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Articles 451 - 480 of 10753
Full-Text Articles in Entire DC Network
A Programmable Genetic Platform For Engineering Noninvasive Biosensors, Asish N Chacko, Kaamini M Dhanabalan, Jinyang Wan, Roy Chien, Nolan T Anderson, Binzhi Xu, Katie Pham, Ritu Tiwari, Arnab Mukherjee
A Programmable Genetic Platform For Engineering Noninvasive Biosensors, Asish N Chacko, Kaamini M Dhanabalan, Jinyang Wan, Roy Chien, Nolan T Anderson, Binzhi Xu, Katie Pham, Ritu Tiwari, Arnab Mukherjee
Faculty, Staff and Student Publications
Creating genetic sensors for noninvasive visualization of biological activities in optically opaque tissues holds immense potential for basic research and the development of genetic and cell-based therapies. Magnetic resonance imaging (MRI) stands out among deep tissue imaging methods for its ability to generate high-resolution images without ionizing radiation. However, the adoption of MRI as a mainstream biomolecular technology has been hindered by the lack of adaptable methods to link molecular events with genetically encodable contrast. Here, we introduce modular aquaporin-based protease-activatable probes for enhanced reporting (MAPPER), a platform for the systematic creation of genetic sensors for MRI. To develop MAPPER, …
Glutamatergic Projection Neurons In The Basal Forebrain Underlie Learned Olfactory Associational Valence Assignments, Pey-Shyuan Chin, Zhuokun Ding, Mikhail Kochukov, Snigdha Srivastava, Elizabeth H Moss, Qingchun Tong, Benjamin R Arenkiel
Glutamatergic Projection Neurons In The Basal Forebrain Underlie Learned Olfactory Associational Valence Assignments, Pey-Shyuan Chin, Zhuokun Ding, Mikhail Kochukov, Snigdha Srivastava, Elizabeth H Moss, Qingchun Tong, Benjamin R Arenkiel
Faculty, Staff and Student Publications
Sensory perception is shaped by experience, giving stimuli behavioral significance. Basal forebrain (BF) cholinergic neurons in mice, which are crucial for arousal and motivation, also regulate sensory processing. Within BF nuclei, glutamatergic (vGlut2BF) neurons receive cholinergic input and modulate behaviors, but their roles in encoding sensory significance remain unclear. Using in vivo calcium imaging, we found that vGlut2BF neurons initially poorly encoded odor identity. However, their response to conditioned odors increased following associative learning, and their population activity more distinctly encoded paired stimuli, reflecting emergent value representation. Furthermore, pairing stimulation or inhibition of vGlut2BF neurons with specific odors altered odor …
Optimal Murine Cd4+ T Cell Priming By Mrna-Lipid Nanoparticle Vaccines Requires Endogenous Antigen Processing, Julia E. Rood, Suh Kyung Yoon, Mary K. Heard, Stephen D. Carro, Emma J. Hedgepeth, Mary E. O'Mara, Michael J. Hogan, Nhu Le, Hiromi Muramatsu, Kieu Lam, Petra Schreiner, Coral Kasden, Hansell H. Stedman, Ryan A. Langlois, James Heyes, Norbert Pardi, Laurence C. Eisenlohr
Optimal Murine Cd4+ T Cell Priming By Mrna-Lipid Nanoparticle Vaccines Requires Endogenous Antigen Processing, Julia E. Rood, Suh Kyung Yoon, Mary K. Heard, Stephen D. Carro, Emma J. Hedgepeth, Mary E. O'Mara, Michael J. Hogan, Nhu Le, Hiromi Muramatsu, Kieu Lam, Petra Schreiner, Coral Kasden, Hansell H. Stedman, Ryan A. Langlois, James Heyes, Norbert Pardi, Laurence C. Eisenlohr
College of Life Sciences Faculty Papers
Lipid nanoparticle (LNP)-encapsulated nucleoside-modified mRNA vaccines elicit robust CD4+ T cell responses, yet the mechanisms underlying this T cell priming remain unknown. Antigens presented to CD4+ T cells on major histocompatibility complex class II (MHC II) are traditionally acquired by antigen presenting cells (APCs) from extracellular sources. Here we show that vaccine specific CD4+ T cell responses instead rely on antigen directly expressed within APCs, without extracellular transit. Murine APCs treated with mRNA-LNP vaccines activate T cells more efficiently when presenting antigen produced internally, rather than acquired externally. Immunization with mRNA-LNP vaccines engineered to inhibit antigen expression in APCs results …
Bi-Allelic Variants In Bcat1 Impair Mitochondrial Function And Are Associated With A Candidate Neurometabolic Disorder., Brianna L Disanza, Giulia S Porcari, Livia Sertori Finoti, Leonardo Ramos-Rodriguez, Devin M Burris, Justin A Mcdonough, Gang Ning, Grace Fagan, Guy T Helman, Erin Weiss, Ryan J Taft, Amy Pizzino, Matthew T Whitehead, Amy Waldman, Cas Simons, Xilma Ortiz-Gonzalez, William C Skarnes, Adeline Vanderver, Elizabeth J Bhoj, Rebecca C Ahrens-Nicklas
Bi-Allelic Variants In Bcat1 Impair Mitochondrial Function And Are Associated With A Candidate Neurometabolic Disorder., Brianna L Disanza, Giulia S Porcari, Livia Sertori Finoti, Leonardo Ramos-Rodriguez, Devin M Burris, Justin A Mcdonough, Gang Ning, Grace Fagan, Guy T Helman, Erin Weiss, Ryan J Taft, Amy Pizzino, Matthew T Whitehead, Amy Waldman, Cas Simons, Xilma Ortiz-Gonzalez, William C Skarnes, Adeline Vanderver, Elizabeth J Bhoj, Rebecca C Ahrens-Nicklas
Faculty Research 2026
Branched-chain amino acid transaminase-1 (BCAT1) initiates the catabolism of branched-chain amino acids (BCAAs), which are essential for neurologic function. However, the role of BCAT1 in neurodevelopment is largely unknown. Here, we identify compound heterozygous BCAT1 variants in a patient with a severe progressive neurodevelopmental syndrome. To investigate the functional consequences, we established patient variant (BCAT1: c.792T>A p.Phe264Leu; c.1042G>A p.Glu348Lys) and BCAT1 knockout hiPSC models. Both disease models show profound defects in cortical neuron differentiation and neurite outgrowth. Furthermore, metabolic analysis revealed evidence of mitochondrial dysfunction associated with increased levels of tricarboxylic acid (TCA) cycle intermediates, glutamate, and glutamine. …
Bridging Hypoxia And Vision Loss: The Emerging Role Of Connexins In Local And Systemic Eye Diseases, Xianping Zhang, Yalong Cheng, Jean X Jiang, Yuting Li
Bridging Hypoxia And Vision Loss: The Emerging Role Of Connexins In Local And Systemic Eye Diseases, Xianping Zhang, Yalong Cheng, Jean X Jiang, Yuting Li
Faculty, Staff and Student Publications
Hypoxic eye diseases represent a pivotal yet often underappreciated contributor to the onset and progression of many retinal disorders. When hypoxia persists or exceeds the tissue's compensatory capacity, it triggers pathological retinal neovascularization, blood-retinal barrier disruption, and neuronal apoptosis, ultimately resulting in irreversible visual impairment. Connexins (Cxs) form gap junction channels and hemichannels and regulate retinal cell proliferation, differentiation, and survival, thereby playing a central regulatory role in the pathogenesis of hypoxic ocular diseases. In addition to gap junctions, Cx hemichannels promote transmission of molecules between intra- and extracellular environments, further influencing retinal homeostasis under hypoxic stress. This review synthesizes …
Diet-Responsive Genetic Determinants Of Intestinal Colonization In The Yeast Candida Albicans, Musfirat Shubaita, Mazen Oneissi, Elena Lindemann-Pérez, Cecilia Fadhel Alvarez, Anne-Marie Krachler, Diana M Proctor, J Christian Pérez
Diet-Responsive Genetic Determinants Of Intestinal Colonization In The Yeast Candida Albicans, Musfirat Shubaita, Mazen Oneissi, Elena Lindemann-Pérez, Cecilia Fadhel Alvarez, Anne-Marie Krachler, Diana M Proctor, J Christian Pérez
Faculty, Staff and Student Publications
Dietary components influence microbial composition in the digestive tract. Although often viewed as energy sources, dietary components are likely to shape microbial determinants of intestinal colonization beyond metabolism. Here, we report that a dietary long-chain fatty acid enhances the yeast Candida albicans colonization of the murine gut partly by eliciting modifications to the fungal cell surface. Mice fed an oleic acid-rich diet were readily colonized by C. albicans and exhibited higher fungal load in feces compared with rodents fed an isocaloric control diet. Surprisingly, β-oxidation, a catabolic process to break down fatty acids for energy production, was dispensable for C. …
Egfr Inhibitor-Resistant Lung Cancers Exhibit Collateral Sensitivity To A Covalent, Cysteine-Independent Keap1 Oligomerizing Molecular Bridge, Christopher F Bassil, Kerry Dillon, Gray R Anderson, Benjamin Mayro, Kayleigh N Askin, Peter S Winter, Stefan Harry, Samuel Gruber, Tierney M Hall, Jacob P Hoj, Christian Cerda-Smith, Haley M Hutchinson, Shane T Killarney, Ava Heffernan, Caroline Teddy, Katherine R Singleton, Li Qin, Kévin Jubien-Girard, Cécile Favreau, Guillaume Robert, Barr Tivon, Ella Livnah, Nir London, Rachid Benhida, Patrick Auberger, Ann Marie Pendergast, Liron Bar-Peled, David M Lonard, Anthony R Martin, Alexandre Puissant, Kris C Wood
Egfr Inhibitor-Resistant Lung Cancers Exhibit Collateral Sensitivity To A Covalent, Cysteine-Independent Keap1 Oligomerizing Molecular Bridge, Christopher F Bassil, Kerry Dillon, Gray R Anderson, Benjamin Mayro, Kayleigh N Askin, Peter S Winter, Stefan Harry, Samuel Gruber, Tierney M Hall, Jacob P Hoj, Christian Cerda-Smith, Haley M Hutchinson, Shane T Killarney, Ava Heffernan, Caroline Teddy, Katherine R Singleton, Li Qin, Kévin Jubien-Girard, Cécile Favreau, Guillaume Robert, Barr Tivon, Ella Livnah, Nir London, Rachid Benhida, Patrick Auberger, Ann Marie Pendergast, Liron Bar-Peled, David M Lonard, Anthony R Martin, Alexandre Puissant, Kris C Wood
Faculty, Staff and Students Publications
Targeted therapies have revolutionized cancer care. Unfortunately, most patients develop refractory, multifocal resistance to these therapies within a matter of months. Here, we demonstrate that the evolution of resistance to EGFR inhibitors in EGFR-mutant non-small cell lung cancer endows cells with hypersensitivity to a PAINS-like small molecule, MCB-613. Systematic proteomic, functional genomic, and biochemical studies revealed that MCB-613 binds KEAP1 in a covalent, cysteine-independent fashion, acting as a divalent molecular bridge that relies upon lysine residues in the KEAP1 dimerization domain to join monomers of KEAP1 together. Oligomerization of KEAP1 by MCB-613 sets into motion a fatal cascade of KEAP1 …
Resolution Of A Human Chromosomal Mystery: Evolutionary Complexity Revealed, Jeffrey Rogers
Resolution Of A Human Chromosomal Mystery: Evolutionary Complexity Revealed, Jeffrey Rogers
Faculty, Staff and Students Publications
The human complement of chromosomes differs from our closest primate relatives by virtue of a unique chromosome fusion event. In this issue of Cell Genomics, Yang et al. provide the first detailed analysis of the site of chromosome fusion and reconstruct the complex evolutionary relationships among the genomic elements within the human fusion site and their related sequences in our great ape relatives.
Primate Gut Microbiota Induce Evolutionarily Salient Changes In Mouse Neurodevelopment., Alex R Decasien, Jacob E Aronoff, Elizabeth K Mallott, Sahana Kuthyar, Sriram Chitta, Brian T Layden, Maria L Savo Sardaro, Stanton Gray, Lawrence E Williams, Emma R Liechty, Hyo M Lee, Won Lee, James P Curley, Christopher W Kuzawa, Katherine R Amato
Primate Gut Microbiota Induce Evolutionarily Salient Changes In Mouse Neurodevelopment., Alex R Decasien, Jacob E Aronoff, Elizabeth K Mallott, Sahana Kuthyar, Sriram Chitta, Brian T Layden, Maria L Savo Sardaro, Stanton Gray, Lawrence E Williams, Emma R Liechty, Hyo M Lee, Won Lee, James P Curley, Christopher W Kuzawa, Katherine R Amato
Faculty Research 2026
Multiple primate species, including humans, evolved brains that are exceptionally large relative to their body sizes. These large brains coevolved with metabolic adaptations that enhance cerebral energy supply, including increased circulating glucose levels. While the gut microbiota (GM) is known to influence host metabolism, its potential role in primate brain evolution remains unclear. To investigate this, we inoculated germ-free mice with the GMs of primate species selected to separate the effects of brain size (encephalization) from phylogenetic relatedness: humans (large-brained, Catarrhini), macaques (smaller-brained, Catarrhini), and squirrel monkeys (large-brained, Platyrrhini). We first show that differences in brain gene expression between mice …
Induction Of Moderate Dna Damage Enhances Megakaryopoiesis And Platelet Production, Virginia Camacho, Luis Francisco Zirnberger Batista, Et Al.
Induction Of Moderate Dna Damage Enhances Megakaryopoiesis And Platelet Production, Virginia Camacho, Luis Francisco Zirnberger Batista, Et Al.
2020-Current year OA Pubs
Megakaryocytes (MKs) are large, hematopoietic cells with a polyploid, multilobulated nucleus. Although DNA replication in MKs (endomitosis) is well studied, limited investigations have examined the impact of DNA instability on megakaryopoiesis. Poly-adenosine diphosphate (ADP) ribose polymerase (PARP) inhibitors are chemotherapeutics that result in accumulation of DNA damage and are commonly associated with thrombocytopenia, presumably mediated through platelet progenitors, MKs. To explore PARP inhibitor-induced thrombocytopenia, we treated mice with the PARP inhibitor niraparib. Although high-dose niraparib treatment led to thrombocytopenia, consistent with clinical observations, lower-dose treatment led to a significant increase in bone marrow MKs, MK progenitors (MkPs), and circulating platelets. …
Differential Virulence And Immune Recognition Of Klebsiella Pneumoniae O-Antigen Subtypes O2Α And O2Β, Paeton L Wantuch, Lloyd S Robinson, Cory J Knoot, Christian M Harding, David A Rosen
Differential Virulence And Immune Recognition Of Klebsiella Pneumoniae O-Antigen Subtypes O2Α And O2Β, Paeton L Wantuch, Lloyd S Robinson, Cory J Knoot, Christian M Harding, David A Rosen
2020-Current year OA Pubs
No abstract provided.
A Chemogenetic Approach For Temporal And Cell-Specific Activation Of Endogenous Gpcrs In Vivo, Gwendolyn Shingles, Qianqian Pang, Jian Weng, Ryan Singer, Waleed Babar, Jiaqi Shen, Luis Vazquez-Rivera, Yao Chen, Peng Li, Wenjing Wang
A Chemogenetic Approach For Temporal And Cell-Specific Activation Of Endogenous Gpcrs In Vivo, Gwendolyn Shingles, Qianqian Pang, Jian Weng, Ryan Singer, Waleed Babar, Jiaqi Shen, Luis Vazquez-Rivera, Yao Chen, Peng Li, Wenjing Wang
2020-Current year OA Pubs
Cell-specific regulation of endogenous G protein-coupled receptors (GPCRs) is crucial for understanding their roles in physiological processes. We present chemogenetic tools using shield-1-dependent irreversible protein switches to regulate peptide agonist activity. To demonstrate this platform, we engineered chemogenetically regulated pituitary adenylate cyclase activating polypeptide (cPACAP), which exhibited >15-fold chemical-dependent regulation of endogenous receptor activity. In vivo application of cPACAP allowed neuronal activation via the endogenous receptor for PACAP, engaging neural circuits that control respiratory and feeding behaviors. By integrating cPACAP with transgenic mice, we selectively activated endogenous PACAP receptor signaling in hypocretin-expressing neurons of the lateral hypothalamic area (LHA), revealing …
Tumor-Infiltrating Bacteria Disrupt Cancer Epithelial Cell Interactions And Induce Cell-Cycle Arrest, Jorge Luis Galeano Niño, Falk Ponath, Victor A Ajisafe, Clara R Becker, Andrew G Kempchinsky, Martha A Zepeda-Rivera, Javier A Gomez, Hanrui Wu, Jessica G Terrazas, Heather Bouzek, Elizabeth Cromwell, Pritha Chanana, Matthew Wong, Ashish Damania, Michael G White, Y Nancy You, Scott Kopetz, Nadim J Ajami, Jennifer A Wargo, Christopher D Johnston, Susan Bullman
Tumor-Infiltrating Bacteria Disrupt Cancer Epithelial Cell Interactions And Induce Cell-Cycle Arrest, Jorge Luis Galeano Niño, Falk Ponath, Victor A Ajisafe, Clara R Becker, Andrew G Kempchinsky, Martha A Zepeda-Rivera, Javier A Gomez, Hanrui Wu, Jessica G Terrazas, Heather Bouzek, Elizabeth Cromwell, Pritha Chanana, Matthew Wong, Ashish Damania, Michael G White, Y Nancy You, Scott Kopetz, Nadim J Ajami, Jennifer A Wargo, Christopher D Johnston, Susan Bullman
Faculty, Staff and Student Publications
Tumor-infiltrating bacteria are increasingly recognized as modulators of cancer progression and therapy resistance. We describe a mechanism by which extracellular intratumoral bacteria, including Fusobacterium, modulate cancer epithelial cell behavior. Spatial imaging and single-cell spatial transcriptomics show that these bacteria predominantly localize extracellularly within tumor microniches of colorectal and oral cancers, characterized by reduced cell density, transcriptional activity, and proliferation. In vitro, Fusobacterium nucleatum disrupts epithelial contacts, inducing G0-G1 arrest and transcriptional quiescence. This state confers 5-fluorouracil resistance and remodels the tumor microenvironment. Findings were validated by live-cell imaging, spatial profiling, mouse models, and a 52-patient colorectal cancer cohort. Transcriptomics reveals …
Spatial Omics At The Forefront: Emerging Technologies, Analytical Innovations, And Clinical Applications, Yunhe Liu, Yibo Dai, Linghua Wang
Spatial Omics At The Forefront: Emerging Technologies, Analytical Innovations, And Clinical Applications, Yunhe Liu, Yibo Dai, Linghua Wang
Faculty, Staff and Student Publications
Spatial omics transforms our understanding of cancer by revealing how tumor cells and the microenvironment are organized, interact, and evolve within tissues. Here, we synthesize advances in spatial technologies that map tumor ecosystems with unprecedented fidelity. We highlighted analytical breakthroughs-including multimodal integration and emerging spatial foundation models-that resolve functional niches and spatial communities, converting spatial patterns into mechanistic insights. We summarize how spatially organized features, from immune hubs to microbiota and neural interfaces, shape tumor evolution and clinical outcomes. We then outline how spatial approaches illuminate precancer biology, metastatic adaptation, and therapy response. Bridging discovery and translation, we provide a …
Tet2-Mutant Clonal Hematopoiesis Enhances Macrophage Antigen Presentation And Improves Immune Checkpoint Therapy In Solid Tumors, Shelley Herbrich, Mehdi Chaib, Swetha Anandhan, Samuel W Andrewes, Ashwat Nagarajan, Baoxiang Guan, Nishant Gandhi, Jared Gilliam, Milan Radovich, Padmanee Sharma
Tet2-Mutant Clonal Hematopoiesis Enhances Macrophage Antigen Presentation And Improves Immune Checkpoint Therapy In Solid Tumors, Shelley Herbrich, Mehdi Chaib, Swetha Anandhan, Samuel W Andrewes, Ashwat Nagarajan, Baoxiang Guan, Nishant Gandhi, Jared Gilliam, Milan Radovich, Padmanee Sharma
Faculty, Staff and Student Publications
Clonal hematopoiesis (CH) is detectable in upwards of 20% of patients with solid tumors and is associated with worsened prognosis; however, its role in tumor immunology and immune checkpoint therapy (ICT) is unknown. Using a bone marrow chimera model of Tet2+/mut CH in mice with solid tumors, we found the Tet2-mutant myeloid cells are abundant in the tumor microenvironment and contributed to an improved response to ICT. Mechanistically, Tet2+/mut macrophages inside the tumor act as immunogenic antigen-presenting cells that more effectively cross-prime naive CD8+ T cells in response to IFNγ. In human cohorts of 35,971 non-small cell lung cancer patients …
The Computationally Designed Tri2-2 Miniprotein Inhibitor Protects Against Multiple Sars-Cov-2 Omicron Variants, Jimin Lee, James Brett Case, Young-Jun Park, Rashmi Ravichandran, Daniel Asarnow, M Alejandra Tortorici, Jack T Brown, Shilpa Sanapala, Lauren Carter, David Baker, Michael S Diamond, David Veesler
The Computationally Designed Tri2-2 Miniprotein Inhibitor Protects Against Multiple Sars-Cov-2 Omicron Variants, Jimin Lee, James Brett Case, Young-Jun Park, Rashmi Ravichandran, Daniel Asarnow, M Alejandra Tortorici, Jack T Brown, Shilpa Sanapala, Lauren Carter, David Baker, Michael S Diamond, David Veesler
2020-Current year OA Pubs
The continued evolution of severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) has compromised neutralizing antibody responses elicited by prior infection or vaccination and abolished the utility of most monoclonal antibody therapeutics. We previously described a computationally-designed, homotrimeric miniprotein inhibitor, designated TRI2-2, that protects mice against pre-Omicron SARS-CoV-2 variants. Here, we show that TRI2-2 exhibits broadly neutralizing activity of SARS-CoV-2 variants and protects mice against BQ.1.1, XBB.1.5 and BA.2.86 challenge when administered intranasally post-exposure. The resistance of TRI2-2 to viral escape by most variants and the ability to deliver it directly to the upper airways highlight the potential of the multivalent …
Transcriptomic Signature-Guided Depletion Of Intermediate Alveolar Epithelial Cells Ameliorates Pulmonary Fibrosis In Mice, Fei Peng, Chun-Sun Jiang, Zhen Zheng, Shahram Aliyari, Dan Shan, Aaryan Sabharwal, Qinyan Yin, Shigeki Saito, Chao He, Ivan O Rosas, Joseph A Lasky, Victor J Thannickal, Yong Zhou
Transcriptomic Signature-Guided Depletion Of Intermediate Alveolar Epithelial Cells Ameliorates Pulmonary Fibrosis In Mice, Fei Peng, Chun-Sun Jiang, Zhen Zheng, Shahram Aliyari, Dan Shan, Aaryan Sabharwal, Qinyan Yin, Shigeki Saito, Chao He, Ivan O Rosas, Joseph A Lasky, Victor J Thannickal, Yong Zhou
Faculty, Staff and Students Publications
Single-cell RNA sequencing (scRNA-seq) has identified intermediate epithelial states in pulmonary fibrosis, including KRT5-/KRT17+ aberrant basaloid cells in humans and Krt8+ alveolar differentiation intermediates (ADIs) in mice. Their functional contributions to fibrogenesis, however, remain unclear. Here, we introduce an RNA-sensing-dependent protein translation technology that enables selective targeting of Krt8+ ADI cells in vitro and in vivo. Transcriptomic analysis revealed Small Proline-Rich Protein 1 A (SPRR1A) mRNA as a shared marker of murine Krt8+ ADIs and human KRT5-/KRT17+ basaloid cells, distinguishing them from other lung cell populations. Using programmable RNA sensors, we demonstrated selective EGFP-labeling of Krt8+ ADI cells in vivo, …
Daily Locomotor Activity Declines With Tumor Growth And Disease Progression In Glioblastoma, Maria F Gonzalez-Aponte, Sofia V Salvatore, Anna R. Damato, Ruth Gn Katumba, Grayson R. Talcott, Omar H. Butt, Jian L. Campian, Jingqin Luo, Joshua B. Rubin, Olivia J. Walch, Erik D. Herzog
Daily Locomotor Activity Declines With Tumor Growth And Disease Progression In Glioblastoma, Maria F Gonzalez-Aponte, Sofia V Salvatore, Anna R. Damato, Ruth Gn Katumba, Grayson R. Talcott, Omar H. Butt, Jian L. Campian, Jingqin Luo, Joshua B. Rubin, Olivia J. Walch, Erik D. Herzog
2020-Current year OA Pubs
Glioblastoma (GBM) is an aggressive brain tumor that often progresses despite resection and treatment. Timely and continuous assessment of GBM progression is critical to expedite secondary surgery or enrollment in clinical trials. However, current progression detection requires costly and specialized MRI examinations, which, in the absence of new symptoms or signs, are usually scheduled every 2-3 months. Here, we hypothesized that changes in daily activity are associated with GBM growth and disease progression. We found that wheel-running activity in GBM-bearing mice declined as tumors grew and preceded weight loss and circadian breakdown by over a week. Temozolomide treatment in the …
Lung Epithelial And Alveolar Macrophage-Like Cell Interactions Significantly Modify Innate Responses To Bacterial Endotoxin With The Involvement Of Direct Cellular Contacts, Tnf-Α, Icam1 And Mcp-1, Connor Wood, Shagun Khera, Minjeong Woo, Vikram Sharma, Justyna Lopatecka, Frederic Coulon, Zaheer Nasir, Vincent Delorme, Simon K. Jackson, György Fejer
Lung Epithelial And Alveolar Macrophage-Like Cell Interactions Significantly Modify Innate Responses To Bacterial Endotoxin With The Involvement Of Direct Cellular Contacts, Tnf-Α, Icam1 And Mcp-1, Connor Wood, Shagun Khera, Minjeong Woo, Vikram Sharma, Justyna Lopatecka, Frederic Coulon, Zaheer Nasir, Vincent Delorme, Simon K. Jackson, György Fejer
School of Biomedical Sciences
Introduction: Lung alveolar macrophages (AMs) and epithelial cells form the first line of defense against inhaled pathogens. Their interactions strongly influence innate immune responses in the lung, yet the mechanisms underlying this cross-talk remain incompletely understood. Methods: In this study, we established a co-culture system using a primary model of AMs (MPI alveolar macrophage-like cells) and MLE-12 alveolar epithelial cells to investigate innate responses and cellular interactions during bacterial lipopolysaccharide (LPS)-induced TLR4 activation. Results: Cytokine and chemokine profiling revealed that co-cultures exhibited significantly enhanced proinflammatory responses to both LPS and TLR2 ligands—including IL-6, TNF-a, and MCP-1 secretion—compared with mono-cultures. Strikingly, …
Renal Piezo2 Is An Essential Regulator Of Renin, Rose Z Hill, Jeffrey H Miner, Et Al.
Renal Piezo2 Is An Essential Regulator Of Renin, Rose Z Hill, Jeffrey H Miner, Et Al.
2020-Current year OA Pubs
Renin synthesis and release is the rate-limiting step of the renin-angiotensin-aldosterone system (RAAS) that controls fluid homeostasis. A major activator of the RAAS is a decrease in perfusion pressure within the kidneys, suggesting a link between renal mechanotransduction and renin. However, the identity of the mechanosensor(s) in the kidneys and their physiological significance to the RAAS remain unclear. We find that loss of the force-gated nonselective cation channel PIEZO2 in cells of renin lineage dysregulates the RAAS by elevating renin. We observe that PIEZO2 is expressed in renin-producing juxtaglomerular granular cells and is required for their calcium dynamics in vivo. …
Antecedent Enhancer Activity Predicts Future Susceptibility To Seizures In Mice, Benjamin D Boros, Mariam A Gachechiladze, Juanru Guo, Dylan A Galloway, Shayna M Mueller, Mark Shabsovich, Allen Yen, Xuhua Chen, Alexander J Cammack, Tao Shen, Robi D Mitra, Joseph D Dougherty, Timothy M Miller
Antecedent Enhancer Activity Predicts Future Susceptibility To Seizures In Mice, Benjamin D Boros, Mariam A Gachechiladze, Juanru Guo, Dylan A Galloway, Shayna M Mueller, Mark Shabsovich, Allen Yen, Xuhua Chen, Alexander J Cammack, Tao Shen, Robi D Mitra, Joseph D Dougherty, Timothy M Miller
2020-Current year OA Pubs
Wide variation of responses to identical stimuli presented to genetically inbred mice suggests the hypothesis that stochastic non-genetic variation, such as in chromatin state or enhancer activity during neurodevelopment, can mediate such phenotypic differences. However, this hypothesis is largely untested since capturing pre-existing molecular states requires non-destructive, longitudinal recording. Therefore, we tested the potential of Calling Cards (CC) to record transient neuronal enhancer activity during postnatal development in mice, and thereby associate such non-genetic variation with a subsequent phenotypic presentation - degree of seizure response to the pro-convulsant pentylenetetrazol. We show that recorded differences in enhancer activity at 243 loci …
Gh Alters Lymphatic Vessels In Female Mice And Stat5 Phosphorylation In Human Lymphatic Endothelial Cells, Christopher Walsh, Emily Scott, Elise Wagner, Jerome Walsh, Shashank Reddy, Arshad Ahmad, Reetobrata Basu, Eva Sevick-Muraca, Rich Brody, Uday Sandbhor, Sebastian Neggers, John J Kopchick
Gh Alters Lymphatic Vessels In Female Mice And Stat5 Phosphorylation In Human Lymphatic Endothelial Cells, Christopher Walsh, Emily Scott, Elise Wagner, Jerome Walsh, Shashank Reddy, Arshad Ahmad, Reetobrata Basu, Eva Sevick-Muraca, Rich Brody, Uday Sandbhor, Sebastian Neggers, John J Kopchick
The Brown Foundation: Institute of Molecular Medicine
Disruption of lymphatic function underlies a broad spectrum of inflammatory and metabolic disorders, yet the hormonal pathways that regulate lymphatic biology remain poorly defined. GH, which is implicated in similar disease states, has an unclear role in lymphatic homeostasis. To address this gap, we investigated how chronic alterations in GH signaling alter lymphatic structure and function. Using transgenic mouse lines with increased, decreased, or absent GH action, we quantified the effect of GH on lymphatic pumping rate and lymphangiogenic remodeling during wound healing using near-infrared fluorescent imaging. We also measured markers of lymphatic endothelial cells using Western blot and immunohistochemistry …
Defining Rna Oligonucleotides That Reverse Deleterious Phase Transitions Of Rna-Binding Proteins With Prion-Like Domains., Lin Guo, Jacob Mann, Jocelyn Mauna, Katie Copley, Hejia Wang, Jack Rubien, Cristian Bergmann, Jenny Carey, Jessica Merjane, Marilyn Ngo, Jiazhen Xu, Hana Odeh, Jiabei Lin, Bo Lim Lee, Laura Ganser, Emma Robinson, Kevin Kim, Anastasia Murthy, Tapas Paul, Bede Portz, Amanda Gleixner, Zamia Diaz, Ashleigh Smirnov, George Padilla, Ellen Lavorando, Carolann Espy, Yulei Shang, Eric Huang, Alessandra Chesi, Nicolas Fawzi, Sua Myong, Christopher Donnelly, James Shorter
Defining Rna Oligonucleotides That Reverse Deleterious Phase Transitions Of Rna-Binding Proteins With Prion-Like Domains., Lin Guo, Jacob Mann, Jocelyn Mauna, Katie Copley, Hejia Wang, Jack Rubien, Cristian Bergmann, Jenny Carey, Jessica Merjane, Marilyn Ngo, Jiazhen Xu, Hana Odeh, Jiabei Lin, Bo Lim Lee, Laura Ganser, Emma Robinson, Kevin Kim, Anastasia Murthy, Tapas Paul, Bede Portz, Amanda Gleixner, Zamia Diaz, Ashleigh Smirnov, George Padilla, Ellen Lavorando, Carolann Espy, Yulei Shang, Eric Huang, Alessandra Chesi, Nicolas Fawzi, Sua Myong, Christopher Donnelly, James Shorter
Department of Biochemistry and Molecular Biology Faculty Papers
RNA-binding proteins (RBPs) with prion-like domains (PrLDs), such as FUS and TDP-43, condense into functional liquids, which can transform into pathological fibrils that underpin fatal neurodegenerative disorders, including amyotrophic lateral sclerosis (ALS)/frontotemporal dementia (FTD). Here, we define short RNAs that prevent FUS fibrillization by promoting liquid phases and distinct short RNAs that prevent and reverse FUS condensation and fibrillization. These activities require interactions with multiple RNA-binding domains of FUS and are encoded by RNA sequence, length, and structure. We define a short RNA that dissolves cytoplasmic FUS aggregates, restores nuclear FUS, and mitigates FUS toxicity in optogenetic models and ALS …
Sex-Specific Evolutionary Programs Shape Recombination Rate Evolution In House Mice., Lydia K Wooldridge, Micah Pietraho, Peyton Disiena, Sam Littman, Benjamin Clauss, Beth L Dumont
Sex-Specific Evolutionary Programs Shape Recombination Rate Evolution In House Mice., Lydia K Wooldridge, Micah Pietraho, Peyton Disiena, Sam Littman, Benjamin Clauss, Beth L Dumont
Faculty Research 2026
Recombination rates vary across species, populations, and sexes. House mice (Mus musculus) present a particularly extreme example. Prior studies have established large differences in global recombination rates between M. musculus subspecies and inbred strains, with males exhibiting more extensive variation than females. The observation of sex-limited variation has prompted the hypothesis that male and female recombination rates may evolve by distinct evolutionary mechanisms in M. musculus. Here, we formally evaluate this hypothesis in a phylogenetic framework. We combine cytogenetic estimates of genomic crossover counts with published data to compile a large dataset of sex-specific crossover rate estimates totaling >6,000 single …
Characterization Of Inflammatory Pseudotumors In A Large Animal Model Of Liver Cancer, Erik N K Cressman, Samantha Hicks, Natalie W Fowlkes, Danielle L Stolley, Maria Sophia Stenkamp
Characterization Of Inflammatory Pseudotumors In A Large Animal Model Of Liver Cancer, Erik N K Cressman, Samantha Hicks, Natalie W Fowlkes, Danielle L Stolley, Maria Sophia Stenkamp
Faculty, Staff and Student Publications
Background: The development of relevant and robust large animal models of hepatocellular carcinoma is needed to test new therapeutic strategies for this disease. Transgenic approaches hold promise in addressing this complex problem. One such model, the Oncopig, has been reported to develop tumors of up to 4 cm in diameter within 7-14 days at sites of in situ vector inoculation. However, the resulting lesions reportedly contained an extensive inflammatory component that has not been evaluated in detail.
Methods: Herein, we describe our results from multiparametric characterization of the lesions generated using liver biopsy cores incubated in vector solution and replaced …
Loss Of Kdm6a-Mediated Genomic Instability And Metabolic Reprogramming Regulates Response To Therapeutic Perturbations In Bladder Cancer, Pratishtha Singh, Ranit D'Rozario, Bidisha Chakraborty, Swadhin Meher, Deblina Raychaudhuri, Aminah J Tannir, Yang Li, Anurag Majumdar, Jessalyn Hawkins, Yun Xiong, Philip Lorenzi, Padmanee Sharma, Kadir Akdemir, Patrick Pilie, Abhinav K Jain, Byron Hing Lung Lee, Sangeeta Goswami
Loss Of Kdm6a-Mediated Genomic Instability And Metabolic Reprogramming Regulates Response To Therapeutic Perturbations In Bladder Cancer, Pratishtha Singh, Ranit D'Rozario, Bidisha Chakraborty, Swadhin Meher, Deblina Raychaudhuri, Aminah J Tannir, Yang Li, Anurag Majumdar, Jessalyn Hawkins, Yun Xiong, Philip Lorenzi, Padmanee Sharma, Kadir Akdemir, Patrick Pilie, Abhinav K Jain, Byron Hing Lung Lee, Sangeeta Goswami
Faculty, Staff and Student Publications
Mutations in epigenetic regulators are common in bladder cancer, yet their impact on therapeutic responses remains unclear. Here, we identify that loss-of-function mutations in KDM6A, a histone demethylase altered in about 26% of advanced bladder cancers, are associated with poor survival after cisplatin chemotherapy, whereas they correlate with improved outcomes with anti-PD-1 therapy. Using CRISPR-Cas9-engineered murine and human bladder cancer models, we show that KDM6A deficiency increases formation of extrachromosomal circular DNA carrying chemoresistance loci, promoting cisplatin resistance. In parallel, KDM6A loss impairs DNA repair and rewires tumor metabolism, reducing glycolysis and lactate output. This metabolic shift diminishes histone lactylation …
3d Reconstruction Of Spatial Transcriptomics With Spatial Pattern Enhanced Graph Convolutional Neural Network, Chen Tang, Yuansheng Zhou, Xue Xiao, Lei Dong, Lei Yu, Qiwei Li, Guanghua Xiao, Lin Xu
3d Reconstruction Of Spatial Transcriptomics With Spatial Pattern Enhanced Graph Convolutional Neural Network, Chen Tang, Yuansheng Zhou, Xue Xiao, Lei Dong, Lei Yu, Qiwei Li, Guanghua Xiao, Lin Xu
Faculty, Staff and Student Publications
Spatially resolved transcriptomics (SRT) is a promising new technology that enables simultaneous analysis of gene expression and spatial information for biomedical research. However, the existing statistical and deep learning algorithms used for analyzing SRT data rely solely on two-dimensional (2D) spatial coordinates, which limits their ability to accurately identify spatial domains, spatially variable genes (SVGs), cell-to-cell communications, and developmental trajectories in a three-dimensional (3D) spatial manner. To address these limitations, we introduced Spa3D, which utilized the anti-leakage Fourier transform and graph convolutional neural network model to reconstruct 3D-based spatial structures from multiple 2D SRT slices. We demonstrate that Spa3D is …
Spatially Resolved Integrative Analysis Of Transcriptomic And Metabolomic Changes In Tissue Injury Studies, Eleanor C Williams, Lovisa Franzén, Martina Olsson Lindvall, Gregory Hamm, Steven Oag, Muntasir Mamun Majumder, James Denholm, Azam Hamidinekoo, Javier Escudero Morlanes, Marco Vicari, Joakim Lundeberg, Laura Setyo, Trevor M Godfrey, Livia S Eberlin, Aleksandr Zakirov, Jorrit J Hornberg, Marianna Stamou, Patrik L Ståhl, Anna Ollerstam, Jennifer Y Tan, Irina Mohorianu
Spatially Resolved Integrative Analysis Of Transcriptomic And Metabolomic Changes In Tissue Injury Studies, Eleanor C Williams, Lovisa Franzén, Martina Olsson Lindvall, Gregory Hamm, Steven Oag, Muntasir Mamun Majumder, James Denholm, Azam Hamidinekoo, Javier Escudero Morlanes, Marco Vicari, Joakim Lundeberg, Laura Setyo, Trevor M Godfrey, Livia S Eberlin, Aleksandr Zakirov, Jorrit J Hornberg, Marianna Stamou, Patrik L Ståhl, Anna Ollerstam, Jennifer Y Tan, Irina Mohorianu
Faculty, Staff and Students Publications
Recent developments in spatially resolved -omics have enabled the joint study of gene expression, metabolite levels and tissue morphology, offering greater insights into biological pathways. Integrating these modalities from matched tissue sections to probe spatially-coordinated processes, however, remains challenging. Here we introduce MAGPIE, a framework for co-registering spatially resolved transcriptomics, metabolomics, and tissue morphology from the same or consecutive sections. We show MAGPIE's generalisability and scalability on spatial multi-omics data from multiple tissues, combining Visium with MALDI and DESI mass spectrometry imaging. MAGPIE was also applied to new multi-modal datasets generated with a specialised sampling strategy to characterise the metabolic …
The Mouse Gene Expression Database (Gxd): 2026 Update., Constance M. Smith, Terry F. Hayamizu, Jacqueline H. Finger, Ingeborg J. Mccright, Jingxia Xu, Jeff Campbell, Lori E. Corbani, Jake Emerson, Pete J. Frost, Hongping Liang, Joel E Richardson, Richard M. Baldarelli, Martin Ringwald
The Mouse Gene Expression Database (Gxd): 2026 Update., Constance M. Smith, Terry F. Hayamizu, Jacqueline H. Finger, Ingeborg J. Mccright, Jingxia Xu, Jeff Campbell, Lori E. Corbani, Jake Emerson, Pete J. Frost, Hongping Liang, Joel E Richardson, Richard M. Baldarelli, Martin Ringwald
Faculty Research 2026
The Gene Expression Database (GXD; https://www.informatics.jax.org/expression.shtml) is an extensive, well-curated community resource that provides detailed information about gene expression patterns in mouse strains and mutants, with a particular emphasis on development. For over 25 years, GXD has systematically curated the scientific literature and collaborated with large-scale expression projects to compile and integrate detailed expression data from multiple assay types, including RNA in situ hybridization, immunohistochemistry, in situ reporter (knock-in), RT-PCR, northern blot, and western blot experiments. In recent years, GXD has expanded its scope to include bulk RNA-Seq data, imported from the EMBL-EBI Expression Atlas. Since our last report in …
Neuronal Subtype Governs Amyloid Structure, Cellular Response, And Cognitive Outcome In Genetically Targeted App Mouse Models, Gabriella A Perez, Zoe Lai, George A Edwards Iii, Jacob M Dundee, Shannon N Leahy, Chuangye Qi, Yanyan Qi, Ye-Jin Park, Tzu-Chiao Lu, M Danish Uddin, Rong Zhao, Hui Zheng, Hongjie Li, Joanna L Jankowsky
Neuronal Subtype Governs Amyloid Structure, Cellular Response, And Cognitive Outcome In Genetically Targeted App Mouse Models, Gabriella A Perez, Zoe Lai, George A Edwards Iii, Jacob M Dundee, Shannon N Leahy, Chuangye Qi, Yanyan Qi, Ye-Jin Park, Tzu-Chiao Lu, M Danish Uddin, Rong Zhao, Hui Zheng, Hongjie Li, Joanna L Jankowsky
2020-Current year OA Pubs
Pathological heterogeneity is increasingly appreciated in Alzheimer’s disease, yet we do not know how distinct aggregate conformations arise or influence cognitive outcomes. In an amyloid mouse model, we found that different brain regions formed structurally distinct Aβ deposits, prompting us to test whether neuronal subtypes shape aggregate conformation. To address this, we created transgenic mice expressing the same APP construct in either glutamatergic or GABAergic neurons. APP expression in GABAergic neurons resulted in diffuse plaques with high Aβ42/Aβ40 ratios and minimal gliosis, while glutamatergic expression produced neuritic plaques with activated glia. Despite similar Aβ levels, only mice with neuritic plaques …