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Articles 61 - 90 of 194
Full-Text Articles in Microbiology
Wasting Disease Of A Marine Foundation Species Links Community Interactions To Disease Dynamics, Lillian R. Aoki, Olivia J. Graham, Reyn M. Yoshioka, Rebecca Maher, Lindsay Alma, Eileen E. Hofmann, Colleen A. Burge, Drew Harvell, Maya L. Groner
Wasting Disease Of A Marine Foundation Species Links Community Interactions To Disease Dynamics, Lillian R. Aoki, Olivia J. Graham, Reyn M. Yoshioka, Rebecca Maher, Lindsay Alma, Eileen E. Hofmann, Colleen A. Burge, Drew Harvell, Maya L. Groner
CCPO Publications
Infectious disease plays a key role in shaping marine communities, including in seagrass meadows, which form biodiverse coastal habitats. Eelgrass (Zostera marina) is the most widespread seagrass species and is susceptible to seagrass wasting disease, caused by the protist Labyrinthula zosterae. As a foundation species, eelgrass strongly influences ecosystem structure, function and services; recent work has begun to explore the links between critical community interactions and seagrass wasting disease. Here, we highlight recent advances about how the eelgrass community regulates and responds to seagrass wasting disease, from the microbiome to herbivores and filter feeders. We further show …
Caveolin-Mediated Endocytosis: Bacterial Pathogen Exploitation And Host-Pathogen Interaction, Dibyasri Barman, Rishi Drolia
Caveolin-Mediated Endocytosis: Bacterial Pathogen Exploitation And Host-Pathogen Interaction, Dibyasri Barman, Rishi Drolia
Biological Sciences Faculty Publications
Within mammalian cells, diverse endocytic mechanisms, including phagocytosis, pinocytosis, and receptor-mediated endocytosis, serve as gateways exploited by many bacterial pathogens and toxins. Among these, caveolae-mediated endocytosis is characterized by lipid-rich caveolae and dimeric caveolin proteins. Caveolae are specialized microdomains on cell surfaces that impact cell signaling. Caveolin proteins facilitate the creation of caveolae and have three members in vertebrates: caveolin-1, caveolin-2, and caveolin-3. Many bacterial pathogens hijack caveolin machinery to invade host cells. For example, the Gram-positive facultative model intracellular bacterial pathogen Listeria monocytogenes exploits caveolin-mediated endocytosis for efficient cellular entry, translocation across the intestinal barrier, and cell–cell spread. Caveolin …
Promotion Of Hiv Clearance By Sensitization Of Hiv Reservoirs To Cell Death, Min Li, Baichao Sun, Jing Dong, Jian-Rong Li, Laurie J Minze, Min Chen, Chao Cheng, Jin Wang
Promotion Of Hiv Clearance By Sensitization Of Hiv Reservoirs To Cell Death, Min Li, Baichao Sun, Jing Dong, Jian-Rong Li, Laurie J Minze, Min Chen, Chao Cheng, Jin Wang
Faculty, Staff and Students Publications
Introduction: HIV integrates its proviral DNA into the host genome to establish persistent infection. To promote HIV clearance, we have designed an approach for selective elimination of host cells harboring replication-competent HIV (SECH), through inhibition of autophagy and anti-apoptotic molecules during viral reactivation. SECH approach can clear HIV-infected cells in approximately 50% humanized mice. However, the mechanisms for the resistance of reservoirs to depletion in mice with failure in HIV clearance are unclear.
Methods: We have performed single cell transcriptome analyses of HIV-infected T cells that escaped the treatments, in order to identify cellular pathways that could be targeted to …
Inhibition Of Ribosome Biogenesis In Vivo Causes P53-Dependent Death And P53-Independent Dysfunction, Charles J Cho, Thanh Nguyen, Amala K Rougeau, Yang-Zhe Huang, Sarah To, Xiaobo Lin, Supuni Thalalla Gamage, Jordan L Meier, Jason C Mills
Inhibition Of Ribosome Biogenesis In Vivo Causes P53-Dependent Death And P53-Independent Dysfunction, Charles J Cho, Thanh Nguyen, Amala K Rougeau, Yang-Zhe Huang, Sarah To, Xiaobo Lin, Supuni Thalalla Gamage, Jordan L Meier, Jason C Mills
Faculty, Staff and Students Publications
Background & aims: Although it is well-known that ribosomes are critical for cell function, and their synthesis (known as ribosome biogenesis [RiBi]) is energy-intensive, surprisingly little is known about RiBi in vivo in adult tissue.
Methods: Using a mouse model with conditional deletion of Nat10, an essential gene for RiBi and subsequent translation of mRNA, we investigated the effects of RiBi blockade in vivo, with a focus on pancreatic acinar cells during homeostasis and tumorigenesis.
Results: We observed an unexpected latency of several weeks between Nat10 deletion and onset of structural and functional abnormalities and p53-dependent acinar cell death. Although …
Large-Scale Crispr/Cas9 Deletions Within The Wfdc Gene Cluster Uncover Gene Functionality And Critical Roles In Mammalian Reproduction, Katarzyna Kent, Kaori Nozawa, Rachel Parkes, Laura Dean, Frey Daniel, Mei Leng, Antrix Jain, Anna Malovannaya, Martin M Matzuk, Thomas X Garcia
Large-Scale Crispr/Cas9 Deletions Within The Wfdc Gene Cluster Uncover Gene Functionality And Critical Roles In Mammalian Reproduction, Katarzyna Kent, Kaori Nozawa, Rachel Parkes, Laura Dean, Frey Daniel, Mei Leng, Antrix Jain, Anna Malovannaya, Martin M Matzuk, Thomas X Garcia
Faculty, Staff and Students Publications
Despite 96 million years of evolution separating humans and rodents, 11 closely related reproductive tract-specific genes in humans—SPINT3, WFDC6, EPPIN, WFDC8, WFDC9, WFDC10A, WFDC11, WFDC10B, WFDC13, SPINT4, and WFDC3—and the 13 reproductive tract-specific orthologous genes in mice, form highly conserved syntenic gene clusters indicative of conserved, combined critical functions. Further, despite significant progress toward a nonhormonal male contraceptive targeting the protein encoded by one of these genes, epididymal peptidase inhibitor (EPPIN), and associations found between mutations in EPPIN and an increased risk of male infertility, neither EPPIN nor …
The Rise, Fall, And Resurgence Of Phage Therapy For Urinary Tract Infection, Jacob J Zulk, Kathryn A Patras, Anthony W Maresso
The Rise, Fall, And Resurgence Of Phage Therapy For Urinary Tract Infection, Jacob J Zulk, Kathryn A Patras, Anthony W Maresso
Faculty, Staff and Students Publications
In the face of rising antimicrobial resistance, bacteriophage therapy, also known as phage therapy, is seeing a resurgence as a potential treatment for bacterial infections including urinary tract infection (UTI). Primarily caused by uropathogenic Escherichia coli, the 400 million UTI cases annually are major global healthcare burdens and a primary cause of antibiotic prescriptions in the outpatient setting. Phage therapy has several potential advantages over antibiotics including the ability to disrupt bacterial biofilms and synergize with antimicrobial treatments with minimal side effects or impacts on the microbiota. Phage therapy for UTI treatment has shown generally favorable results in recent …
Chemogenetic Neuronal Silencing Decouples C-Jun Activation From Cell Death In The Temporal Cortex, Caleb A Wood, Preethi Somasundaram, Jacob M Dundee, Melissa A Rudy, Trent A Watkins, Joanna L Jankowsky
Chemogenetic Neuronal Silencing Decouples C-Jun Activation From Cell Death In The Temporal Cortex, Caleb A Wood, Preethi Somasundaram, Jacob M Dundee, Melissa A Rudy, Trent A Watkins, Joanna L Jankowsky
Faculty, Staff and Students Publications
Initial symptoms of neurodegenerative diseases are often defined by the loss of the most vulnerable neural populations specific to each disorder. In the early stages of Alzheimer's disease, vulnerable circuits in the temporal lobe exhibit diminished activity prior to overt degeneration. It remains unclear whether these functional changes contribute to regional vulnerability or are simply a consequence of pathology. We previously found that entorhinal neurons in the temporal cortex undergo cell death following transient suppression of electrical activity, suggesting a causal role for activity disruption in neurodegeneration. Here we demonstrate that electrical arrest of this circuit stimulates the injury-response transcription …
Bst2 Facilitates Activation Of Hematopoietic Stem Cells Through Erk Signaling, Marcus A Florez, Apoorva Thatavarty, Duy T Le, Holly A Hill, Youngjae Jeong, Brian M Ho, Pawel Kus, Trisha K Wathan, Bailee N Kain, Shixia Huang, Dongsu Park, Katherine Y King
Bst2 Facilitates Activation Of Hematopoietic Stem Cells Through Erk Signaling, Marcus A Florez, Apoorva Thatavarty, Duy T Le, Holly A Hill, Youngjae Jeong, Brian M Ho, Pawel Kus, Trisha K Wathan, Bailee N Kain, Shixia Huang, Dongsu Park, Katherine Y King
Faculty, Staff and Students Publications
The proinflammatory cytokine interferon-gamma (IFNγ) is upregulated in a variety of infections and contributes to bone marrow failure through hematopoietic stem cell (HSC) activation and subsequent exhaustion. The cell surface protein, bone marrow stromal antigen 2 (BST2), is a key mediator of this process, as it is induced upon interferon stimulation and required for interferon-dependent HSC activation. To identify the mechanism by which BST2 promotes interferon-dependent HSC activation, we evaluated its role in niche localization, immune cell function, lipid raft formation, and intracellular signaling. Our studies indicated that knock out (KO) of BST2 in a murine model does not disrupt …
Bcl-Xl Is Translocated To The Nucleus Via Ctbp2 To Epigenetically Promote Metastasis, Tiantian Zhang, Sha Li, Yingcai Adrian Tan, Xiang Chen, Cheryl Zhang, Zhengming Chen, Bikash Mishra, Joseph Hyungjoon Na, Soyoung Choi, Sandra J Shin, Priyadarshan Damle, Kranthi Kumar Chougoni, Steven R Grossman, Dunrui Wang, Xuejun Jiang, Yi Li, Erika Hissong, Yao-Tseng Chen, Jenny Z Xiang, Yi-Chieh Nancy Du
Bcl-Xl Is Translocated To The Nucleus Via Ctbp2 To Epigenetically Promote Metastasis, Tiantian Zhang, Sha Li, Yingcai Adrian Tan, Xiang Chen, Cheryl Zhang, Zhengming Chen, Bikash Mishra, Joseph Hyungjoon Na, Soyoung Choi, Sandra J Shin, Priyadarshan Damle, Kranthi Kumar Chougoni, Steven R Grossman, Dunrui Wang, Xuejun Jiang, Yi Li, Erika Hissong, Yao-Tseng Chen, Jenny Z Xiang, Yi-Chieh Nancy Du
Faculty, Staff and Students Publications
Nuclear Bcl-xL is found to promote cancer metastasis independently of its mitochondria-based anti-apoptotic activity. How Bcl-xL is translocated into the nucleus and how nuclear Bcl-xL regulates histone H3 trimethyl Lys4 (H3K4me3) modification have yet to be understood. Here, we report that C-terminal Binding Protein 2 (CtBP2) binds to Bcl-xL via its N-terminus and translocates Bcl-xL into the nucleus. Knockdown of CtBP2 by shRNA decreases the nuclear portion of Bcl-xL and reverses Bcl-xL-induced invasion and metastasis in mouse models. Furthermore, knockout of CtBP2 not only reduces the nuclear portion of Bcl-xL but also suppresses Bcl-xL transcription. The binding between Bcl-xL and …
Transcriptomic And Epigenomic Signatures Distinguish High- And Low-Risk Endotypes For Liver Tumor Development, Sandra L Grimm, Tia Talley, Rahul K Jangid, Amrit Koirala, Micah B Castillo, Preethi H Gunaratne, Cristian Coarfa, Cheryl L Walker
Transcriptomic And Epigenomic Signatures Distinguish High- And Low-Risk Endotypes For Liver Tumor Development, Sandra L Grimm, Tia Talley, Rahul K Jangid, Amrit Koirala, Micah B Castillo, Preethi H Gunaratne, Cristian Coarfa, Cheryl L Walker
Faculty, Staff and Students Publications
The epigenome is a target for environmental exposures and a potential determinant of inter-individual differences in response. In genetically identical C57Bl/6 mice exposed from gestation to weaning to the endocrine-disrupting chemical (EDC) tributyltin (TBT), hepatic tumor development later in life varied across multiple cohorts over time and depending on sex and diet. In one cohort where approximately half of TBT-exposed male mice developed liver tumors at 10 months (Katz et al. Hepatic tumor formation in adult mice developmentally exposed to organotin, Environmental Health Perspectives, 128 (1), 17010, 2020), transcriptomic (RNA-seq) and epigenomic (ChIP-seq) profiling was performed on blood and liver …
Solid Tumour-Induced Systemic Immunosuppression Involves Dichotomous Myeloid-B Cell Interactions, Xiaoxin Hao, Yichao Shen, Jun Liu, Angela Alexander, Ling Wu, Zhan Xu, Liqun Yu, Yang Gao, Fengshuo Liu, Hilda L Chan, Che-Hsing Li, Yunfeng Ding, Weijie Zhang, David G Edwards, Nan Chen, Azadeh Nasrazadani, Naoto T Ueno, Bora Lim, Xiang H-F Zhang
Solid Tumour-Induced Systemic Immunosuppression Involves Dichotomous Myeloid-B Cell Interactions, Xiaoxin Hao, Yichao Shen, Jun Liu, Angela Alexander, Ling Wu, Zhan Xu, Liqun Yu, Yang Gao, Fengshuo Liu, Hilda L Chan, Che-Hsing Li, Yunfeng Ding, Weijie Zhang, David G Edwards, Nan Chen, Azadeh Nasrazadani, Naoto T Ueno, Bora Lim, Xiang H-F Zhang
Faculty, Staff and Students Publications
Solid tumours induce systemic immunosuppression that involves myeloid and T cells. B cell-related mechanisms remain relatively understudied. Here we discover two distinct patterns of tumour-induced B cell abnormality (TiBA; TiBA-1 and TiBA-2), both associated with abnormal myelopoiesis in the bone marrow. TiBA-1 probably results from the niche competition between pre-progenitor-B cells and myeloid progenitors, leading to a global reduction in downstream B cells. TiBA-2 is characterized by systemic accumulation of a unique early B cell population, driven by interaction with excessive neutrophils. Importantly, TiBA-2-associated early B cells foster the systemic accumulation of exhaustion-like T cells. Myeloid and B cells from …
Sall4 And Gata4 Induce Cardiac Fibroblast Transition Towards A Partially Multipotent State With Cardiogenic Potential, Hong Gao, Saliha Pathan, Beverly R E A Dixon, Aarthi Pugazenthi, Megumi Mathison, Tamer M A Mohamed, Todd K Rosengart, Jianchang Yang
Sall4 And Gata4 Induce Cardiac Fibroblast Transition Towards A Partially Multipotent State With Cardiogenic Potential, Hong Gao, Saliha Pathan, Beverly R E A Dixon, Aarthi Pugazenthi, Megumi Mathison, Tamer M A Mohamed, Todd K Rosengart, Jianchang Yang
Faculty, Staff and Students Publications
Cardiac cellular fate transition holds remarkable promise for the treatment of ischemic heart disease. We report that overexpressing two transcription factors, Sall4 and Gata4, which play distinct and overlapping roles in both pluripotent stem cell reprogramming and embryonic heart development, induces a fraction of stem-like cells in rodent cardiac fibroblasts that exhibit unlimited ex vivo expandability with clonogenicity. Transcriptomic and phenotypic analyses reveal that around 32 ± 6.4% of the expanding cells express Nkx2.5, while 13 ± 3.6% express Oct4. Activated signaling pathways like PI3K/Akt, Hippo, Wnt, and multiple epigenetic modification enzymes are also detected. Under suitable conditions, these cells …
Linkage Between Fuz And Gpr161 Genes Regulates Sonic Hedgehog Signaling During Mouse Neural Tube Development, Sung-Eun Kim, Hyun-Yi Kim, Bogdan J Wlodarczyk, Richard H Finnell
Linkage Between Fuz And Gpr161 Genes Regulates Sonic Hedgehog Signaling During Mouse Neural Tube Development, Sung-Eun Kim, Hyun-Yi Kim, Bogdan J Wlodarczyk, Richard H Finnell
Faculty, Staff and Students Publications
Sonic hedgehog (Shh) signaling regulates embryonic morphogenesis utilizing the primary cilium, the cell's antenna, which acts as a signaling hub. Fuz, an effector of planar cell polarity signaling, regulates Shh signaling by facilitating cilia formation, and the G protein-coupled receptor 161 (Gpr161) is a negative regulator of Shh signaling. The range of phenotypic malformations observed in mice bearing mutations in either of the genes encoding these proteins is similar; however, their functional relationship has not been previously explored. This study identified the genetic and biochemical linkage between Fuz and Gpr161 in mouse neural tube development. Fuz was found to be …
Perineuronal Nets’ Role In Metabolism, Nan Zhang, Beite Song, Peng Bai, Li Du, Lulu Chen, Yong Xu, Tianshu Zeng
Perineuronal Nets’ Role In Metabolism, Nan Zhang, Beite Song, Peng Bai, Li Du, Lulu Chen, Yong Xu, Tianshu Zeng
Faculty, Staff and Students Publications
Perineuronal nets (PNNs), specialized extracellular matrix (ECM) structures that envelop neurons, have recently been recognized as key players in the regulation of metabolism. This review explores the growing body of knowledge concerning PNNs and their role in metabolic control, drawing insights from recent research and relevant studies. The pivotal role of PNNs in the context of energy balance and whole body blood glucose is examined. This review also highlights novel findings, including the effects of astroglia, microglia, sex and gonadal hormones, nutritional regulation, circadian rhythms, and age on PNNs dynamics. These findings illuminate the complex and multifaceted role of PNNs …
Sequencing-Based Detection Of Avian Influenza A(H5n1) Virus In Wastewater In Ten Cities, Michael J Tisza, Blake M Hanson, Justin R Clark, Li Wang, Katelyn Payne, Matthew C Ross, Kristina D Mena, Anna Gitter, Sara J Javornik Cregeen, Juwan Cormier, Vasanthi Avadhanula, Austen Terwilliger, John Balliew, Fuqing Wu, Janelle Rios, Jennifer Deegan, Pedro A Piedra, Joseph F Petrosino, Eric Boerwinkle, Anthony W Maresso
Sequencing-Based Detection Of Avian Influenza A(H5n1) Virus In Wastewater In Ten Cities, Michael J Tisza, Blake M Hanson, Justin R Clark, Li Wang, Katelyn Payne, Matthew C Ross, Kristina D Mena, Anna Gitter, Sara J Javornik Cregeen, Juwan Cormier, Vasanthi Avadhanula, Austen Terwilliger, John Balliew, Fuqing Wu, Janelle Rios, Jennifer Deegan, Pedro A Piedra, Joseph F Petrosino, Eric Boerwinkle, Anthony W Maresso
Faculty, Staff and Students Publications
No abstract provided.
Enterococcus Faecalis-Derived Adenine Enhances Enterohaemorrhagic Escherichia Coli Type 3 Secretion System-Dependent Virulence, Fernando H Martins, Thibaut Rosay, Anubama Rajan, Hannah E Carter, Tayah Turocy, Andres Mejia, Jason M Crawford, Anthony W Maresso, Vanessa Sperandio
Enterococcus Faecalis-Derived Adenine Enhances Enterohaemorrhagic Escherichia Coli Type 3 Secretion System-Dependent Virulence, Fernando H Martins, Thibaut Rosay, Anubama Rajan, Hannah E Carter, Tayah Turocy, Andres Mejia, Jason M Crawford, Anthony W Maresso, Vanessa Sperandio
Faculty, Staff and Students Publications
Interactions between microbiota and enteric pathogens can promote colonization resistance or enhance pathogenesis. The pathobiont Enterococcus faecalis increases enterohaemorrhagic E. coli (EHEC) virulence by upregulating Type 3 Secretion System (T3SS) expression, effector translocation, and attaching and effacing (AE) lesion formation on enterocytes, but the mechanisms underlying this remain unknown. Using co-infection of organoids, metabolomics, supplementation experiments and bacterial genetics, here we show that co-culture of EHEC with E. faecalis increases the xanthine-hypoxanthine pathway activity and adenine biosynthesis. Adenine or E. faecalis promoted T3SS gene expression, while transcriptomics showed upregulation of adeP expression, which encodes an adenine importer. Mechanistically, adenine relieved …
Disruption Of Fuz In Mouse Embryos Generates Hypoplastic Hindbrain Development And Reduced Cranial Nerve Ganglia, Carlo Donato Caiaffa, Yogeshwari S Ambekar, Manmohan Singh, Ying Linda Lin, Bogdan Wlodarczyk, Salavat R Aglyamov, Giuliano Scarcelli, Kirill V Larin, Richard H Finnell
Disruption Of Fuz In Mouse Embryos Generates Hypoplastic Hindbrain Development And Reduced Cranial Nerve Ganglia, Carlo Donato Caiaffa, Yogeshwari S Ambekar, Manmohan Singh, Ying Linda Lin, Bogdan Wlodarczyk, Salavat R Aglyamov, Giuliano Scarcelli, Kirill V Larin, Richard H Finnell
Faculty, Staff and Students Publications
Background: The brain and spinal cord formation is initiated in the earliest stages of mammalian pregnancy in a highly organized process known as neurulation. Environmental or genetic interferences can impair neurulation, resulting in clinically significant birth defects known collectively as neural tube defects. The Fuz gene encodes a subunit of the CPLANE complex, a macromolecular planar polarity effector required for ciliogenesis. Ablation of Fuz in mouse embryos results in exencephaly and spina bifida, including dysmorphic craniofacial structures due to defective cilia formation and impaired Sonic Hedgehog signaling.
Results: We demonstrate that knocking Fuz out during embryonic mouse development results in …
Identification And Characterization Of A Skin Microbiome On Caenorhabditis Elegans Suggests Environmental Microbes Confer Cuticle Protection, Nadia B Haghani, Robert H Lampe, Buck S Samuel, Sreekanth H Chalasani, Molly A Matty
Identification And Characterization Of A Skin Microbiome On Caenorhabditis Elegans Suggests Environmental Microbes Confer Cuticle Protection, Nadia B Haghani, Robert H Lampe, Buck S Samuel, Sreekanth H Chalasani, Molly A Matty
Faculty, Staff and Students Publications
In the wild, C. elegans are emersed in environments teeming with a veritable menagerie of microorganisms. The C. elegans cuticular surface serves as a barrier and first point of contact with their microbial environments. In this study, we identify microbes from C. elegans natural habitats that associate with its cuticle, constituting a simple “skin microbiome.” We rear our animals on a modified CeMbio, mCeMbio, a consortium of ecologically relevant microbes. We first combine standard microbiological methods with an adapted micro skin-swabbing tool to describe the skin-resident bacteria on the C. elegans surface. Furthermore, we conduct 16S rRNA gene sequencing studies …
Mechanisms Of Neurodevelopmental Toxicity Of Topiramate, John W Steele, Vaishnav Krishnan, Richard H Finnell
Mechanisms Of Neurodevelopmental Toxicity Of Topiramate, John W Steele, Vaishnav Krishnan, Richard H Finnell
Faculty, Staff and Students Publications
Prescriptions for antiseizure medications (ASMs) have been rapidly growing over the last several decades due, in part, to an expanding list of clinical indications for which they are now prescribed. This trend has raised concern for potential adverse neurodevelopmental outcomes in ASM-exposed pregnancies. Recent large scale population studies have suggested that the use of topiramate (TOPAMAX, Janssen-Cilag), when prescribed for seizure control, migraines, and/or weight management, is associated with an increased risk for autism spectrum disorder (ASD), intellectual disability, and attention-deficit/hyperactivity disorder (ADHD) in exposed offspring. Here, we critically review epidemiologic evidence demonstrating the neurobehavioral teratogenicity of topiramate and speculate …
The Interaction Of Endorepellin And Neurexin Triggers Neuroepithelial Autophagy And Maintains Neural Tube Development, Lei Lu, Meizhu Bai, Yufang Zheng, Xiukun Wang, Zhongzhong Chen, Rui Peng, Richard H Finnell, Tongjin Zhao, Chengtao Li, Bo Wu, Yunping Lei, Jinsong Li, Hongyan Wang
The Interaction Of Endorepellin And Neurexin Triggers Neuroepithelial Autophagy And Maintains Neural Tube Development, Lei Lu, Meizhu Bai, Yufang Zheng, Xiukun Wang, Zhongzhong Chen, Rui Peng, Richard H Finnell, Tongjin Zhao, Chengtao Li, Bo Wu, Yunping Lei, Jinsong Li, Hongyan Wang
Faculty, Staff and Students Publications
Heparan sulfate proteoglycan 2 (HSPG2) gene encodes the matrix protein Perlecan, and genetic inactivation of this gene creates mice that are embryonic lethal with severe neural tube defects (NTDs). We discovered rare genetic variants of HSPG2 in 10% cases compared to only 4% in controls among a cohort of 369 NTDs. Endorepellin, a peptide cleaved from the domain V of Perlecan, is known to promote angiogenesis and autophagy in endothelial cells. The roles of enderepellin in neurodevelopment remain unclear so far. Our study revealed that endorepellin can migrate to the neuroepithelial cells and then be recognized and bind with the …
Metabolic Regulator Errγ Governs Gastric Stem Cell Differentiation Into Acid-Secreting Parietal Cells, Mahliyah Adkins-Threats, Sumimasa Arimura, Yang-Zhe Huang, Margarita Divenko, Sarah To, Heather Mao, Yongji Zeng, Jenie Y Hwang, Joseph R Burclaff, Shilpa Jain, Jason C Mills
Metabolic Regulator Errγ Governs Gastric Stem Cell Differentiation Into Acid-Secreting Parietal Cells, Mahliyah Adkins-Threats, Sumimasa Arimura, Yang-Zhe Huang, Margarita Divenko, Sarah To, Heather Mao, Yongji Zeng, Jenie Y Hwang, Joseph R Burclaff, Shilpa Jain, Jason C Mills
Faculty, Staff and Students Publications
Parietal cells (PCs) produce gastric acid to kill pathogens and aid digestion. Dysregulated PC census is common in disease, yet how PCs differentiate is unclear. Here, we identify the PC progenitors arising from isthmal stem cells, using mouse models and human gastric cells, and show they preferentially express cell-metabolism regulator and orphan nuclear receptor Estrogen-related receptor gamma (Esrrg, encoding ERRγ). Esrrg expression facilitated the tracking of stepwise molecular, cellular, and ultrastructural stages of PC differentiation. EsrrgP2ACreERT2 lineage tracing revealed Esrrg expression commits progenitors to differentiate into mature PCs. scRNA-seq indicated the earliest Esrrg+ PC progenitors preferentially …
Serum Extracellular Vesicle Protein Profiling For Prediction Of Corneal Transplant Rejection, Hyun Ju Lee, Eun-Hye Bae, Jong Min Choi, Hyemee Kim, Hyeon Ji Kim, Heather Barreda, Sung Yun Jung, Joo Youn Oh, Ryang Hwa Lee
Serum Extracellular Vesicle Protein Profiling For Prediction Of Corneal Transplant Rejection, Hyun Ju Lee, Eun-Hye Bae, Jong Min Choi, Hyemee Kim, Hyeon Ji Kim, Heather Barreda, Sung Yun Jung, Joo Youn Oh, Ryang Hwa Lee
Faculty, Staff and Students Publications
Background: Corneal transplantation is the most common transplant procedure worldwide. Despite immune and angiogenic privilege of the cornea, 50% to 70% of corneal transplants fail in high-risk recipients, primarily because of immune rejection. Therefore, it is crucial to identify predictive biomarkers of rejection to improve transplant survival.
Methods: In search for predictive biomarkers, we performed proteomics analysis of serum extracellular vesicles (EVs) in a fully major histocompatibility complex-mismatched (C57BL/6-to-BALB/c) murine corneal transplantation model, wherein 50% of transplants undergo rejection by day 28 following transplantation.
Results: Our time course study revealed a decrease in the number of serum EVs on day …
Multifactoral Immune Modulation Potentiates Durable Remission In Multiple Models Of Aggressive Malignancy, Matthew M Halpert, Briana A Burns, Spencer R Rosario, Henry G Withers, Akshar J Trivedi, Colby J Hofferek, Benjamin D Gephart, Haotong Wang, Jonathan Vazquez-Perez, Sharon B Amanya, Sean T Hyslop, Jianhua Yang, Jan O Kemnade, Vlad C Sandulache, Vanaja Konduri, William K Decker
Multifactoral Immune Modulation Potentiates Durable Remission In Multiple Models Of Aggressive Malignancy, Matthew M Halpert, Briana A Burns, Spencer R Rosario, Henry G Withers, Akshar J Trivedi, Colby J Hofferek, Benjamin D Gephart, Haotong Wang, Jonathan Vazquez-Perez, Sharon B Amanya, Sean T Hyslop, Jianhua Yang, Jan O Kemnade, Vlad C Sandulache, Vanaja Konduri, William K Decker
Faculty, Staff and Students Publications
Tumors typically lack canonical danger signals required to activate adaptive immunity and also frequently employ substantial immunomodulatory mechanisms that downregulate adaptive responses and contribute to escape from immune surveillance. Given the variety of mechanisms involved in shielding tumors from immune recognition, it is not surprising that single-agent immunomodulatory approaches have been largely unsuccessful in generating durable antitumor responses. Here we report a unique combination of immunomodulatory and cytostatic agents that recondition the tumor microenvironment and eliminate complex and/or poor-prognosis tumor types including the non-immunogenic 4T-1 model of TNBC, the aggressive MOC-2 model of HNSCC, and the high-risk MYCN-amplified model of …
Generation Of Oviductal Glycoprotein 1 Cre Mouse Model For The Study Of Secretory Epithelial Cells Of The Oviduct, Emily A Mcglade, Jiude Mao, Kalli K Stephens, Andrew M Kelleher, Lisette A Maddison, Miranda L Bernhardt, Francesco J Demayo, John P Lydon, Wipawee Winuthayanon
Generation Of Oviductal Glycoprotein 1 Cre Mouse Model For The Study Of Secretory Epithelial Cells Of The Oviduct, Emily A Mcglade, Jiude Mao, Kalli K Stephens, Andrew M Kelleher, Lisette A Maddison, Miranda L Bernhardt, Francesco J Demayo, John P Lydon, Wipawee Winuthayanon
Faculty, Staff and Students Publications
The epithelial cell lining of the oviduct plays an important role in oocyte pickup, sperm migration, preimplantation embryo development, and embryo transport. The oviduct epithelial cell layer comprises ciliated and nonciliated secretory cells. The ciliary function has been shown to support gamete and embryo movement in the oviduct, yet secretory cell function has not been well characterized. Therefore, our goal was to generate a secretory cell-specific Cre recombinase mouse model to study the role of the oviductal secretory cells. A knock-in mouse model, Ovgp1Cre:eGFP, was created by expressing Cre from the endogenous Ovgp1 (oviductal glycoprotein 1) locus, with enhanced green …
Optical Coherence Tomography-Guided Brillouin Microscopy Highlights Regional Tissue Stiffness Differences During Anterior Neural Tube Closure In The Mthfd1l Murine Mutant, Yogeshwari S Ambekar, Carlo Donato Caiaffa, Bogdan J Wlodarczyk, Manmohan Singh, Alexander W Schill, John W Steele, Jitao Zhang, Salavat R Aglyamov, Giuliano Scarcelli, Richard H Finnell, Kirill V Larin
Optical Coherence Tomography-Guided Brillouin Microscopy Highlights Regional Tissue Stiffness Differences During Anterior Neural Tube Closure In The Mthfd1l Murine Mutant, Yogeshwari S Ambekar, Carlo Donato Caiaffa, Bogdan J Wlodarczyk, Manmohan Singh, Alexander W Schill, John W Steele, Jitao Zhang, Salavat R Aglyamov, Giuliano Scarcelli, Richard H Finnell, Kirill V Larin
Faculty, Staff and Students Publications
Neurulation is a highly synchronized biomechanical process leading to the formation of the brain and spinal cord, and its failure leads to neural tube defects (NTDs). Although we are rapidly learning the genetic mechanisms underlying NTDs, the biomechanical aspects are largely unknown. To understand the correlation between NTDs and tissue stiffness during neural tube closure (NTC), we imaged an NTD murine model using optical coherence tomography (OCT), Brillouin microscopy and confocal fluorescence microscopy. Here, we associate structural information from OCT with local stiffness from the Brillouin signal of embryos undergoing neurulation. The stiffness of neuroepithelial tissues in Mthfd1l null embryos …
Progress Toward A Vaccine For Extraintestinal Pathogenic Coli (Expec) Ii: Efficacy Of A Toxin-Autotransporter Dual Antigen Approach, Yikun Xing, Justin R Clark, James D Chang, Jacob J Zulk, Dylan M Chirman, Felipe-Andres Piedra, Ellen E Vaughan, Haroldo J Hernandez Santos, Kathryn A Patras, Anthony W Maresso
Progress Toward A Vaccine For Extraintestinal Pathogenic Coli (Expec) Ii: Efficacy Of A Toxin-Autotransporter Dual Antigen Approach, Yikun Xing, Justin R Clark, James D Chang, Jacob J Zulk, Dylan M Chirman, Felipe-Andres Piedra, Ellen E Vaughan, Haroldo J Hernandez Santos, Kathryn A Patras, Anthony W Maresso
Faculty, Staff and Students Publications
Extraintestinal pathogenic Escherichia coli (ExPEC) is a leading cause of worldwide morbidity and mortality, the top cause of antimicrobial-resistant (AMR) infections, and the most frequent cause of life-threatening sepsis and urinary tract infections (UTI) in adults. The development of an effective and universal vaccine is complicated by this pathogen’s pan-genome, its ability to mix and match virulence factors and AMR genes via horizontal gene transfer, an inability to decipher commensal from pathogens, and its intimate association and co-evolution with mammals. Using a pan virulome analysis of >20,000 sequenced E. coli strains, we identified the secreted cytolysin α-hemolysin (HlyA) as a …
Metaplastic Regeneration In The Mouse Stomach Requires A Reactive Oxygen Species Pathway, Zhi-Feng Miao, Jing-Xu Sun, Xuan-Zhang Huang, Shi Bai, Min-Jiao Pang, Jia-Yi Li, Han-Yu Chen, Qi-Yue Tong, Shi-Yu Ye, Xin-Yu Wang, Xiao-Hai Hu, Jing-Ying Li, Jin-Wei Zou, Wen Xu, Jun-Hao Yang, Xi Lu, Jason C Mills, Zhen-Ning Wang
Metaplastic Regeneration In The Mouse Stomach Requires A Reactive Oxygen Species Pathway, Zhi-Feng Miao, Jing-Xu Sun, Xuan-Zhang Huang, Shi Bai, Min-Jiao Pang, Jia-Yi Li, Han-Yu Chen, Qi-Yue Tong, Shi-Yu Ye, Xin-Yu Wang, Xiao-Hai Hu, Jing-Ying Li, Jin-Wei Zou, Wen Xu, Jun-Hao Yang, Xi Lu, Jason C Mills, Zhen-Ning Wang
Faculty, Staff and Students Publications
In pyloric metaplasia, mature gastric chief cells reprogram via an evolutionarily conserved process termed paligenosis to re-enter the cell cycle and become spasmolytic polypeptide-expressing metaplasia (SPEM) cells. Here, we use single-cell RNA sequencing (scRNA-seq) following injury to the murine stomach to analyze mechanisms governing paligenosis at high resolution. Injury causes induced reactive oxygen species (ROS) with coordinated changes in mitochondrial activity and cellular metabolism, requiring the transcriptional mitochondrial regulator Ppargc1a (Pgc1α) and ROS regulator Nf2el2 (Nrf2). Loss of the ROS and mitochondrial control in Ppargc1a-/- mice causes the death of paligenotic cells through ferroptosis. Blocking the cystine transporter SLC7A11(xCT), which …
Caenorhabditis Elegans Endorse Bacterial Nanocellulose Fibers As Functional Dietary Fiber Reducing Lipid Markers, Amanda Muñoz-Juan, Adrien Assié, Anna Esteve-Codina, Marta Gut, Núria Benseny-Cases, Buck S Samuel, Esther Dalfó, Anna Laromaine
Caenorhabditis Elegans Endorse Bacterial Nanocellulose Fibers As Functional Dietary Fiber Reducing Lipid Markers, Amanda Muñoz-Juan, Adrien Assié, Anna Esteve-Codina, Marta Gut, Núria Benseny-Cases, Buck S Samuel, Esther Dalfó, Anna Laromaine
Faculty, Staff and Students Publications
Bacterial nanocellulose (BNC) is a promising dietary fiber with potential as a functional food additive. We evaluated BNC fibers (BNCf) in the Caenorhabditis elegans model to obtain insight into the BNCf's biointeraction with its gastrointestinal tract while reducing the variables of higher complex animals. BNCf were uptaken and excreted by worms without crossing the intestinal barrier, confirming its biosafety regarding survival rate, reproduction, and aging for concentrations up to 34 μg/ml BNCf. However, a slight decrease in the worms' length was detected. A possible nutrient shortage or stress produced by BNCf was discarded by measuring stress and chemotactic response pathways. …
Engineering Small-Molecule And Protein Drugs For Targeting Bone Tumors, Yixian Wang, Chenhang Wang, Meng Xia, Zeru Tian, Joseph Zhou, Julian Meyer Berger, Xiang H-F Zhang, Han Xiao
Engineering Small-Molecule And Protein Drugs For Targeting Bone Tumors, Yixian Wang, Chenhang Wang, Meng Xia, Zeru Tian, Joseph Zhou, Julian Meyer Berger, Xiang H-F Zhang, Han Xiao
Faculty, Staff and Students Publications
Bone cancer is common and severe. Both primary (e.g., osteosarcoma, Ewing sarcoma) and secondary (e.g., metastatic) bone cancers lead to significant health problems and death. Currently, treatments such as chemotherapy, hormone therapy, and radiation therapy are used to treat bone cancer, but they often only shrink or slow tumor growth and do not eliminate cancer completely. The bone microenvironment contributes unique signals that influence cancer growth, immunogenicity, and metastasis. Traditional cancer therapies have limited effectiveness due to off-target effects and poor distribution on bones. As a result, therapies with improved specificity and efficacy for treating bone tumors are highly needed. …
Mechanisms Driving Fasting-Induced Protection From Genotoxic Injury In The Small Intestine, Kali Deans-Fielder, Timothy Wu, Thanh Nguyen, Sarah To, Yang-Zhe Huang, Steven J Bark, Jason C Mills, Noah F Shroyer
Mechanisms Driving Fasting-Induced Protection From Genotoxic Injury In The Small Intestine, Kali Deans-Fielder, Timothy Wu, Thanh Nguyen, Sarah To, Yang-Zhe Huang, Steven J Bark, Jason C Mills, Noah F Shroyer
Faculty, Staff and Students Publications
Genotoxic agents such as doxorubicin (DXR) can cause damage to the intestines that can be ameliorated by fasting. How fasting is protective and the optimal timing of fasting and refeeding remain unclear. Here, our analysis of fasting/refeeding-induced global intestinal transcriptional changes revealed metabolic shifts and implicated the cellular energetic hub mechanistic target of rapamycin complex 1 (mTORC1) in protecting from DXR-induced DNA damage. Our analysis of specific transcripts and proteins in intestinal tissue and tissue extracts showed that fasting followed by refeeding at the time of DXR administration reduced damage and caused a spike in mTORC1 activity. However, continued fasting …