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Metabolic Sensing In Agrp Neurons Integrates Homeostatic State With Dopamine Signalling In The Striatum, Alex Reichenbach, Alexxai V. Kravitz, Et Al Jan 2022

Metabolic Sensing In Agrp Neurons Integrates Homeostatic State With Dopamine Signalling In The Striatum, Alex Reichenbach, Alexxai V. Kravitz, Et Al

Open Access Publications

Agouti-related peptide (AgRP) neurons increase motivation for food, however, whether metabolic sensing of homeostatic state in AgRP neurons potentiates motivation by interacting with dopamine reward systems is unexplored. As a model of impaired metabolic-sensing, we used the AgRP-specific deletion of carnitine acetyltransferase (


Serpinb3 (Scca1) Inhibits Cathepsin L And Lysoptosis, Protecting Cervical Cancer Cells From Chemoradiation, Songyan Wang, Cliff J Luke, Stephen C Pak, Victoria Shi, Liyun Chen, Jonathan Moore, Arlise P Andress, Kay Jayachandran, Jin Zhang, Yi Huang, Marina Platik, Anthony A Apicelli, Julie K Schwarz, Perry W Grigsby, Gary A Silverman, Stephanie Markovina Jan 2022

Serpinb3 (Scca1) Inhibits Cathepsin L And Lysoptosis, Protecting Cervical Cancer Cells From Chemoradiation, Songyan Wang, Cliff J Luke, Stephen C Pak, Victoria Shi, Liyun Chen, Jonathan Moore, Arlise P Andress, Kay Jayachandran, Jin Zhang, Yi Huang, Marina Platik, Anthony A Apicelli, Julie K Schwarz, Perry W Grigsby, Gary A Silverman, Stephanie Markovina

Open Access Publications

The endogenous lysosomal cysteine protease inhibitor SERPINB3 (squamous cell carcinoma antigen 1, SCCA1) is elevated in patients with cervical cancer and other malignancies. High serum SERPINB3 is prognostic for recurrence and death following chemoradiation therapy. Cervical cancer cells genetically lacking SERPINB3 are more sensitive to ionizing radiation (IR), suggesting this protease inhibitor plays a role in therapeutic response. Here we demonstrate that SERPINB3-deficient cells have enhanced sensitivity to IR-induced cell death. Knock out of SERPINB3 sensitizes cells to a greater extent than cisplatin, the current standard of care. IR in SERPINB3 deficient cervical carcinoma cells induces predominantly necrotic cell death, …


Lysoptosis Is An Evolutionarily Conserved Cell Death Pathway Moderated By Intracellular Serpins, Cliff J Luke, Stephanie Markovina, Misty Good, Ira E Wight, Brian J Thomas, John M Linneman, Wyatt E Lanik, Olga Koroleva, Maggie R Coffman, Mark T Miedel, Qingqing Gong, Arlise Andress, Marlene Campos Guerrero, Songyan Wang, Liyun Chen, Wandy L Beatty, Kelsey N Hausmann, Frances V White, James A J Fitzpatrick, Anthony Orvedahl, Stephen C Pak, Gary A Silverman Jan 2022

Lysoptosis Is An Evolutionarily Conserved Cell Death Pathway Moderated By Intracellular Serpins, Cliff J Luke, Stephanie Markovina, Misty Good, Ira E Wight, Brian J Thomas, John M Linneman, Wyatt E Lanik, Olga Koroleva, Maggie R Coffman, Mark T Miedel, Qingqing Gong, Arlise Andress, Marlene Campos Guerrero, Songyan Wang, Liyun Chen, Wandy L Beatty, Kelsey N Hausmann, Frances V White, James A J Fitzpatrick, Anthony Orvedahl, Stephen C Pak, Gary A Silverman

Open Access Publications

Lysosomal membrane permeabilization (LMP) and cathepsin release typifies lysosome-dependent cell death (LDCD). However, LMP occurs in most regulated cell death programs suggesting LDCD is not an independent cell death pathway, but is conscripted to facilitate the final cellular demise by other cell death routines. Previously, we demonstrated that Caenorhabditis elegans (C. elegans) null for a cysteine protease inhibitor, srp-6, undergo a specific LDCD pathway characterized by LMP and cathepsin-dependent cytoplasmic proteolysis. We designated this cell death routine, lysoptosis, to distinguish it from other pathways employing LMP. In this study, mouse and human epithelial cells lacking srp-6 homologues, mSerpinb3a and SERPINB3, …


Cxcl10 Chemokine Regulates Heterogeneity Of The Cd8+ T Cell Response And Viral Set Point During Chronic Infection, Aleksandra J Ozga, Melvyn T Chow, Mateus E Lopes, Rachel L Servis, Mauro Di Pilato, Philippe Dehio, Jeffrey Lian, Thorsten R Mempel, Andrew D Luster Jan 2022

Cxcl10 Chemokine Regulates Heterogeneity Of The Cd8+ T Cell Response And Viral Set Point During Chronic Infection, Aleksandra J Ozga, Melvyn T Chow, Mateus E Lopes, Rachel L Servis, Mauro Di Pilato, Philippe Dehio, Jeffrey Lian, Thorsten R Mempel, Andrew D Luster

Faculty, Staff and Student Publications

CD8+ T cells responding to chronic infection adapt an altered differentiation program that provides some restrain on pathogen replication yet limits immunopathology. This adaptation is imprinted in stem-like cells and propagated to their progeny. Understanding the molecular control of CD8+ T cell differentiation in chronic infection has important therapeutic implications. Here, we found that the chemokine receptor CXCR3 was highly expressed on viral-specific stem-like CD8+ T cells and that one of its ligands, CXCL10, regulated the persistence and heterogeneity of responding CD8+ T cells in spleens of mice chronically infected with lymphocytic choriomeningitis virus. CXCL10 was produced by inflammatory monocytes …


Mapk4 Promotes Triple Negative Breast Cancer Growth And Reduces Tumor Sensitivity To Pi3k Blockade, Wei Wang, Dong Han, Qinbo Cai, Tao Shen, Bingning Dong, Michael T Lewis, Runsheng Wang, Yanling Meng, Wolong Zhou, Ping Yi, Chad J Creighton, David D Moore, Feng Yang Jan 2022

Mapk4 Promotes Triple Negative Breast Cancer Growth And Reduces Tumor Sensitivity To Pi3k Blockade, Wei Wang, Dong Han, Qinbo Cai, Tao Shen, Bingning Dong, Michael T Lewis, Runsheng Wang, Yanling Meng, Wolong Zhou, Ping Yi, Chad J Creighton, David D Moore, Feng Yang

Faculty, Staff and Students Publications

About 15-20% of breast cancer (BCa) is triple-negative BCa (TNBC), a devastating disease with limited therapeutic options. Aberrations in the PI3K/PTEN signaling pathway are common in TNBC. However, the therapeutic impact of PI3K inhibitors in TNBC has been limited and the mechanism(s) underlying this lack of efficacy remain elusive. Here, we demonstrate that a large subset of TNBC expresses significant levels of MAPK4, and this expression is critical for driving AKT activation independent of PI3K and promoting TNBC cell and xenograft growth. The ability of MAPK4 to bypass PI3K for AKT activation potentially provides a direct mechanism regulating tumor sensitivity …


P300 Or Cbp Is Required For Insulin-Stimulated Glucose Uptake In Skeletal Muscle And Adipocytes, Vitor F. Martins, Gretchen A. Meyer, Et Al. Jan 2022

P300 Or Cbp Is Required For Insulin-Stimulated Glucose Uptake In Skeletal Muscle And Adipocytes, Vitor F. Martins, Gretchen A. Meyer, Et Al.

2020-Current year OA Pubs

While current thinking posits that insulin signaling to glucose transporter 4 (GLUT4) exocytic translocation and glucose uptake in skeletal muscle and adipocytes is controlled by phosphorylation-based signaling, many proteins in this pathway are acetylated on lysine residues. However, the importance of acetylation and lysine acetyltransferases to insulin-stimulated glucose uptake is incompletely defined. Here, we demonstrate that combined loss of the acetyltransferases E1A binding protein p300 (p300) and cAMP response element binding protein binding protein (CBP) in mouse skeletal muscle caused a complete loss of insulin-stimulated glucose uptake. Similarly, brief (i.e., 1 hour) pharmacological inhibition of p300/CBP acetyltransferase activity recapitulated this …


Mutations In Hcfc1 And Ronin Result In An Inborn Error Of Cobalamin Metabolism And Ribosomopathy, Tiffany Chern, Annita Achilleos, Xuefei Tong, Matthew C Hill, Alexander B Saltzman, Lucas C Reineke, Arindam Chaudhury, Swapan K Dasgupta, Yushi Redhead, David Watkins, Joel R Neilson, Perumal Thiagarajan, Jeremy B A Green, Anna Malovannaya, James F Martin, David S Rosenblatt, Ross A Poché Jan 2022

Mutations In Hcfc1 And Ronin Result In An Inborn Error Of Cobalamin Metabolism And Ribosomopathy, Tiffany Chern, Annita Achilleos, Xuefei Tong, Matthew C Hill, Alexander B Saltzman, Lucas C Reineke, Arindam Chaudhury, Swapan K Dasgupta, Yushi Redhead, David Watkins, Joel R Neilson, Perumal Thiagarajan, Jeremy B A Green, Anna Malovannaya, James F Martin, David S Rosenblatt, Ross A Poché

Faculty, Staff and Students Publications

Combined methylmalonic acidemia and homocystinuria (cblC) is the most common inborn error of intracellular cobalamin metabolism and due to mutations in Methylmalonic Aciduria type C and Homocystinuria (MMACHC). Recently, mutations in the transcriptional regulators HCFC1 and RONIN (THAP11) were shown to result in cellular phenocopies of cblC. Since HCFC1/RONIN jointly regulate MMACHC, patients with mutations in these factors suffer from reduced MMACHC expression and exhibit a cblC-like disease. However, additional de-regulated genes and the resulting pathophysiology is unknown. Therefore, we have generated mouse models of this disease. In addition to exhibiting loss of Mmachc, metabolic perturbations, and developmental defects previously …


Secretogranin Iii Stringently Regulates Pathological But Not Physiological Angiogenesis In Oxygen-Induced Retinopathy, Chang Dai, Prabuddha Waduge, Liyang Ji, Chengchi Huang, Ye He, Hong Tian, Elizabeth Zuniga-Sanchez, Amit Bhatt, Iok-Hou Pang, Guanfang Su, Keith A Webster, Wei Li Jan 2022

Secretogranin Iii Stringently Regulates Pathological But Not Physiological Angiogenesis In Oxygen-Induced Retinopathy, Chang Dai, Prabuddha Waduge, Liyang Ji, Chengchi Huang, Ye He, Hong Tian, Elizabeth Zuniga-Sanchez, Amit Bhatt, Iok-Hou Pang, Guanfang Su, Keith A Webster, Wei Li

Faculty, Staff and Students Publications

Conventional angiogenic factors, such as vascular endothelial growth factor (VEGF), regulate both pathological and physiological angiogenesis indiscriminately, and their inhibitors may elicit adverse side effects. Secretogranin III (Scg3) was recently reported to be a diabetes-restricted VEGF-independent angiogenic factor, but the disease selectivity of Scg3 in retinopathy of prematurity (ROP), a retinal disease in preterm infants with concurrent pathological and physiological angiogenesis, was not defined. Here, using oxygen-induced retinopathy (OIR) mice, a surrogate model of ROP, we quantified an exclusive binding of Scg3 to diseased versus healthy developing neovessels that contrasted sharply with the ubiquitous binding of VEGF. Functional immunohistochemistry visualized …


Emergence Of Clinical Clostridioides Difficile Isolates With Decreased Susceptibility To Vancomycin, Charles Darkoh, Kadiatou Keita, Chioma Odo, Micah Oyaro, Eric L Brown, Cesar A Arias, Blake M Hanson, Herbert L Dupont Jan 2022

Emergence Of Clinical Clostridioides Difficile Isolates With Decreased Susceptibility To Vancomycin, Charles Darkoh, Kadiatou Keita, Chioma Odo, Micah Oyaro, Eric L Brown, Cesar A Arias, Blake M Hanson, Herbert L Dupont

Faculty, Staff and Student Publications

BACKGROUND: Clostridioides difficile infection (CDI) is a leading cause of hospital-associated antibiotic-related diarrhea and deaths worldwide. Vancomycin is one of the few antibiotics recommended for both nonsevere and severe CDI cases. We sought to determine whether vancomycin nonsusceptible C. difficile strains are circulating in the patient population.

METHODS: Stool samples from patients with CDI were collected from 438 and 98 patients at a large university hospital in Houston, Texas, and Nairobi, Kenya, respectively. The stools were examined for the presence of vancomycin and metronidazole nonsusceptible C. difficile using broth dilution culture, Etest (BioMérieux, France), polymerase chain reaction (PCR), whole-genome sequencing, …


Constitutively Active Sarm1 Variants That Induce Neuropathy Are Enriched In Als Patients, A Joseph Bloom, Xianrong Mao, Amy Strickland, Yo Sasaki, Jeffrey Milbrandt, Aaron Diantonio Jan 2022

Constitutively Active Sarm1 Variants That Induce Neuropathy Are Enriched In Als Patients, A Joseph Bloom, Xianrong Mao, Amy Strickland, Yo Sasaki, Jeffrey Milbrandt, Aaron Diantonio

2020-Current year OA Pubs

BACKGROUND: In response to injury, neurons activate a program of organized axon self-destruction initiated by the NAD

METHODS: To investigate whether naturally occurring human variants might disrupt SARM1 autoinhibition and potentially contribute to risk for neurodegenerative disease, we assayed the enzymatic activity of all 42 rare SARM1 alleles identified among 8507 amyotrophic lateral sclerosis (ALS) patients and 9671 controls. We then intrathecally injected mice with virus expressing SARM1 constructs to test the capacity of an ALS-associated constitutively active SARM1 variant to promote neurodegeneration in vivo.

RESULTS: Twelve out of 42 SARM1 missense variants or small in-frame deletions assayed exhibit constitutive …


Aav5 Delivery Of Crispr-Cas9 Supports Effective Genome Editing In Mouse Lung Airway, Shun-Qing Liang, Christopher J Walkey, Alexa E Martinez, Qin Su, Mary E Dickinson, Dan Wang, William R Lagor, Jason D Heaney, Guangping Gao, Wen Xue Jan 2022

Aav5 Delivery Of Crispr-Cas9 Supports Effective Genome Editing In Mouse Lung Airway, Shun-Qing Liang, Christopher J Walkey, Alexa E Martinez, Qin Su, Mary E Dickinson, Dan Wang, William R Lagor, Jason D Heaney, Guangping Gao, Wen Xue

Faculty, Staff and Students Publications

Genome editing in the lung has the potential to provide long-term expression of therapeutic protein to treat lung genetic diseases. Yet efficient delivery of CRISPR to the lung remains a challenge. The NIH Somatic Cell Genome Editing (SCGE) Consortium is developing safe and effective methods for genome editing in disease tissues. Methods developed by consortium members are independently validated by the SCGE small animal testing center to establish rigor and reproducibility. We have developed and validated a dual adeno-associated virus (AAV) CRISPR platform that supports effective editing of a lox-stop-lox-Tomato reporter in mouse lung airway. After intratracheal injection of the …


Sars-Cov-2 Spreads Through Cell-To-Cell Transmission, Cong Zeng, John P Evans, Tiffany King, Yi-Min Zheng, Eugene M Oltz, Sean P J Whelan, Linda J Saif, Mark E Peeples, Shan-Lu Liu Jan 2022

Sars-Cov-2 Spreads Through Cell-To-Cell Transmission, Cong Zeng, John P Evans, Tiffany King, Yi-Min Zheng, Eugene M Oltz, Sean P J Whelan, Linda J Saif, Mark E Peeples, Shan-Lu Liu

Open Access Publications

Severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) is a highly transmissible coronavirus responsible for the global COVID-19 pandemic. Herein, we provide evidence that SARS-CoV-2 spreads through cell-cell contact in cultures, mediated by the spike glycoprotein. SARS-CoV-2 spike is more efficient in facilitating cell-to-cell transmission than is SARS-CoV spike, which reflects, in part, their differential cell-cell fusion activity. Interestingly, treatment of cocultured cells with endosomal entry inhibitors impairs cell-to-cell transmission, implicating endosomal membrane fusion as an underlying mechanism. Compared with cell-free infection, cell-to-cell transmission of SARS-CoV-2 is refractory to inhibition by neutralizing antibody or convalescent sera of COVID-19 patients. While angiotensin-converting …


Transcranial Stimulation Of Alpha Oscillations Up-Regulates The Default Mode Network, Kevin J Clancy, Jeremy A Andrzejewski, Yuqi You, Jens T Rosenberg, Mingzhou Ding, Wen Li Jan 2022

Transcranial Stimulation Of Alpha Oscillations Up-Regulates The Default Mode Network, Kevin J Clancy, Jeremy A Andrzejewski, Yuqi You, Jens T Rosenberg, Mingzhou Ding, Wen Li

Faculty, Staff and Student Publications

The default mode network (DMN) is the most-prominent intrinsic connectivity network, serving as a key architecture of the brain's functional organization. Conversely, dysregulated DMN is characteristic of major neuropsychiatric disorders. However, the field still lacks mechanistic insights into the regulation of the DMN and effective interventions for DMN dysregulation. The current study approached this problem by manipulating neural synchrony, particularly alpha (8 to 12 Hz) oscillations, a dominant intrinsic oscillatory activity that has been increasingly associated with the DMN in both function and physiology. Using high-definition alpha-frequency transcranial alternating current stimulation (α-tACS) to stimulate the cortical source of alpha oscillations, …


Autophagosomes Fuse To Phagosomes And Facilitate The Degradation Of Apoptotic Cells In Caenorhabditis Elegans, Omar Peña-Ramos, Lucia Chiao, Xianghua Liu, Xiaomeng Yu, Tianyou Yao, Henry He, Zheng Zhou Jan 2022

Autophagosomes Fuse To Phagosomes And Facilitate The Degradation Of Apoptotic Cells In Caenorhabditis Elegans, Omar Peña-Ramos, Lucia Chiao, Xianghua Liu, Xiaomeng Yu, Tianyou Yao, Henry He, Zheng Zhou

Faculty, Staff and Students Publications

Autophagosomes are double-membrane intracellular vesicles that degrade protein aggregates, intracellular organelles, and other cellular components. During the development of the nematode Caenorhabditis elegans, many somatic and germ cells undergo apoptosis. These cells are engulfed and degraded by their neighboring cells. We discovered a novel role of autophagosomes in facilitating the degradation of apoptotic cells using a real-time imaging technique. Specifically, the double-membrane autophagosomes in engulfing cells are recruited to the surfaces of phagosomes containing apoptotic cells and subsequently fuse to phagosomes, allowing the inner vesicle to enter the phagosomal lumen. Mutants defective in the production of autophagosomes display significant …


Expanding The Landscape Of Amino Acid-Rich Antimicrobial Peptides: Definition, Deployment In Nature, Implications For Peptide Design And Therapeutic Potential, Aaron P. Decker, Abraham F. Mechesso, Guangshun Wang Jan 2022

Expanding The Landscape Of Amino Acid-Rich Antimicrobial Peptides: Definition, Deployment In Nature, Implications For Peptide Design And Therapeutic Potential, Aaron P. Decker, Abraham F. Mechesso, Guangshun Wang

Journal Articles: Pathology and Microbiology

Unlike the α-helical and β-sheet antimicrobial peptides (AMPs), our knowledge on amino acid-rich AMPs is limited. This article conducts a systematic study of rich AMPs (>25%) from different life kingdoms based on the Antimicrobial Peptide Database (APD) using the program R. Of 3425 peptides, 724 rich AMPs were identified. Rich AMPs are more common in animals and bacteria than in plants. In different animal classes, a unique set of rich AMPs is deployed. While histidine, proline, and arginine-rich AMPs are abundant in mammals, alanine, glycine, and leucine-rich AMPs are common in amphibians. Ten amino acids (Ala, Cys, Gly, His, …


Insect Cell Expression And Purification Of Recombinant Sars-Cov-2 Spike Proteins That Demonstrate Ace2 Binding, Lucas R. Struble, Audrey L. Smith, William E. Lutz, Gabrielle Grubbs, Satish Sagar, Kenneth W. Bayles, Prakash Radhakrishnan, Surender Khurana, Dalia El-Gamal, Gloria E. O. Borgstahl Jan 2022

Insect Cell Expression And Purification Of Recombinant Sars-Cov-2 Spike Proteins That Demonstrate Ace2 Binding, Lucas R. Struble, Audrey L. Smith, William E. Lutz, Gabrielle Grubbs, Satish Sagar, Kenneth W. Bayles, Prakash Radhakrishnan, Surender Khurana, Dalia El-Gamal, Gloria E. O. Borgstahl

Journal Articles: Pathology and Microbiology

The COVID-19 pandemic caused by SARS-CoV-2 infection has led to socio-economic shutdowns and the loss of over 5 million lives worldwide. There is a need for the identification of therapeutic targets to treat COVID-19. SARS-CoV-2 spike is a target of interest for the development of therapeutic targets. We developed a robust SARS-CoV-2 S spike expression and purification protocol from insect cells and studied four recombinant SARS-CoV-2 spike protein constructs based on the original SARS-CoV-2 sequence using a baculovirus expression system: a spike protein receptor-binding domain that includes the SD1 domain (RBD) coupled to a fluorescent tag (S-RBD-eGFP), spike ectodomain coupled …


Ifn-Γ Transforms The Transcriptomic Landscape And Triggers Myeloid Cell Hyperresponsiveness To Cause Lethal Lung Injury, Atul K. Verma, Michael Mckelvey, Md Bashir Uddin, Sunil Palani, Meng Niu, Christopher Bauer, Shengjun Shao, Keer Sun Jan 2022

Ifn-Γ Transforms The Transcriptomic Landscape And Triggers Myeloid Cell Hyperresponsiveness To Cause Lethal Lung Injury, Atul K. Verma, Michael Mckelvey, Md Bashir Uddin, Sunil Palani, Meng Niu, Christopher Bauer, Shengjun Shao, Keer Sun

Journal Articles: Pathology and Microbiology

Acute Respiratory Distress Syndrome (ARDS) is an inflammatory disease that is associated with high mortality but no specific treatment. Our understanding of initial events that trigger ARDS pathogenesis is limited. We have developed a mouse model of inflammatory lung injury by influenza and methicillin-resistant Staphylococcus aureus (MRSA) coinfection plus daily antibiotic therapy. Using this pneumonic ARDS model, here we show that IFN-γ receptor signaling drives inflammatory cytokine storm and lung tissue damage. By single-cell RNA sequencing (scRNA-seq) analysis, we demonstrate that IFN-γ signaling induces a transcriptional shift in airway immune cells, particularly by upregulating macrophage and monocyte expression of genes …


An Artifact In Intracellular Cytokine Staining For Studying T Cell Responses And Its Alleviation., Zheng Gong, Qing Li, Jiayuan Shi, Guangwen Ren Jan 2022

An Artifact In Intracellular Cytokine Staining For Studying T Cell Responses And Its Alleviation., Zheng Gong, Qing Li, Jiayuan Shi, Guangwen Ren

Faculty Research 2022

Intracellular cytokine staining (ICS) is a widely employed ex vivo method for quantitative determination of the activation status of immune cells, most often applied to T cells. ICS test samples are commonly prepared from animal or human tissues as unpurified cell mixtures, and cell-specific cytokine signals are subsequently discriminated by gating strategies using flow cytometry. Here, we show that when ICS samples contain Ly6G+ neutrophils, neutrophils are ex vivo activated by an ICS reagent - phorbol myristate acetate (PMA) - which leads to hydrogen peroxide (H2O2) release and death of cytokine-expressing T cells. This artifact …


The Th1/Tfh-Like Biased Responses Elicited By The Rasp-1 Innate Adjuvant Are Dependent On Trif And Type I Ifn Receptor Pathways., Parakkal Jovvian George, Radu Marches, Djamel Nehar-Belaid, Jacques Banchereau, Sara Lustigman Jan 2022

The Th1/Tfh-Like Biased Responses Elicited By The Rasp-1 Innate Adjuvant Are Dependent On Trif And Type I Ifn Receptor Pathways., Parakkal Jovvian George, Radu Marches, Djamel Nehar-Belaid, Jacques Banchereau, Sara Lustigman

Faculty Research 2022

No abstract provided.


Witch Nails (Krt90whnl): A Spontaneous Mouse Mutation Affecting Nail Growth And Development., John P Sundberg, Hannah Galantino-Homer, Heather Fairfield, Patricia F. Ward-Bailey, Belinda S. Harris, Melissa L. Berry, C Herbert Pratt, Nicholas E Gott, Lesley S Bechtold, Pauline R Kaplan, Blythe P Durbin-Johnson, David M Rocke, Robert H Rice Jan 2022

Witch Nails (Krt90whnl): A Spontaneous Mouse Mutation Affecting Nail Growth And Development., John P Sundberg, Hannah Galantino-Homer, Heather Fairfield, Patricia F. Ward-Bailey, Belinda S. Harris, Melissa L. Berry, C Herbert Pratt, Nicholas E Gott, Lesley S Bechtold, Pauline R Kaplan, Blythe P Durbin-Johnson, David M Rocke, Robert H Rice

Faculty Research 2022

Numerous single gene mutations identified in humans and mice result in nail deformities with many similarities between the species. A spontaneous, autosomal, recessive mutation called witch nails (whnl) is described here where the distal nail matrix and nail bed undergo degenerative changes resulting in formation of an abnormal nail plate causing mice to develop long, curved nails. This mutation arose spontaneously in a colony of MRL/MpJ-Faslpr/J at The Jackson Laboratory. Homozygous mutant mice are recognizable by 8 weeks of age by their long, curved nails. The whnl mutation, mapped on Chromosome 15, is due to a 7-bp insertion identified in …


Identification Of Gut Bacteria Such As Lactobacillus Johnsonii That Disseminate To Systemic Tissues Of Wild Type And Myd88-/- Mice, Sreeram Udayan, Panagiota Stamou, Fiona Crispie, Ana Hickey, Alexandria N Floyd, Chyi-Song Hsieh, Paul D Cotter, Orla O'Sullivan, Silvia Melgar, Paul W O'Toole, Rodney D Newberry, Valerio Rossini, Ken Nally Jan 2022

Identification Of Gut Bacteria Such As Lactobacillus Johnsonii That Disseminate To Systemic Tissues Of Wild Type And Myd88-/- Mice, Sreeram Udayan, Panagiota Stamou, Fiona Crispie, Ana Hickey, Alexandria N Floyd, Chyi-Song Hsieh, Paul D Cotter, Orla O'Sullivan, Silvia Melgar, Paul W O'Toole, Rodney D Newberry, Valerio Rossini, Ken Nally

Open Access Publications

In healthy hosts the gut microbiota is restricted to gut tissues by several barriers some of which require MyD88-dependent innate immune sensor pathways. Nevertheless, some gut taxa have been reported to disseminate to systemic tissues. However, the extent to which this normally occurs during homeostasis in healthy organisms is still unknown. In this study, we recovered viable gut bacteria from systemic tissues of healthy wild type (WT) and MyD88


Crispr-Krispr: A Method To Identify On-Target And Random Insertion Of Donor Dnas And Their Characterization In Knock-In Mice, Masayuki Tanaka, Keiko Yokoyama, Hideki Hayashi, Sanae Isaki, Kanae Kitatani, Ting Wang, Hisako Kawata, Hideyuki Matsuzawa, Channabasavaiah B. Gurumurthy, Hiromi Miura, Masato Ohtsuka Jan 2022

Crispr-Krispr: A Method To Identify On-Target And Random Insertion Of Donor Dnas And Their Characterization In Knock-In Mice, Masayuki Tanaka, Keiko Yokoyama, Hideki Hayashi, Sanae Isaki, Kanae Kitatani, Ting Wang, Hisako Kawata, Hideyuki Matsuzawa, Channabasavaiah B. Gurumurthy, Hiromi Miura, Masato Ohtsuka

Journal Articles: Pharmacology & Experimental Neuroscience

CRISPR tools can generate knockout and knock-in animal models easily, but the models can contain off-target genomic lesions or random insertions of donor DNAs. Simpler methods to identify off-target lesions and random insertions, using tail or earpiece DNA, are unavailable. We develop CRISPR-KRISPR (CRISPR-Knock-ins and Random Inserts Searching PRotocol), a method to identify both off-target lesions and random insertions. CRISPR-KRISPR uses as little as 3.4 μg of genomic DNA; thus, it can be easily incorporated as an additional step to genotype founder animals for further breeding.


Ecdysoneless Overexpression Drives Mammary Tumorigenesis Through Upregulation Of C-Myc And Glucose Metabolism, Bhopal C. Mohapatra, Sameer Mirza, Aditya Bele, Channabasavaiah B. Gurumurthy, Mohsin Raza, Irfana Saleem, Matthew D. Storck, Aniruddha Sarkar, Sai Sundeep Kollala, Surendra K. Shukla, Siddesh Southekal, Kay-Uwe Wagner, Fang Qiu, Subodh M. Lele, Mansour A. Alsaleem, Emad A. Rakha, Chittibabu Guda, Pankaj K. Singh, Robert D. Cardiff, Hamid Band, Vimla Band Jan 2022

Ecdysoneless Overexpression Drives Mammary Tumorigenesis Through Upregulation Of C-Myc And Glucose Metabolism, Bhopal C. Mohapatra, Sameer Mirza, Aditya Bele, Channabasavaiah B. Gurumurthy, Mohsin Raza, Irfana Saleem, Matthew D. Storck, Aniruddha Sarkar, Sai Sundeep Kollala, Surendra K. Shukla, Siddesh Southekal, Kay-Uwe Wagner, Fang Qiu, Subodh M. Lele, Mansour A. Alsaleem, Emad A. Rakha, Chittibabu Guda, Pankaj K. Singh, Robert D. Cardiff, Hamid Band, Vimla Band

Journal Articles: Pharmacology & Experimental Neuroscience

Ecdysoneless (ECD) protein is essential for embryogenesis, cell-cycle progression, and cellular stress mitigation with an emerging role in mRNA biogenesis. We have previously shown that ECD protein as well as its mRNA are overexpressed in breast cancer and ECD overexpression predicts shorter survival in patients with breast cancer. However, the genetic evidence for an oncogenic role of ECD has not been established. Here, we generated transgenic mice with mammary epithelium-targeted overexpression of an inducible human ECD transgene (ECDTg). Significantly, ECDTg mice develop mammary hyperplasia, preneoplastic lesions, and heterogeneous tumors with occasional lung metastasis. ECDTg tumors exhibit epithelial to mesenchymal transition …


Distinct Synaptic Vesicle Proteomic Signatures Associated With Pre- And Post-Natal Oxycodone-Exposure, Katherine E. Odegaard, Gabriel Gallegos, Sneh Koul, Victoria L. Schaal, Neetha N. Vellichirammal, Chittibabu Guda, Andrea P. Dutoit, Steven J. Lisco, Sowmya V. Yelamanchili, Gurudutt Pendyala Jan 2022

Distinct Synaptic Vesicle Proteomic Signatures Associated With Pre- And Post-Natal Oxycodone-Exposure, Katherine E. Odegaard, Gabriel Gallegos, Sneh Koul, Victoria L. Schaal, Neetha N. Vellichirammal, Chittibabu Guda, Andrea P. Dutoit, Steven J. Lisco, Sowmya V. Yelamanchili, Gurudutt Pendyala

Journal Articles: Anesthesiology

The current opioid crisis, which has ravaged all segments of society, continues to pose a rising public health concern. Importantly, dependency on prescription opioids such as oxycodone (oxy) during and after pregnancy can significantly impact the overall brain development of the exposed offspring, especially at the synapse. A significant knowledge gap that remains is identifying distinct synaptic signatures associated with these exposed offspring. Accordingly, the overall goal of this current study was to identify distinct synaptic vesicle (SV) proteins as signatures for offspring exposed to oxy in utero (IUO) and postnatally (PNO). Using a preclinical animal model that imitates oxycodone …


Differential Methylation Patterns In Lean And Obese Non-Alcoholic Steatohepatitis-Associated Hepatocellular Carcinoma, Emma Hymel, Kurt W. Fisher, Evi A. Farazi Jan 2022

Differential Methylation Patterns In Lean And Obese Non-Alcoholic Steatohepatitis-Associated Hepatocellular Carcinoma, Emma Hymel, Kurt W. Fisher, Evi A. Farazi

Journal Articles: Epidemiology

BACKGROUND: Nonalcoholic fatty liver disease affects about 24% of the world's population and may progress to nonalcoholic steatohepatitis (NASH), cirrhosis, and hepatocellular carcinoma (HCC). While more common in those that are obese, NASH-HCC can develop in lean individuals. The mechanisms by which HCC develops and the role of epigenetic changes in the context of obesity and normal weight are not well understood.

METHODS: In this study, we used previously generated mouse models of lean and obese HCC using a choline deficient/high trans-fat/fructose/cholesterol diet and a choline supplemented/high trans-fat/fructose/cholesterol diet, respectively, to evaluate methylation differences in HCC progression in lean versus …


Epidermal Growth Factor Receptor Inhibition Is Protective In Hyperoxia-Induced Lung Injury., Zachary M Harris, Ying Sun, John Joerns, Brian Clark, Buqu Hu, Asawari Korde, Lokesh Sharma, Hyeon Jun Shin, Edward P Manning, Lindsey Placek, Derya Unutmaz, Gail Stanley, Hyung Chun, Maor Sauler, Govindarajan Rajagopalan, Xuchen Zhang, Min-Jong Kang, Jonathan L Koff Jan 2022

Epidermal Growth Factor Receptor Inhibition Is Protective In Hyperoxia-Induced Lung Injury., Zachary M Harris, Ying Sun, John Joerns, Brian Clark, Buqu Hu, Asawari Korde, Lokesh Sharma, Hyeon Jun Shin, Edward P Manning, Lindsey Placek, Derya Unutmaz, Gail Stanley, Hyung Chun, Maor Sauler, Govindarajan Rajagopalan, Xuchen Zhang, Min-Jong Kang, Jonathan L Koff

Faculty Research 2022

AIMS: Studies have linked severe hyperoxia, or prolonged exposure to very high oxygen levels, with worse clinical outcomes. This study investigated the role of epidermal growth factor receptor (EGFR) in hyperoxia-induced lung injury at very high oxygen levels (>95%).

RESULTS: Effects of severe hyperoxia (100% oxygen) were studied in mice with genetically inhibited EGFR and wild-type littermates. Despite the established role of EGFR in lung repair, EGFR inhibition led to improved survival and reduced acute lung injury, which prompted an investigation into this protective mechanism. Endothelial EGFR genetic knockout did not confer protection. EGFR inhibition led to decreased levels …


Giardial Lipid Rafts Share Virulence Factors With Secreted Vesicles And Participate In Parasitic Infection In Mice, Brian I. Grajeda, Atasi De Chatterjee, Carmen M. Villalobos, Breanna C. Pence, Cameron C. Ellis, Vanessa Enriquez, Sourav Roy, Sukla Roychowdhury, Aaron K. Neumann, Igor C. Almeida, Steven E. Patterson, Siddhartha Das Jan 2022

Giardial Lipid Rafts Share Virulence Factors With Secreted Vesicles And Participate In Parasitic Infection In Mice, Brian I. Grajeda, Atasi De Chatterjee, Carmen M. Villalobos, Breanna C. Pence, Cameron C. Ellis, Vanessa Enriquez, Sourav Roy, Sukla Roychowdhury, Aaron K. Neumann, Igor C. Almeida, Steven E. Patterson, Siddhartha Das

Pathology Research and Scholarship

Giardia lamblia, a protozoan parasite, is a major cause of waterborne infection, worldwide. While the trophozoite form of this parasite induces pathological symptoms in the gut, the cyst form transmits the infection. Since Giardia is a noninvasive parasite, the actual mechanism by which it causes disease remains elusive. We have previously reported that Giardia assembles cholesterol and GM1 glycosphingolipid-enriched lipid rafts (LRs) that participate in encystation and cyst production. To further delineate the role of LRs in pathogenesis, we isolated LRs from Giardia and subjected them to proteomic analysis. Various cellular proteins including potential virulence factors-e.g., giardins, variant surface …


The Giant Axon Of The Squid: A Simple System For Axonal Transport Studies, Joseph A. Degiorgis, Marcus Jang, Elaine L. Bearer Jan 2022

The Giant Axon Of The Squid: A Simple System For Axonal Transport Studies, Joseph A. Degiorgis, Marcus Jang, Elaine L. Bearer

Pathology Research and Scholarship

The squid giant axon has a long history of being a superb experimental system in which to investigate a wide range of questions concerning intracellular transport. In this protocol we describe the method used for dissecting the axon to preserve its viability in vitro, and the technique for injecting exogenous materials into the living axon. Now that the squid genome is emerging, and the CRISPR/cas9 system has been successfully applied to knock-out squid genes, the giant axon will resume its place in the scientific pantheon of powerful experimental systems in which to address biological questions pertaining to all eukaryotes.


Dietary Isoflavones Alter Gut Microbiota And Lipopolysaccharide Biosynthesis To Reduce Inflammation, Sudeep Ghimire, Nicole M. Cady, Peter Lehman, Stephanie R. Peterson, Shailesh K. Shahi, Faraz Rashid, Shailendra Giri, Ashutosh K. Mangalam Jan 2022

Dietary Isoflavones Alter Gut Microbiota And Lipopolysaccharide Biosynthesis To Reduce Inflammation, Sudeep Ghimire, Nicole M. Cady, Peter Lehman, Stephanie R. Peterson, Shailesh K. Shahi, Faraz Rashid, Shailendra Giri, Ashutosh K. Mangalam

Neurology Articles

The etiopathogenesis of multiple sclerosis (MS) is strongly affected by environmental factors such as diet and the gut microbiota. An isoflavone-rich (ISO) diet was previously shown to reduce the severity of MS in the animal model experimental autoimmune encephalomyelitis (EAE). Translation of this concept to clinical trial where dietary isoflavones may be recommended for MS patients will require preliminary evidence that providing the isoflavone-rich diet to people with MS (PwMS) who lack phytoestrogen-metabolizing bacteria has beneficial effects. We have previously shown that the gut microbiota of PwMS resembles the gut microbiota of mice raised under a phytoestrogen-free (phyto-free) diet in …


The Role Of Action Potential Changes In Depolarization-Induced Failure Of Excitation Contraction Coupling In Mouse Skeletal Muscle, Xueyong Wang, Murad Nawaz, Chris Dupont, Jessica H. Myers, Steve R.A. Burke, Roger A. Bannister, Brent D. Foy, Andrew A. Voss, Mark M. Rich Jan 2022

The Role Of Action Potential Changes In Depolarization-Induced Failure Of Excitation Contraction Coupling In Mouse Skeletal Muscle, Xueyong Wang, Murad Nawaz, Chris Dupont, Jessica H. Myers, Steve R.A. Burke, Roger A. Bannister, Brent D. Foy, Andrew A. Voss, Mark M. Rich

Physics Faculty Publications

Excitation-contraction coupling (ECC) is the process by which electrical excitation of muscle is converted into force generation. Depolarization of skeletal muscle resting potential contributes to failure of ECC in diseases such as periodic paralysis, intensive care unit acquired weakness and possibly fatigue of muscle during vigorous exercise. When extracellular K+ is raised to depolarize the resting potential, failure of ECC occurs suddenly, over a narrow range of resting potentials. Simultaneous imaging of Ca2+ transients and recording of action potentials (APs) demonstrated failure to generate Ca2+ transients when APs peaked at potentials more negative than –30mV. An AP property that closely …