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A T-Cell Engaging Bispecific Antibody With A Tumor-Selective Bivalent Folate Receptor Alpha Binding Arm For The Treatment Of Ovarian Cancer, Brian C Avanzino, Kirthana Prabhakar, Pranjali Dalvi, Sharon Hartstein, Hannes Kehm, Aarti Balasubramani, Andrew A Boudreau, Ben Buelow, Karen Chang, Laura M Davison, Suhasini Iyer, Vidyut Kalwit, Kristin Lewis Wilson, Harbani K Malik-Chaudhry, Will Pierson, Geovanni Pineda, Udaya S Rangaswamy, Sowmya Saiganesh, Ute Schellenberger, Harshad S Ugamraj, Rodolfovan D Yabut, Roland Buelow, Jocelyn Chapman, Nathan D Trinklein, Katherine E Harris Jan 2022

A T-Cell Engaging Bispecific Antibody With A Tumor-Selective Bivalent Folate Receptor Alpha Binding Arm For The Treatment Of Ovarian Cancer, Brian C Avanzino, Kirthana Prabhakar, Pranjali Dalvi, Sharon Hartstein, Hannes Kehm, Aarti Balasubramani, Andrew A Boudreau, Ben Buelow, Karen Chang, Laura M Davison, Suhasini Iyer, Vidyut Kalwit, Kristin Lewis Wilson, Harbani K Malik-Chaudhry, Will Pierson, Geovanni Pineda, Udaya S Rangaswamy, Sowmya Saiganesh, Ute Schellenberger, Harshad S Ugamraj, Rodolfovan D Yabut, Roland Buelow, Jocelyn Chapman, Nathan D Trinklein, Katherine E Harris

Faculty, Staff and Student Publications

The use of T-cell engagers (TCEs) to treat solid tumors is challenging, and several have been limited by narrow therapeutic windows due to substantial on-target, off-tumor toxicities due to the expression of low levels of target antigens on healthy tissues. Here, we describe TNB-928B, a fully human TCE that has a bivalent binding arm for folate receptor alpha (FRα) to selectively target FRα overexpressing tumor cells while avoiding the lysis of cells with low levels of FRα expression. The bivalent design of the FRα binding arm confers tumor selectivity due to low-affinity but high-avidity binding to high FRα antigen density …


Alternative Adenosine Receptor Activation: The Netrin-Adora2b Link, Xiaoyi Yuan, Tingting Mills, Marie-Francoise Doursout, Scott E Evans, Marcos F Vidal Melo, Holger K Eltzschig Jan 2022

Alternative Adenosine Receptor Activation: The Netrin-Adora2b Link, Xiaoyi Yuan, Tingting Mills, Marie-Francoise Doursout, Scott E Evans, Marcos F Vidal Melo, Holger K Eltzschig

Faculty, Staff and Student Publications

During hypoxia or inflammation, extracellular adenosine levels are elevated. Studies using pharmacologic approaches or genetic animal models pertinent to extracellular adenosine signaling implicate this pathway in attenuating hypoxia-associated inflammation. There are four distinct adenosine receptors. Of these, it is not surprising that the Adora2b adenosine receptor functions as an endogenous feedback loop to control hypoxia-associated inflammation. First, Adora2b activation requires higher adenosine concentrations compared to other adenosine receptors, similar to those achieved during hypoxic inflammation. Second, Adora2b is transcriptionally induced during hypoxia or inflammation by hypoxia-inducible transcription factor HIF1A. Studies seeking an alternative adenosine receptor activation mechanism have linked netrin-1 …


Pld1 Promotes Reactive Oxygen Species Production In Vascular Smooth Muscle Cells And Injury-Induced Neointima Formation, Ming Cai, Ziqing Wang, Thi Thu Trang Luu, Dakai Zhang, Brian Finke, Jingquan He, Li Wei Rachel Tay, Gilbert Di Paolo, Guangwei Du Jan 2022

Pld1 Promotes Reactive Oxygen Species Production In Vascular Smooth Muscle Cells And Injury-Induced Neointima Formation, Ming Cai, Ziqing Wang, Thi Thu Trang Luu, Dakai Zhang, Brian Finke, Jingquan He, Li Wei Rachel Tay, Gilbert Di Paolo, Guangwei Du

Faculty, Staff and Student Publications

Phospholipase D (PLD) generates the signaling lipid phosphatidic acid (PA) and has been known to mediate proliferation signal in vascular smooth muscle cells (VSMCs). However, it remains unclear how PLD contributes to vascular diseases. VSMC proliferation directly contributes to the development and progression of cardiovascular disease, such as atherosclerosis and restenosis after angioplasty. Using the mouse carotid artery ligation model, we find that deletion of Pld1 gene inhibits neointima formation of the injuried blood vessels. PLD1 deficiency reduces the proliferation of VSMCs in both injured artery and primary cultures through the inhibition of ERK1/2 and AKT signals. Immunohistochemical staining of …


Targeting Mcl-1 Dysregulates Cell Metabolism And Leukemia-Stroma Interactions And Resensitizes Acute Myeloid Leukemia To Bcl-2 Inhibition, Bing Z Carter, Po Yee Mak, Wenjing Tao, Marc Warmoes, Philip L Lorenzi, Duncan Mak, Vivian Ruvolo, Lin Tan, Justin Cidado, Lisa Drew, Michael Andreeff Jan 2022

Targeting Mcl-1 Dysregulates Cell Metabolism And Leukemia-Stroma Interactions And Resensitizes Acute Myeloid Leukemia To Bcl-2 Inhibition, Bing Z Carter, Po Yee Mak, Wenjing Tao, Marc Warmoes, Philip L Lorenzi, Duncan Mak, Vivian Ruvolo, Lin Tan, Justin Cidado, Lisa Drew, Michael Andreeff

Faculty, Staff and Student Publications

MCL-1 and BCL-2 are both frequently overexpressed in acute myeloid leukemia and critical for the survival of acute myeloid leukemia cells and acute myeloid leukemia stem cells. MCL-1 is a key factor in venetoclax resistance. Using genetic and pharmacological approaches, we discovered that MCL-1 regulates leukemia cell bioenergetics and carbohydrate metabolisms, including the TCA cycle, glycolysis and pentose phosphate pathway and modulates cell adhesion proteins and leukemia-stromal interactions. Inhibition of MCL-1 sensitizes to BCL-2 inhibition in acute myeloid leukemia cells and acute myeloid leukemia stem/progenitor cells, including those with intrinsic and acquired resistance to venetoclax through cooperative release of pro-apoptotic …


Circadian Stabilization Loop: The Regulatory Hub And Therapeutic Target Promoting Circadian Resilience And Physiological Health, Eunju Kim, Seung-Hee Yoo, Zheng Chen Jan 2022

Circadian Stabilization Loop: The Regulatory Hub And Therapeutic Target Promoting Circadian Resilience And Physiological Health, Eunju Kim, Seung-Hee Yoo, Zheng Chen

Faculty, Staff and Student Publications

The circadian clock is a fundamental biological mechanism that orchestrates essential cellular and physiological processes to optimize fitness and health. The basic functional unit is the cell-autonomous oscillator, consisting of intersecting negative feedback loops. Whereas the core loop is primarily responsible for rhythm generation, auxiliary loops, most notably the secondary or stabilization loop, play pivotal roles to confer temporal precision and molecular robustness. The stabilization loop contains opposing nuclear receptor subfamilies REV-ERBs and retinoic acid receptor-related orphan receptors (RORs), competing to modulate rhythmic expression of the basic helix-loop-helix ARNT like 1 (Bmal1) genes in the core loop as …


Progranulin Loss Results In Sex-Dependent Dysregulation Of The Peripheral And Central Immune System, Madelyn C Houser, Oihane Uriarte Huarte, Rebecca L Wallings, Cody E Keating, Kathryn P Macpherson, Mary K Herrick, George T Kannarkat, Sean D Kelly, Jianjun Chang, Nicholas H Varvel, Jessica E Rexach, Malú Gámez Tansey Jan 2022

Progranulin Loss Results In Sex-Dependent Dysregulation Of The Peripheral And Central Immune System, Madelyn C Houser, Oihane Uriarte Huarte, Rebecca L Wallings, Cody E Keating, Kathryn P Macpherson, Mary K Herrick, George T Kannarkat, Sean D Kelly, Jianjun Chang, Nicholas H Varvel, Jessica E Rexach, Malú Gámez Tansey

Faculty, Staff and Student Publications

INTRODUCTION: Progranulin (PGRN) is a secreted glycoprotein, the expression of which is linked to several neurodegenerative diseases. Although its specific function is still unclear, several studies have linked it with lysosomal functions and immune system regulation. Here, we have explored the role of PGRN in peripheral and central immune system homeostasis by investigating the consequences of PGRN deficiency on adaptive and innate immune cell populations.

METHODS: First, we used gene co-expression network analysis of published data to test the hypothesis that

RESULTS: Male PGRN KO mice exhibited a lower abundance of microglial cells with higher MHC-II expression, increased CD44 expression …


Identification Of A Rickettsial Endosymbiont In A Soft Tick Ornithodoros Turicata Americanus, Lichao Liu, Daniel E. Sonenshine, Hameeda Sultana, Girish Neelakanta Jan 2022

Identification Of A Rickettsial Endosymbiont In A Soft Tick Ornithodoros Turicata Americanus, Lichao Liu, Daniel E. Sonenshine, Hameeda Sultana, Girish Neelakanta

Biological Sciences Faculty Publications

Bacterial endosymbionts are abundantly found in both hard and soft ticks. Occidentia massiliensis, a rickettsial endosymbiont, was first identified in the soft tick Ornithodoros sonrai collected from Senegal and later was identified in a hard tick Africaniella transversale. In this study, we noted the presence of Occidentia species, designated as Occidentia-like species, in a soft tick O. turicata americanus. Sequencing and phylogenetic analyses of the two genetic markers, 16S rRNA and groEL confirmed the presence of Occidentia-like species in O. turicata americanus ticks. The Occidentia-like species was noted to be present in all developmental stages …


Engineered Cord Blood Megakaryocytes Evade Killing By Allogeneic T-Cells For Refractory Thrombocytopenia, Bijender Kumar, Vahid Afshar-Kharghan, Mayela Mendt, Robert Sackstein, Mark R Tanner, Uday Popat, Jeremy Ramdial, May Daher, Juan Jimenez, Rafet Basar, Luciana Melo Garcia, Mayra Shanley, Mecit Kaplan, Xinhai Wan, Vandana Nandivada, Francia Reyes Silva, Vernikka Woods, April Gilbert, Ricardo Gonzalez-Delgado, Sunil Acharya, Paul Lin, Hind Rafei, Pinaki Prosad Banerjee, Elizabeth J Shpall Jan 2022

Engineered Cord Blood Megakaryocytes Evade Killing By Allogeneic T-Cells For Refractory Thrombocytopenia, Bijender Kumar, Vahid Afshar-Kharghan, Mayela Mendt, Robert Sackstein, Mark R Tanner, Uday Popat, Jeremy Ramdial, May Daher, Juan Jimenez, Rafet Basar, Luciana Melo Garcia, Mayra Shanley, Mecit Kaplan, Xinhai Wan, Vandana Nandivada, Francia Reyes Silva, Vernikka Woods, April Gilbert, Ricardo Gonzalez-Delgado, Sunil Acharya, Paul Lin, Hind Rafei, Pinaki Prosad Banerjee, Elizabeth J Shpall

Faculty, Staff and Student Publications

The current global platelet supply is often insufficient to meet all the transfusion needs of patients, in particular for those with alloimmune thrombocytopenia. To address this issue, we have developed a strategy employing a combination of approaches to achieve more efficient production of functional megakaryocytes (MKs) and platelets collected from cord blood (CB)-derived CD34+ hematopoietic cells. This strategy is based on ex-vivo expansion and differentiation of MKs in the presence of bone marrow niche-mimicking mesenchymal stem cells (MSCs), together with two other key components: (1) To enhance MK polyploidization, we used the potent pharmacological Rho-associated coiled-coil kinase (ROCK) inhibitor, KD045, …


Impairment Of Autophagy After Spinal Cord Injury Potentiates Neuroinflammation And Motor Function Deficit In Mice, Yun Li, Zhuofan Lei, Rodney M Ritzel, Junyun He, Hui Li, Harry M C Choi, Marta M Lipinski, Junfang Wu Jan 2022

Impairment Of Autophagy After Spinal Cord Injury Potentiates Neuroinflammation And Motor Function Deficit In Mice, Yun Li, Zhuofan Lei, Rodney M Ritzel, Junyun He, Hui Li, Harry M C Choi, Marta M Lipinski, Junfang Wu

Faculty, Staff and Student Publications

Autophagy is a catabolic process that degrades cytoplasmic constituents and organelles in the lysosome, thus serving an important role in cellular homeostasis and protection against insults. We previously reported that defects in autophagy contribute to neuronal cell damage in traumatic spinal cord injury (SCI). Recent data from other inflammatory models implicate autophagy in regulation of immune and inflammatory responses, with low levels of autophagic flux associated with pro-inflammatory phenotypes. In the present study, we examined the effects of genetically or pharmacologically manipulating autophagy on posttraumatic neuroinflammation and motor function after SCI in mice.

Methods: Young adult male C57BL/6, CX3CR1-GFP, autophagy …


Behavioural Immune Landscapes Of Inflammation, Georgiana Crainiciuc, Miguel Palomino-Segura, Miguel Molina-Moreno, Jon Sicilia, David G Aragones, Jackson Liang Yao Li, Rodrigo Madurga, José M Adrover, Alejandra Aroca-Crevillén, Sandra Martin-Salamanca, Alfonso Serrano Del Valle, Sandra D Castillo, Heidi C E Welch, Oliver Soehnlein, Mariona Graupera, Fátima Sánchez-Cabo, Alexander Zarbock, Thomas E Smithgall, Mauro Di Pilato, Thorsten R Mempel, Pierre-Louis Tharaux, Santiago F González, Angel Ayuso-Sacido, Lai Guan Ng, Gabriel F Calvo, Iván González-Díaz, Fernando Díaz-De-María, Andrés Hidalgo Jan 2022

Behavioural Immune Landscapes Of Inflammation, Georgiana Crainiciuc, Miguel Palomino-Segura, Miguel Molina-Moreno, Jon Sicilia, David G Aragones, Jackson Liang Yao Li, Rodrigo Madurga, José M Adrover, Alejandra Aroca-Crevillén, Sandra Martin-Salamanca, Alfonso Serrano Del Valle, Sandra D Castillo, Heidi C E Welch, Oliver Soehnlein, Mariona Graupera, Fátima Sánchez-Cabo, Alexander Zarbock, Thomas E Smithgall, Mauro Di Pilato, Thorsten R Mempel, Pierre-Louis Tharaux, Santiago F González, Angel Ayuso-Sacido, Lai Guan Ng, Gabriel F Calvo, Iván González-Díaz, Fernando Díaz-De-María, Andrés Hidalgo

Faculty, Staff and Student Publications

Transcriptional and proteomic profiling of individual cells have revolutionized interpretation of biological phenomena by providing cellular landscapes of healthy and diseased tissues1,2. These approaches, however, do not describe dynamic scenarios in which cells continuously change their biochemical properties and downstream 'behavioural' outputs3-5. Here we used 4D live imaging to record tens to hundreds of morpho-kinetic parameters describing the dynamics of individual leukocytes at sites of active inflammation. By analysing more than 100,000 reconstructions of cell shapes and tracks over time, we obtained behavioural descriptors of individual cells and used these high-dimensional datasets to build behavioural landscapes. These landscapes recognized leukocyte …


Defective Dna Polymerase Beta Invoke A Cytosolic Dna Mediated Inflammatory Response, Shengyuan Zhao, Julia A Goewey Ruiz, Manu Sebastian, Dawit Kidane Jan 2022

Defective Dna Polymerase Beta Invoke A Cytosolic Dna Mediated Inflammatory Response, Shengyuan Zhao, Julia A Goewey Ruiz, Manu Sebastian, Dawit Kidane

Faculty, Staff and Student Publications

Base excision repair (BER) has evolved to maintain the genomic integrity of DNA following endogenous and exogenous agent induced DNA base damage. In contrast, aberrant BER induces genomic instability, promotes malignant transformation and can even trigger cancer development. Previously, we have shown that deoxyribo-5'-phosphate (dRP) lyase deficient DNA polymerase beta (POLB) causes replication associated genomic instability and sensitivity to both endogenous and exogenous DNA damaging agents. Specifically, it has been established that this loss of dRP lyase function promotes inflammation associated gastric cancer. However, the way that aberrant POLB impacts the immune signaling and inflammatory responses is still unknown. Here …


Fluorescence Imaging Of Beta Cell Primary Cilia, Zipeng A Li, Jung Hoon Cho, Louis G Woodhams, Jing W Hughes Jan 2022

Fluorescence Imaging Of Beta Cell Primary Cilia, Zipeng A Li, Jung Hoon Cho, Louis G Woodhams, Jing W Hughes

2020-Current year OA Pubs

Primary cilia are slender cell-surface organelles that project into the intercellular space. In pancreatic beta cells, primary cilia coordinate a variety of cell responses including GPCR signaling, calcium influx, and insulin secretion, along with likely many underappreciated roles in islet development and differentiation. To study cilia function in islet biology, direct visualization of primary cilia by microscopic methods is often a necessary first step. Ciliary abundance, distribution, and morphology are heterogeneous among islet cells and are best visualized by fluorescence microscopy, the tools for which are readily accessible to most researchers. Here we present a collection of fluorescence imaging methods …


Comparative Analysis Of Dcas9-Vp64 Variants And Multiplexed Guide Rnas Mediating Crispr Activation, Kohei Omachi, Jeffrey H. Miner Jan 2022

Comparative Analysis Of Dcas9-Vp64 Variants And Multiplexed Guide Rnas Mediating Crispr Activation, Kohei Omachi, Jeffrey H. Miner

2020-Current year OA Pubs

CRISPR/Cas9-mediated transcriptional activation (CRISPRa) is a powerful tool for investigating complex biological phenomena. Although CRISPRa approaches based on the VP64 transcriptional activator have been widely studied in both cultured cells and in animal models and exhibit great versatility for various cell types and developmental stages in vivo, different dCas9-VP64 versions have not been rigorously compared. Here, we compared different dCas9-VP64 constructs in identical contexts, including the cell lines used and the transfection conditions, for their ability to activate endogenous and exogenous genes. Moreover, we investigated the optimal approach for VP64 addition to VP64- and p300-based constructs. We found that MS2-MCP-scaffolded …


Checkpoint Blockade-Induced Cd8+ T Cell Differentiation In Head And Neck Cancer Responders, Liye Zhou, Paul Zolkind, Obi Griffith, Et Al Jan 2022

Checkpoint Blockade-Induced Cd8+ T Cell Differentiation In Head And Neck Cancer Responders, Liye Zhou, Paul Zolkind, Obi Griffith, Et Al

2020-Current year OA Pubs

BACKGROUND: Immune checkpoint blockade (ICB) response in recurrent/metastatic head and neck squamous cell carcinoma (HNSCC) is limited to 15%-20% of patients and underpinnings of resistance remain undefined.

METHODS: Starting with an anti-PD1 sensitive murine HNSCC cell line, we generated an isogenic anti-PD1 resistant model. Mass cytometry was used to delineate tumor microenvironments of both sensitive parental murine oral carcinoma (MOC1) and resistant MOC1esc1 tumors. To examine heterogeneity and clonal dynamics of tumor infiltrating lymphocytes (TILs), we applied paired single-cell RNA and TCR sequencing in three HNSCC models.

RESULTS: Anti-PD1 resistant MOC1esc1 line displayed a conserved cell intrinsic immune evasion signature. …


A Recombinant Murine-Like Rotavirus With Nano-Luciferase Expression Reveals Tissue Tropism, Replication Dynamics, And Virus Transmission, Yinxing Zhu, Liliana Sánchez-Tacuba, Gaopeng Hou, Takahiro Kawagishi, Ningguo Feng, Harry B Greenberg, Siyuan Ding Jan 2022

A Recombinant Murine-Like Rotavirus With Nano-Luciferase Expression Reveals Tissue Tropism, Replication Dynamics, And Virus Transmission, Yinxing Zhu, Liliana Sánchez-Tacuba, Gaopeng Hou, Takahiro Kawagishi, Ningguo Feng, Harry B Greenberg, Siyuan Ding

2020-Current year OA Pubs

Rotaviruses (RVs) are one of the main causes of severe gastroenteritis, diarrhea, and death in children and young animals. While suckling mice prove to be highly useful small animal models of RV infection and pathogenesis, direct visualization tools are lacking to track the temporal dynamics of RV replication and transmissibility


Egg-Derived Anti-Sars-Cov-2 Immunoglobulin Y (Igy) With Broad Variant Activity As Intranasal Prophylaxis Against Covid-19, Lyn R Frumkin, Traci L Bricker, Astha Joshi, Adrianus C M Boon, Et Al. Jan 2022

Egg-Derived Anti-Sars-Cov-2 Immunoglobulin Y (Igy) With Broad Variant Activity As Intranasal Prophylaxis Against Covid-19, Lyn R Frumkin, Traci L Bricker, Astha Joshi, Adrianus C M Boon, Et Al.

2020-Current year OA Pubs

UNLABELLED: COVID-19 emergency use authorizations and approvals for vaccines were achieved in record time. However, there remains a need to develop additional safe, effective, easy-to-produce, and inexpensive prevention to reduce the risk of acquiring SARS-CoV-2 infection. This need is due to difficulties in vaccine manufacturing and distribution, vaccine hesitancy, and, critically, the increased prevalence of SARS-CoV-2 variants with greater contagiousness or reduced sensitivity to immunity. Antibodies from eggs of hens (immunoglobulin Y; IgY) that were administered the receptor-binding domain (RBD) of the SARS-CoV-2 spike protein were developed for use as nasal drops to capture the virus on the nasal mucosa. …


Sglt2 Inhibitors Therapy Protects Glucotoxicity-Induced Β-Cell Failure In A Mouse Model Of Human Katp-Induced Diabetes Through Mitigation Of Oxidative And Er Stress, Zeenat A. Shyr, Zihan Yan, Alessandro Ustione, Erin M. Egan, Maria S. Remedi Jan 2022

Sglt2 Inhibitors Therapy Protects Glucotoxicity-Induced Β-Cell Failure In A Mouse Model Of Human Katp-Induced Diabetes Through Mitigation Of Oxidative And Er Stress, Zeenat A. Shyr, Zihan Yan, Alessandro Ustione, Erin M. Egan, Maria S. Remedi

Open Access Publications

Progressive loss of pancreatic β-cell functional mass and anti-diabetic drug responsivity are classic findings in diabetes, frequently attributed to compensatory insulin hypersecretion and β-cell exhaustion. However, loss of β-cell mass and identity still occurs in mouse models of human KATP-gain-of-function induced Neonatal Diabetes Mellitus (NDM), in the absence of insulin secretion. Here we studied the temporal progression and mechanisms underlying glucotoxicity-induced loss of functional β-cell mass in NDM mice, and the effects of sodium-glucose transporter 2 inhibitors (SGLT2i) therapy. Upon tamoxifen induction of transgene expression, NDM mice rapidly developed severe diabetes followed by an unexpected loss of insulin content, decreased …


Mintruls: Prediction Of Mirna-Mrna Target Site Interactions Using Regularized Least Square Method, Sushil Kumar Shakyawar, Siddesh Southekal, Chittibabu Guda Jan 2022

Mintruls: Prediction Of Mirna-Mrna Target Site Interactions Using Regularized Least Square Method, Sushil Kumar Shakyawar, Siddesh Southekal, Chittibabu Guda

Journal Articles: Genetics, Cell Biology & Anatomy

Identification of miRNA-mRNA interactions is critical to understand the new paradigms in gene regulation. Existing methods show suboptimal performance owing to inappropriate feature selection and limited integration of intuitive biological features of both miRNAs and mRNAs. The present regularized least square-based method, mintRULS, employs features of miRNAs and their target sites using pairwise similarity metrics based on free energy, sequence and repeat identities, and target site accessibility to predict miRNA-target site interactions. We hypothesized that miRNAs sharing similar structural and functional features are more likely to target the same mRNA, and conversely, mRNAs with similar features can be targeted by …


Regulation Of Rod Photoreceptor Function By Farnesylated G-Protein Γ-Subunits, Alexander V. Kolesnikov, Elena Lobysheva, Jaya P. Gnana-Prakasam, Vladimir J. Kefalov, Oleg G. Kisselev Jan 2022

Regulation Of Rod Photoreceptor Function By Farnesylated G-Protein Γ-Subunits, Alexander V. Kolesnikov, Elena Lobysheva, Jaya P. Gnana-Prakasam, Vladimir J. Kefalov, Oleg G. Kisselev

2020-Current year OA Pubs

Heterotrimeric G-protein transducin, Gt, is a key signal transducer and amplifier in retinal rod and cone photoreceptor cells. Despite similar subunit composition, close amino acid identity, and identical posttranslational farnesylation of their Gγ subunits, rods and cones rely on unique Gγ1 (Gngt1) and Gγc (Gngt2) isoforms, respectively. The only other farnesylated G-protein γ-subunit, Gγ11 (Gng11), is expressed in multiple tissues but not retina. To determine whether Gγ1 regulates uniquely rod phototransduction, we generated transgenic rods expressing Gγ1, Gγc, or Gγ11 in Gγ1-deficient mice and analyzed their properties. Immunohistochemistry and Western blotting demonstrated the robust expression of each transgenic Gγ in …


In Silico Integrative Analysis Of Multi-Omics Reveals Regulatory Layers For Diurnal Gene Expression In Mouse Liver, Chunjie Jiang, Panpan Liu, Cam Mong La, Dongyin Guan Jan 2022

In Silico Integrative Analysis Of Multi-Omics Reveals Regulatory Layers For Diurnal Gene Expression In Mouse Liver, Chunjie Jiang, Panpan Liu, Cam Mong La, Dongyin Guan

Faculty, Staff and Students Publications

Diurnal oscillation persists throughout the body and plays an essential role in maintaining physiological homeostasis. Disruption of diurnal rhythm contributes to many diseases including type 2 diabetes. The regulatory mechanism of the transcription-translation feedback loop (TTFL) of core clock genes is well-established, while a systematic study across all regulatory layers of gene expression, including gene transcription, RNA translation, and DNA binding protein (DBP) activities, is still lacking. We comprehensively bioinformatics analyzed the rhythmicity of gene transcription, mature RNA abundance, protein abundance and DBP activity using publicly available omic-datasets from mouse livers. We found that the core clock genes,


A Novel Model Of Gestational Diabetes: Acute High Fat High Sugar Diet Results In Insulin Resistance And Beta Cell Dysfunction During Pregnancy In Mice, Akansha Mishra, Simone Hernandez Ruano, Pradip K Saha, Kathleen A Pennington Jan 2022

A Novel Model Of Gestational Diabetes: Acute High Fat High Sugar Diet Results In Insulin Resistance And Beta Cell Dysfunction During Pregnancy In Mice, Akansha Mishra, Simone Hernandez Ruano, Pradip K Saha, Kathleen A Pennington

Faculty, Staff and Students Publications

Gestational diabetes mellitus (GDM) affects 7–18% of all pregnancies. Despite its high prevalence, there is no widely accepted animal model. To address this, we recently developed a mouse model of GDM. The goal of this work was to further characterize this animal model by assessing insulin resistance and beta cell function. Mice were randomly assigned to either control (CD) or high fat, high sugar (HFHS) diet and mated 1 week later. At day 0 (day of mating) mice were fasted and intraperitoneal insulin tolerance tests (ipITT) were performed. Mice were then euthanized and pancreata were collected for histological analysis. Euglycemic …


Stat6 Suppression Prevents Bleomycin-Induced Dermal Fibrosis, Hua Sun, Ashish Damania, Megan L Mair, Eniola Otukoya, Yi-Dong Li, Katherine Polsky, Yuying Zeng, Jeremiah A Alt, Martin J Citardi, David B Corry, Amber U Luong, John Morgan Knight Jan 2022

Stat6 Suppression Prevents Bleomycin-Induced Dermal Fibrosis, Hua Sun, Ashish Damania, Megan L Mair, Eniola Otukoya, Yi-Dong Li, Katherine Polsky, Yuying Zeng, Jeremiah A Alt, Martin J Citardi, David B Corry, Amber U Luong, John Morgan Knight

Faculty, Staff and Student Publications

Unified airway disease, including concurrent asthma and chronic rhinosinusitis (CRS), is a common, but poorly understood disorder with no curative treatment options. To establish a murine model of chronic unified eosinophilic airway inflammation, mice were challenged with Aspergillus niger, and sinonasal mucosa and lung tissue were evaluated by immunohistochemistry, flow cytometry, and gene expression. Inhalation of A niger conidia resulted in a Th2-biased lung and sinus inflammation that typifies allergic asthma and CRS. Gene network and pathway analysis correlated with human disease with upregulation of not only the JAK-STAT and helper T-cell pathways, but also less expected pathways governing …


Common Genomic Aberrations In Mouse And Human Breast Cancers With Concurrent P53 Deficiency And Activated Pten-Pi3k-Akt Pathway, Jarrod D Martinez, Qianxing Mo, Yixiang Xu, Li Qin, Yi Li, Jianming Xu Jan 2022

Common Genomic Aberrations In Mouse And Human Breast Cancers With Concurrent P53 Deficiency And Activated Pten-Pi3k-Akt Pathway, Jarrod D Martinez, Qianxing Mo, Yixiang Xu, Li Qin, Yi Li, Jianming Xu

Faculty, Staff and Students Publications

Simultaneous P53 loss and activation of the PTEN-restricted PI3K-AKT pathway frequently occur in aggressive breast cancers. P53 loss causes genome instability, while PTEN loss and/or activating mutations of PIK3CA and AKT promote cancer cell proliferation that also increases incidences of genomic aberrations. However, the genomic alterations associated with P53 loss and activated PTEN-PI3K-AKT signaling in breast cancer have not been defined. Spatiotemporally controlled breast cancer models with inactivation of both P53 and Pten in adult mice have not been established for studying genomic alterations. Herein, we deleted both floxed Pten and Tp53 genes in the mammary gland epithelial cells in …


Targeting The Pro-Survival Protein Bcl-2 To Prevent Breast Cancer, Adelaide Young, Wen Bu, Weiyu Jiang, Amy Ku, Jyoti Kapali, Sagar Dhamne, Lan Qin, Susan G Hilsenbeck, Yi-Chieh Nancy Du, Yi Li Jan 2022

Targeting The Pro-Survival Protein Bcl-2 To Prevent Breast Cancer, Adelaide Young, Wen Bu, Weiyu Jiang, Amy Ku, Jyoti Kapali, Sagar Dhamne, Lan Qin, Susan G Hilsenbeck, Yi-Chieh Nancy Du, Yi Li

Faculty, Staff and Students Publications

Current chemopreventive strategies require 3-5 years of continuous treatment and have the concerns of significant side effects; therefore, new chemopreventive agents that require shorter and safer treatments are urgently needed. In this study, we developed a new murine model of breast cancer that mimics human breast cancer initiation and is ideal for testing the efficacy of chemopreventive therapeutics. In this model, introduction of lentivirus carrying a PIK3CA gene mutant commonly found in breast cancers infects a small number of the mammary cells, leading to atypia first and then to ductal carcinomas that are positive for both estrogen receptor and progesterone …


Systematic Profiling Of Dnmt3a Variants Reveals Protein Instability Mediated By The Dcaf8 E3 Ubiquitin Ligase Adaptor, Yung-Hsin Huang, Chun-Wei Chen, Venkatasubramaniam Sundaramurthy, Mikołaj Słabicki, Dapeng Hao, Caroline J Watson, Ayala Tovy, Jaime M Reyes, Olga Dakhova, Brielle R Crovetti, Christina Galonska, Minjung Lee, Lorenzo Brunetti, Yubin Zhou, Katrina Tatton-Brown, Yun Huang, Xiaodong Cheng, Alexander Meissner, Peter J M Valk, Lionel Van Maldergem, Mathijs A Sanders, Jamie R Blundell, Wei Li, Benjamin L Ebert, Margaret A Goodell Jan 2022

Systematic Profiling Of Dnmt3a Variants Reveals Protein Instability Mediated By The Dcaf8 E3 Ubiquitin Ligase Adaptor, Yung-Hsin Huang, Chun-Wei Chen, Venkatasubramaniam Sundaramurthy, Mikołaj Słabicki, Dapeng Hao, Caroline J Watson, Ayala Tovy, Jaime M Reyes, Olga Dakhova, Brielle R Crovetti, Christina Galonska, Minjung Lee, Lorenzo Brunetti, Yubin Zhou, Katrina Tatton-Brown, Yun Huang, Xiaodong Cheng, Alexander Meissner, Peter J M Valk, Lionel Van Maldergem, Mathijs A Sanders, Jamie R Blundell, Wei Li, Benjamin L Ebert, Margaret A Goodell

Faculty, Staff and Students Publications

Clonal hematopoiesis is a prevalent age-related condition associated with a greatly increased risk of hematologic disease; mutations in DNA methyltransferase 3A (DNMT3A) are the most common driver of this state. DNMT3A variants occur across the gene with some particularly associated with malignancy, but the functional relevance and mechanisms of pathogenesis of the majority of mutations are unknown. Here, we systematically investigated the methyltransferase activity and protein stability of 253 disease-associated DNMT3A mutations, and found that 74% were loss-of-function mutations. Half of these variants exhibited reduced protein stability and, as a class, correlated with greater clonal expansion and acute …


Spatial Transcriptomics Of The Lacrimal Gland Features Macrophage Activity And Epithelium Metabolism As Key Alterations During Chronic Inflammation, Olivier Mauduit, Vanessa Delcroix, Takeshi Umazume, Cintia S De Paiva, Darlene A Dartt, Helen P Makarenkova Jan 2022

Spatial Transcriptomics Of The Lacrimal Gland Features Macrophage Activity And Epithelium Metabolism As Key Alterations During Chronic Inflammation, Olivier Mauduit, Vanessa Delcroix, Takeshi Umazume, Cintia S De Paiva, Darlene A Dartt, Helen P Makarenkova

Faculty, Staff and Students Publications

The lacrimal gland (LG) is an exocrine gland that produces the watery part of the tear film that lubricates the ocular surface. Chronic inflammation, such as Sjögren’s syndrome (SS), is one of the leading causes of aqueous-deficiency dry eye (ADDE) disease worldwide. In this study we analyzed the chronic inflammation in the LGs of the NOD.B10Sn-H2b/J (NOD.H-2b) mice, a mouse model of SS, utilizing bulk RNAseq and Visium spatial gene expression. With Seurat we performed unsupervised clustering and analyzed the spatial cell distribution and gene expression changes in all cell clusters within the LG sections. Moreover, for the …


Crispr/Cas9-Mediated Genome Editing Reveals 12 Testis-Enriched Genes Dispensable For Male Fertility In Mice, Yuki Oyama, Haruhiko Miyata, Keisuke Shimada, Yoshitaka Fujihara, Keizo Tokuhiro, Thomas X Garcia, Martin M Matzuk, Masahito Ikawa Jan 2022

Crispr/Cas9-Mediated Genome Editing Reveals 12 Testis-Enriched Genes Dispensable For Male Fertility In Mice, Yuki Oyama, Haruhiko Miyata, Keisuke Shimada, Yoshitaka Fujihara, Keizo Tokuhiro, Thomas X Garcia, Martin M Matzuk, Masahito Ikawa

Faculty, Staff and Students Publications

Gene expression analyses suggest that more than 1000-2000 genes are expressed predominantly in mouse and human testes. Although functional analyses of hundreds of these genes have been performed, there are still many testis-enriched genes whose functions remain unexplored. Analyzing gene function using knockout (KO) mice is a powerful tool to discern if the gene of interest is essential for sperm formation, function, and male fertility in vivo. In this study, we generated KO mice for 12 testis-enriched genes, 1700057G04Rik, 4921539E11Rik, 4930558C23Rik, Cby2, Ldhal6b, Rasef, Slc25a2, Slc25a41, Smim8, Smim9, Tmem210, and Tomm20l, using the clustered regularly interspaced short palindromic repeats /CRISPR-associated …


The Autophagic Protein P62 Is A Target Of Reactive Aldehydes In Human And Murine Cholestatic Liver Disease, Colin T Shearn, Aimee L Anderson, Michael W Devereux, David J Orlicky, Cole Michel, Dennis R Petersen, Colin G Miller, Sanjiv Harpavat, Edward E Schmidt, Ronald J Sokol Jan 2022

The Autophagic Protein P62 Is A Target Of Reactive Aldehydes In Human And Murine Cholestatic Liver Disease, Colin T Shearn, Aimee L Anderson, Michael W Devereux, David J Orlicky, Cole Michel, Dennis R Petersen, Colin G Miller, Sanjiv Harpavat, Edward E Schmidt, Ronald J Sokol

Faculty, Staff and Students Publications

Inflammatory cholestatic liver diseases, including Primary Sclerosing Cholangitis (PSC), are characterized by periportal inflammation with progression to cirrhosis. The objective of this study was to examine interactions between oxidative stress and autophagy in cholestasis. Using hepatic tissue from male acute cholestatic (bile duct ligated) as well as chronic cholestatic (Mdr2KO) mice, localization of oxidative stress, the antioxidant response and induction of autophagy were analyzed and compared to human PSC liver. Concurrently, the ability of reactive aldehydes to post-translationally modify the autophagosome marker p62 was assessed in PSC liver tissue and in cell culture. Expression of autophagy markers was upregulated in …


Exercise-Induced Myokines Downregulates The Ace2 Level In Bronchial Epithelial Cells: Implications For Sars-Cov-2 Prevention, Vaishali Bhardwaj, Mart Dela Cruz, Deepika Subramanyam, Rohit Kumar, Sandeep Markan, Beth Parker, Hemant K Roy Jan 2022

Exercise-Induced Myokines Downregulates The Ace2 Level In Bronchial Epithelial Cells: Implications For Sars-Cov-2 Prevention, Vaishali Bhardwaj, Mart Dela Cruz, Deepika Subramanyam, Rohit Kumar, Sandeep Markan, Beth Parker, Hemant K Roy

Faculty, Staff and Students Publications

BACKGROUND: The Covid-19 pandemic has emerged as the leading public health challenge of our time (20th century). While vaccinations have finally blunted the death rate, concern has remained about more virulent forms highlighting the need for alternative approaches. Epidemiological studies indicate that physical activity has been shown to decrease the risk of infection of some respiratory viruses. Part of the salutary effects of exercise is believed to be through the elaboration of cytokines by contracting skeletal muscles (termed myokines). The objective of this study was to investigate whether exercise-induced myokines would mitigate the SARS-CoV-2 infectivity of the bronchial epithelium through …


Modified Vaccinia Ankara Expressing Eehv1a Glycoprotein B Elicits Humoral And Cell-Mediated Immune Responses In Mice, Taylor Pursell, Jennifer L Spencer Clinton, Jie Tan, Rongsheng Peng, Paul D Ling Jan 2022

Modified Vaccinia Ankara Expressing Eehv1a Glycoprotein B Elicits Humoral And Cell-Mediated Immune Responses In Mice, Taylor Pursell, Jennifer L Spencer Clinton, Jie Tan, Rongsheng Peng, Paul D Ling

Faculty, Staff and Students Publications

Elephant endotheliotropic herpesvirus (EEHV) can cause lethal hemorrhagic disease (EEHV-HD) in Asian elephants and is the largest cause of death in captive juvenile Asian elephants in North America and Europe. EEHV-HD also has been documented in captive and wild elephants in their natural range countries. A safe and effective vaccine to prevent lethal EEHV infection would significantly improve conservation efforts for this endangered species. Recent studies from our laboratory suggest that EEHV morbidity and mortality are often associated with primary infection. Therefore, we aim to generate a vaccine, particularly for EEHV1 naïve animals, with the goal of preventing lethal EEHV-HD. …