternative, public untimed transcriptomic datasets offer the potential to infer gene expression oscillations retrospectively. However, existing computational approaches for circadian phase estimation often suffer from limited predictive accuracy, reducing their ability to …
The Concise Guide To Pharmacology 2025/26: Catalytic Receptors, Stephen P. H. Alexander, Doriano Fabbro, Chloe J. Peach, Alasdair J. Gibb, Eamonn Kelly, Alistair A. Mathie, Emma L. Veale, Jane F. Armstrong, Elena Faccenda, Simon D. Harding, Christopher Southan, Jamie A. Davies, Annie Beuve, Peter Brouckaert, Clare Bryant, John C. Burnett, Richard W. Farndale, Andreas Friebe, John Garthwaite, Adrian J. Hobbs, Gavin E. Jarvis, Laura Kilpatrick, Doris Koesling, Michaela Kuhn, Birgit Leitinger, David Macewan, Tom P. Monie, Lincoln R. Potter, Michael Russwurm, Harald H. H. W. Schmidt, Johannes-Peter Stasch, Scott A. Waldman
The Concise Guide To Pharmacology 2025/26: Catalytic Receptors, Stephen P. H. Alexander, Doriano Fabbro, Chloe J. Peach, Alasdair J. Gibb, Eamonn Kelly, Alistair A. Mathie, Emma L. Veale, Jane F. Armstrong, Elena Faccenda, Simon D. Harding, Christopher Southan, Jamie A. Davies, Annie Beuve, Peter Brouckaert, Clare Bryant, John C. Burnett, Richard W. Farndale, Andreas Friebe, John Garthwaite, Adrian J. Hobbs, Gavin E. Jarvis, Laura Kilpatrick, Doris Koesling, Michaela Kuhn, Birgit Leitinger, David Macewan, Tom P. Monie, Lincoln R. Potter, Michael Russwurm, Harald H. H. W. Schmidt, Johannes-Peter Stasch, Scott A. Waldman
Department of Pharmacology, Physiology, and Cancer Biology Faculty Papers
The Concise Guide to Pharmacology 2025/26 marks the seventh edition in this series of biennial publications in the British Journal of Pharmacology. Presented in landscape format, the guide provides a comparative overview of the pharmacology of drug target families. The concise nature of the Concise Guide refers to the style of presentation, being clear, accessible, and well-structured, rather than the scope of the content, which spans approximately 500 pages. The Concise Guide summarises the key pharmacological properties of around 1900 human drug targets, and nearly 7000 interactions, involving around 4400 ligands. While the content is a substantially condensed version of …
Sex Differences In Bile Acid Homeostasis And Excretion Underlie The Disparity In Liver Cancer Incidence Between Males And Females, Megan E Patton, Sherwin Kelekar, Lauren J Taylor, Angela E Dean, Qianying Zuo, Rhishikesh N Thakare, Sung Hwan Lee, Emily C Gentry, Morgan Panitchpakdi, Pieter Dorrestein, Yazen Alnouti, Zeynep Madak-Erdogan, Ju-Seog Lee, Milton J Finegold, Sayeepriyadarshini Anakk
Sex Differences In Bile Acid Homeostasis And Excretion Underlie The Disparity In Liver Cancer Incidence Between Males And Females, Megan E Patton, Sherwin Kelekar, Lauren J Taylor, Angela E Dean, Qianying Zuo, Rhishikesh N Thakare, Sung Hwan Lee, Emily C Gentry, Morgan Panitchpakdi, Pieter Dorrestein, Yazen Alnouti, Zeynep Madak-Erdogan, Ju-Seog Lee, Milton J Finegold, Sayeepriyadarshini Anakk
Faculty, Staff and Student Publications
Hepatocellular carcinoma (HCC), the common liver cancer, exhibits higher incidence in males. Here, we report that mice lacking bile acid (BA) regulators, Farnesoid X Receptor (FXR also termed NR1H4) and Small Heterodimer Partner (SHP also termed NR0B2), recapitulate the sex difference in liver cancer risk. Since few therapeutic options are available, we focused on understanding the intrinsic protection afforded to female livers. Transcriptomic analysis in control and NR1H4 and NR0B2 double knockout livers identified female-specific changes in metabolism, including amino acids, lipids, and steroids. To assess translational relevance, we examined if transcriptomic signatures obtained from this murine HCC model correlate …
A Spatiotemporal Model Of Cxcl10 As A Master Regulator Of Immune Evasion And Metastasis In Osteosarcoma, Benjamin B Gyau, Tsz-Kwong Man
A Spatiotemporal Model Of Cxcl10 As A Master Regulator Of Immune Evasion And Metastasis In Osteosarcoma, Benjamin B Gyau, Tsz-Kwong Man
Faculty, Staff and Students Publications
The C-X-C motif chemokine ligand 10 (CXCL10) is implicated in the progression of osteosarcoma (OS), the most aggressive pediatric bone malignancy. However, its role often presents a profound clinical paradox: although high circulating levels are strongly linked to poor prognosis, its canonical function is to recruit anti-tumor immune cells. This review unravels these contrasting roles by proposing a novel spatiotemporal model. We argue that in the early stages, immune-evading OS cells initiate the formation of a pre-metastatic niche (PMN) in the lungs, creating a localized inflammatory environment that becomes the primary source of elevated circulating CXCL10. As the disease progresses, …
Distinct Populations Of Lung Capillary Endothelial Cells And Their Functional Significance, Joel James, Dan Yi, Zhiyu Dai, Et Al.
Distinct Populations Of Lung Capillary Endothelial Cells And Their Functional Significance, Joel James, Dan Yi, Zhiyu Dai, Et Al.
2020-Current year OA Pubs
The role of the lung's microcirculation and capillary endothelial cells in normal physiology and the pathobiology of pulmonary diseases is obviously vital. The recent discovery of molecularly distinct aerocytes and general capillary (gCaps) endothelial cells by single-cell transcriptomics (scRNAseq) advanced the field in understanding microcirculatory milieu and cellular communications. However, increasing evidence from different groups indicated the possibility of a more heterogeneous nature of lung capillaries. Therefore, we investigated enriched lung endothelial cells by scRNAseq and identified five novel populations of gCaps with distinct molecular signatures and roles. Our analysis suggests that two major populations of gCaps that express Scn7a(Na
Phospholipid Scramblase 1 (Plscr1) Regulates Interferon-Lambda Receptor 1 (Ifn-Λr1) And Ifn-Λ Signaling In Influenza A Virus (Iav) Infection, Alina Xiaoyu Yang, Lisa Ramos-Rodriguez, Parand Sorkhdini, Dongqin Yang, Carmelissa Norbrun, Sonoor Majid, Sanghyun Lee, Yong Zhang, Michael Holtzman, David F Boyd, Yang Zhou
Phospholipid Scramblase 1 (Plscr1) Regulates Interferon-Lambda Receptor 1 (Ifn-Λr1) And Ifn-Λ Signaling In Influenza A Virus (Iav) Infection, Alina Xiaoyu Yang, Lisa Ramos-Rodriguez, Parand Sorkhdini, Dongqin Yang, Carmelissa Norbrun, Sonoor Majid, Sanghyun Lee, Yong Zhang, Michael Holtzman, David F Boyd, Yang Zhou
2020-Current year OA Pubs
Phospholipid scramblase 1 (PLSCR1) is an interferon-stimulated gene (ISG) that has several known anti-influenza functions. However, the mechanisms in relation to its expression compartment and enzymatic activity have not been completely explored. Moreover, only limited animal models have been studied to delineate its role at the tissue level in influenza infections. Our results showed that influenza A virus (IAV)-infected
Micu2 Controls Mitochondrial Calcium Signaling And Migration In Neurons During Development, Elena Berezhnaya, Benjamín Cartes-Saavedra, Raghavendra Singh, Macarena Rodríguez-Prados, Orly Reiner, Fowzan S Alkuraya, György Hajnóczky
Micu2 Controls Mitochondrial Calcium Signaling And Migration In Neurons During Development, Elena Berezhnaya, Benjamín Cartes-Saavedra, Raghavendra Singh, Macarena Rodríguez-Prados, Orly Reiner, Fowzan S Alkuraya, György Hajnóczky
Department of Pathology, Anatomy, and Cell Biology Faculty Papers
Neurological disorders are linked to mitochondrial dysfunction and calcium overload. Mitochondrial calcium uptake is mediated by the mitochondrial calcium uniporter (mtCU), regulated by MICU1, which can be either homodimerized or heterodimerized with MICU2 or MICU3. Though MICU2 is scarce in the adult brain, MICU2 loss in patients leads to a neurodevelopmental disorder. We hypothesized that MICU2 is required for developmental calcium signaling and neuronal migration. MICU2 is present in the developing mouse brain but disappears by maturation, contrasting with other mtCU subunits that increase. MICU2 loss in mice does not affect cytoplasmic calcium but augments the mitochondrial matrix calcium rise …
Coordinated Changes In Stromal And Hematopoietic Cells That Define The Perinatal To Juvenile Transition In The Mouse Thymus, Anusha Vasudev, Colin R Moore, Aparna Calindi, Seung Woo Kang, Bryan R Helm, Jayashree Srinivasan, Siddhartha Shah, Erin Baker, Ruiting Zong, Nandini Singarapu, Scott Casey, Andrew N Macintyre, Ken S Lau, Laura P Hale, Qi Liu, Nancy R Manley, Lauren I R Ehrlich, Ellen R Richie
Coordinated Changes In Stromal And Hematopoietic Cells That Define The Perinatal To Juvenile Transition In The Mouse Thymus, Anusha Vasudev, Colin R Moore, Aparna Calindi, Seung Woo Kang, Bryan R Helm, Jayashree Srinivasan, Siddhartha Shah, Erin Baker, Ruiting Zong, Nandini Singarapu, Scott Casey, Andrew N Macintyre, Ken S Lau, Laura P Hale, Qi Liu, Nancy R Manley, Lauren I R Ehrlich, Ellen R Richie
Faculty, Staff and Student Publications
Perinatal T cells have distinctive phenotypes and functions that may be due in part to age-associated features of stromal cells in the perinatal thymus. We identify age-associated changes in mouse thymic epithelial cells, mesenchyme, endothelium, and hematopoietic antigen-presenting cells from birth to one month of age using single-cell transcriptional profiling, flow cytometry, and imaging. Coordinated cellular and molecular changes occur at 7-14 days of age, designated "transitional ages," as thymus growth switches to homeostasis. E2F target gene expression declines, and the expression of type I interferon response genes increases across diverse cell types at transitional ages. Alterations in thymic stromal …
Eif3d And Eif3e Mediate Selective Translational Control Of Hypoxia That Can Be Inhibited By Small Molecules, Stephen C Purdy, Kate Matlin, Christopher Alderman, Amber Baldwin, Natasha Shrivastava, Goksu Sarioglu, Somnath Dutta, Kristofor J Webb, Arthur Wolin, Dillon P Boulton, Annika Gustafson, Jyoti Kapali, John D Landua, Michael T Lewis, M Cecilia Caino, James C Costello, William Old, Xiang Wang, Rui Zhao, Heide L Ford, Neelanjan Mukherjee
Eif3d And Eif3e Mediate Selective Translational Control Of Hypoxia That Can Be Inhibited By Small Molecules, Stephen C Purdy, Kate Matlin, Christopher Alderman, Amber Baldwin, Natasha Shrivastava, Goksu Sarioglu, Somnath Dutta, Kristofor J Webb, Arthur Wolin, Dillon P Boulton, Annika Gustafson, Jyoti Kapali, John D Landua, Michael T Lewis, M Cecilia Caino, James C Costello, William Old, Xiang Wang, Rui Zhao, Heide L Ford, Neelanjan Mukherjee
Faculty, Staff and Students Publications
Exposure to hypoxia is linked to increased cellular plasticity and enhanced metastasis, effects that are primarily attributed to the transcriptional activation of large gene programs downstream of hypoxia-inducible factors (HIFs). However, translational effects in hypoxia, which likely precede transcriptional effects, have remained largely unexplored. Using ribosome profiling, we uncovered a selective translational response in acute hypoxia that is eukaryotic initiation factor (eIF)3d/eIF3e dependent and controls downstream hypoxic responses, including HIF1α accumulation and cellular invasion. We further demonstrated that eIF3e copy number and eIF3e and eIF3d expression signatures are associated with worsened outcomes for patients with breast cancer. Finally, we identified …
Discovery Of Small Molecules And A Druggable Groove That Regulate Dna Binding And Release Of The Ap-1 Transcription Factor Δfosb, Sean Mcneme, Yun Young Yim, Ashwani Kumar, Yi Li, Brandon Hughes, Corey Peyton St Romain, Galina Aglyamova, Jianping Chen, Nghi D Nguyen, Shanghua Fan, Gabriel S Stephens, Wen-Ning Zhao, Samantha Kruzshak, Molly Estill, Corrine Brener, Solange Tofani, Anil Kumar, Earnest P Chen, Nadeen Takatka, Alfred J Robison, Haiying Chen, Reid T Powell, Stephen J Haggarty, Clifford Stephan, Eric J Nestler, Jeannie Chin, Mischa Machius, Jia Zhou, Gabby Rudenko
Discovery Of Small Molecules And A Druggable Groove That Regulate Dna Binding And Release Of The Ap-1 Transcription Factor Δfosb, Sean Mcneme, Yun Young Yim, Ashwani Kumar, Yi Li, Brandon Hughes, Corey Peyton St Romain, Galina Aglyamova, Jianping Chen, Nghi D Nguyen, Shanghua Fan, Gabriel S Stephens, Wen-Ning Zhao, Samantha Kruzshak, Molly Estill, Corrine Brener, Solange Tofani, Anil Kumar, Earnest P Chen, Nadeen Takatka, Alfred J Robison, Haiying Chen, Reid T Powell, Stephen J Haggarty, Clifford Stephan, Eric J Nestler, Jeannie Chin, Mischa Machius, Jia Zhou, Gabby Rudenko
Faculty, Staff and Students Publications
ΔFOSB, a member of the AP-1 family of transcription factors, mediates long-term neuroadaptations underlying drug addiction, seizure-related cognitive decline, dyskinesias, and several other chronic conditions. AP-1 transcription factors are notoriously difficult to modulate pharmacologically due to the absence of well-defined binding pockets. Here, we identify a novel site on ΔFOSB, located outside the DNA-binding cleft, that accommodates small molecules. We show that sulfonic acid-containing compounds bind to this site via an induced-fit mechanism, reorienting side chains critical for DNA binding, and that they may hinder the ΔFOSB bZIP α-helix from binding to the major groove of DNA. In vivo, direct …
Development Of A Procedure For Prion Surveillance In The Laboratory Setting, Damian Gorski, Isaac Schauer, Kane Spicker, Ananya Tupaki-Sreepurna, Fei Wang, Claudio Soto, Sandra Pritzkow
Development Of A Procedure For Prion Surveillance In The Laboratory Setting, Damian Gorski, Isaac Schauer, Kane Spicker, Ananya Tupaki-Sreepurna, Fei Wang, Claudio Soto, Sandra Pritzkow
Faculty, Staff and Student Publications
Infectious prions readily adhere to common surfaces, retain infectivity, and are highly resistant to conventional decontamination, posing significant biosafety challenges in the medical and research environments. Recent occupational exposures underscore the urgency of improving safety measures. Here, we describe an approach combining foam-swab surface sampling and protein misfolding cyclic amplification to enhance prion surveillance. Our results demonstrate the ability to detect prions most relevant to human health directly from contaminated surfaces, even at 100 million-fold dilutions of the brain. We applied our method to assess the completeness of prion decontamination and show that high prion quantities can resist even approved …
Adaptive Neuromodulation Dialogues: Navigating Current Challenges And Emerging Innovations In Neuromodulation System Development, Frederik Lampert, Matthew R Baker, Michael A Jensen, Amir H Ayyoubi, Christian Bentler, Jessica L Bowersock, Rosana Esteller, Jeffrey A Herron, Graham W Johnson, Daryl R Kipke, Christopher K Kovach, Vaclav Kremen, Filip Mivalt, Joseph S Neimat, Theoden I Netoff, Enrico Opri, Alexander Rockhill, Joshua M Rosenow, Kristin K Sellers, Nathan P Staff, Chandra Prakash Swamy, Ashwin Viswanathan, Gerwin Schalk, Timothy Denison, Dora Hermes, Nuri F Ince, Peter Brunner, Gregory A Worrell, Kai J Miller
Adaptive Neuromodulation Dialogues: Navigating Current Challenges And Emerging Innovations In Neuromodulation System Development, Frederik Lampert, Matthew R Baker, Michael A Jensen, Amir H Ayyoubi, Christian Bentler, Jessica L Bowersock, Rosana Esteller, Jeffrey A Herron, Graham W Johnson, Daryl R Kipke, Christopher K Kovach, Vaclav Kremen, Filip Mivalt, Joseph S Neimat, Theoden I Netoff, Enrico Opri, Alexander Rockhill, Joshua M Rosenow, Kristin K Sellers, Nathan P Staff, Chandra Prakash Swamy, Ashwin Viswanathan, Gerwin Schalk, Timothy Denison, Dora Hermes, Nuri F Ince, Peter Brunner, Gregory A Worrell, Kai J Miller
Faculty, Staff and Students Publications
Adaptive neuromodulation systems and implantable brain-computer interfaces have made notable strides in recent years, translating experimental prototypes into clinical applications and garnering substantial attention from the public. This surge in interest is accompanied by increased scrutiny related to the safety, efficacy, and ethical implications of these systems, all of which must be directly addressed as we introduce new neurotechnologies. In response, we have synthesized the insights resulting from discussions between groups of experts in the field and summarized them into five key domains essential to therapeutic device development: (1) analyzing current landscape of neuromodulation devices and translational platforms (2) identifying …
Mbnl Loss Of Function In Smooth Muscle As A Model For Myotonic Dystrophy Associated Gastrointestinal Dysmotility, Janel A M Peterson, Jesus A Frias, Andrew N Miller, Krishnakant G Soni, Yi Zhang, Zheng Xia, John W Day, Geoffrey A Preidis, Thomas A Cooper
Mbnl Loss Of Function In Smooth Muscle As A Model For Myotonic Dystrophy Associated Gastrointestinal Dysmotility, Janel A M Peterson, Jesus A Frias, Andrew N Miller, Krishnakant G Soni, Yi Zhang, Zheng Xia, John W Day, Geoffrey A Preidis, Thomas A Cooper
Faculty, Staff and Students Publications
Myotonic dystrophy type 1 (DM1) is the most common adult-onset muscular dystrophy and severely affects multiple organ systems, including the brain, heart, skeletal muscle, and gastrointestinal (GI) tract. Despite 80% of individuals with DM1 experiencing GI dysfunction that affects their daily life, the mechanisms of GI dysmotility in DM1 remain an understudied aspect of the disease. DM1 is caused by a CTG repeat expansion in the DMPK gene that, when expressed as an expanded CUG repeat RNA, sequesters and reduces the activity of the muscleblind-like (MBNL) RNA-binding protein family. We developed a mouse line with conditional, smooth muscle-specific knockout of …
Intracellular Acinetobacter Baumannii Acts As A Transient Reservoir In Lung Infection Via A "Persist And Resist" Strategy, Manon Janet-Maitre, Gisela Di Venanzio, Clay D Jackson-Litteken, Nichollas E Scott, Mario F Feldman
Intracellular Acinetobacter Baumannii Acts As A Transient Reservoir In Lung Infection Via A "Persist And Resist" Strategy, Manon Janet-Maitre, Gisela Di Venanzio, Clay D Jackson-Litteken, Nichollas E Scott, Mario F Feldman
2020-Current year OA Pubs
Although considered primarily extracellular,
Wdfy4-Dependent Cross-Presentation Proceeds Via A Vacuolar Antigen-Processing Route, J Luke Postoak, Alyssa Koch, Sicong Shan, Ray A Ohara, Suin Jo, Jing Chen, Pritesh Desai, Feiya Ou, Magdalena Kraft, Michael S Diamond, Sunkyung Kim, Theresa L Murphy, Kenneth M Murphy
Wdfy4-Dependent Cross-Presentation Proceeds Via A Vacuolar Antigen-Processing Route, J Luke Postoak, Alyssa Koch, Sicong Shan, Ray A Ohara, Suin Jo, Jing Chen, Pritesh Desai, Feiya Ou, Magdalena Kraft, Michael S Diamond, Sunkyung Kim, Theresa L Murphy, Kenneth M Murphy
2020-Current year OA Pubs
The intracellular processing route used by type I conventional dendritic cells (cDC1) for cross-presentation of viral- or tumor-associated antigens remains controversial. One model proposes that captured antigens exit from damaged phagolysosomes and enter the cytosol, where they are processed for presentation by MHC class I molecules (MHC-I). This model relies on proteasomal degradation and TAP-dependent peptide transport into the endoplasmic reticulum (ER) for loading by the peptide loading complex (PLC). An alternative model proposes a vesicular route in which captured antigens are retained and processed within an endocytic compartment. A compelling argument favoring the cytosolic model is the dramatic loss …
The Inferred Functional Connectome Underlying Circadian Synchronization In The Mouse Suprachiasmatic Nucleus, K L Nikhil, Bharat Singhal, Daniel Granados-Fuentes, Jr-Shin Li, István Z Kiss, Erik D Herzog
The Inferred Functional Connectome Underlying Circadian Synchronization In The Mouse Suprachiasmatic Nucleus, K L Nikhil, Bharat Singhal, Daniel Granados-Fuentes, Jr-Shin Li, István Z Kiss, Erik D Herzog
2020-Current year OA Pubs
Circadian rhythms in mammals arise from the spatiotemporal synchronization of ~20,000 neuronal clocks in the suprachiasmatic nucleus (SCN). Although anatomical, molecular, and genetic approaches have revealed diverse SCN cell types, how network-level wiring enables their synchronization remains unclear. To overcome the challenges of inferring functional connectivity from fixed tissue, we developed Mutual Information & Transfer Entropy (MITE), an information-theoretic framework to infer directed cell-cell connections with high fidelity from long-term live-cell imaging. Recording and analyzing 3,290 h of clock gene expression from 8,261 SCN neurons across 17 mice, we uncovered a highly conserved, sparse SCN network organized into two asymmetrically …
Mitochondrial Complex Ii Orchestrates Divergent Effects In Cd4+ And Cd8+ T Cells, Keisuke Seike, Shih-Chun A Chu, Yuichi Sumii, Takashi Ikeda, Meng-Chih Wu, Laure Maneix, Dongchang Zhao, Yaping Sun, Marcin Cieslik, Pavan Reddy
Mitochondrial Complex Ii Orchestrates Divergent Effects In Cd4+ And Cd8+ T Cells, Keisuke Seike, Shih-Chun A Chu, Yuichi Sumii, Takashi Ikeda, Meng-Chih Wu, Laure Maneix, Dongchang Zhao, Yaping Sun, Marcin Cieslik, Pavan Reddy
Faculty, Staff and Students Publications
Mitochondrial metabolism orchestrates T cell functions, yet the role of specific mitochondrial components in distinct T cell subsets remains poorly understood. Here, we explored the role of mitochondrial complex II (MC II), the only complex from the electron transport chain (ETC) that plays a role in both ETC and metabolism, in regulating T cell functions. Surprisingly, MC II exerts divergent effects on CD4+ and CD8+ T cell activation and function. Using T cell-specific MC II subunit, succinate dehydrogenase A-deficient (SDHA-deficient) mice, we integrated single-cell RNA-seq and metabolic profiling, with in vitro and in vivo T cell functional assays to illuminate …
Facts And Hopes Of Chimeric Antigen Receptor-Redirected Nk T Cells, Amy N Courtney, Xin Zhou, Gengwen Tian, Ying Wang, Leonid S Metelitsa, Gianpietro Dotti
Facts And Hopes Of Chimeric Antigen Receptor-Redirected Nk T Cells, Amy N Courtney, Xin Zhou, Gengwen Tian, Ying Wang, Leonid S Metelitsa, Gianpietro Dotti
Faculty, Staff and Students Publications
Chimeric antigen receptor (CAR)-engineered invariant NK T cells (CAR-NKT) are a novel cell platform for cancer immunotherapy. Unlike conventional T cells, NKTs are characterized by innate antitumor properties, minimal alloreactivity, and a unique ability to modulate the tumor microenvironment. This article provides a comprehensive overview of preclinical and early clinical studies evaluating CAR-NKTs in both autologous and allogeneic clinical settings. We discuss the contributions of CAR signaling domains, cytokine coexpression, and other functional measures that correlate with CAR-NKT persistence, function, and metabolic fitness. We also discuss the critical role of immunocompetent animal models in elucidating the interactions of CAR-NKTs with …
Low-Dimensional Signatures Of Neuronal Activity Associated With Long-Term Operant Conditioning In Aplysia, Sara Vanaki, Nicholas O Gonzalez, Curtis L Neveu, Yuto Momohara, Behnaam Aazhang, John H Byrne
Low-Dimensional Signatures Of Neuronal Activity Associated With Long-Term Operant Conditioning In Aplysia, Sara Vanaki, Nicholas O Gonzalez, Curtis L Neveu, Yuto Momohara, Behnaam Aazhang, John H Byrne
Faculty, Staff and Student Publications
Operant conditioning is a form of learning in which a behavior is reinforced by reward. Operant conditioning has multiple temporal domains, ranging from short-term, lasting a few minutes, to long-term, persisting for at least 24 h. The extent to which short- and long-term operant conditioning memories rely on shared or separate neural mechanisms is poorly understood. Voltage-sensitive dye (VSD) imaging has been used previously to record the activity of a large number of neurons simultaneously in the buccal ganglion to measure changes in neuronal activity during short-term operant conditioning. We examined neuronal activity using VSD 24 h after operant conditioning …
Targeting Kinesin Family Member 20a Sensitizes Stem-Like Triple-Negative Breast Cancer Cells To Standard Chemotherapy, Yayoi Adachi, Weilong Chen, Cheng Zhang, Tao Wang, Nina Gildor, Rachel Shi, Haoyong Fu, Masashi Takeda, Qian Liang, Fangzhou Zhao, Hongyi Liu, Jun Fang, Jin Zhou, Hongwei Yao, Lianxin Hu, Shina Li, Lei Guo, Lin Xu, Ling Xie, Xian Chen, Chengheng Liao, Qing Zhang
Targeting Kinesin Family Member 20a Sensitizes Stem-Like Triple-Negative Breast Cancer Cells To Standard Chemotherapy, Yayoi Adachi, Weilong Chen, Cheng Zhang, Tao Wang, Nina Gildor, Rachel Shi, Haoyong Fu, Masashi Takeda, Qian Liang, Fangzhou Zhao, Hongyi Liu, Jun Fang, Jin Zhou, Hongwei Yao, Lianxin Hu, Shina Li, Lei Guo, Lin Xu, Ling Xie, Xian Chen, Chengheng Liao, Qing Zhang
Faculty, Staff and Student Publications
Triple-negative breast cancer (TNBC), being both aggressive and highly lethal, poses a major clinical challenge in terms of treatment. Its heterogeneity and lack of hormone receptors or HER2 expression further restrict the availability of targeted therapy. Breast cancer stem cells (BCSCs), known to fuel TNBC malignancy, are now being exploited as a vulnerability for TNBC treatment. Here, we dissected the transcriptome of BCSCs and identified kinesin family member 20A (KIF20A) as a key regulator of BCSC survival and TNBC tumorigenesis. Genetic depletion or pharmacological inhibition of KIF20A impairs BCSC viability and tumor initiation and development in vitro and in vivo. …
Loss Of Mfap5 And Its Effect On Skin Homeostasis And Wound Healing, Chen Han, Heidi Yuan, Timothy J Koh, Lin Chen, Robert P Mecham, Luisa A Dipietro
Loss Of Mfap5 And Its Effect On Skin Homeostasis And Wound Healing, Chen Han, Heidi Yuan, Timothy J Koh, Lin Chen, Robert P Mecham, Luisa A Dipietro
2020-Current year OA Pubs
MFAP5, also known as microfibrillar-associated glycoprotein-2 (MAGP2), may influence parameters of skin wound healing related to scar formation. To further elucidate its role in skin wound healing, we assessed skin wound repair in Mfap5
A Long Non-Coding Rna Leat1 Mediates The Hormone Responsiveness Of Efnb2 During Male Urogenital Development, Deidre Mattiske, Pascal Bernard, Paul E Gradie, Richard R Behringer, Paul A Overbeek, Rachel J O'Neill, Tiffany Phillips, Melanie Stewart, Neil Youngson, Gerard Tarulli, Andrew J Pask
A Long Non-Coding Rna Leat1 Mediates The Hormone Responsiveness Of Efnb2 During Male Urogenital Development, Deidre Mattiske, Pascal Bernard, Paul E Gradie, Richard R Behringer, Paul A Overbeek, Rachel J O'Neill, Tiffany Phillips, Melanie Stewart, Neil Youngson, Gerard Tarulli, Andrew J Pask
Faculty, Staff and Students Publications
The novel long non-coding RNA (lncRNA) Leat1 is extraordinarily conserved in both its location (syntenic with EfnB2, an essential gene in anogenital patterning) and sequence. Here we show that Leat1 is upregulated following the production of testosterone from the developing testis in mice and interacts with EfnB2, positively regulating its expression. Leat1 expression is suppressed by estrogen, which in turn suppresses the expression of EfnB2. Moreover, the loss of Leat1 leads to reduced EfnB2, resulting in a severe hypospadias phenotype. The human LEAT1 gene is also co-expressed with EFNB2 in the developing human penis, suggesting a conserved function for this …