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Auriculocondylar Syndrome 2 Results From The Dominant-Negative Action Of Plcb4 Variants., Stanley M Kanai, Caleb Heffner, Timothy C Cox, Michael L Cunningham, Francisco A Perez, Aaron M Bauer, Philip Reigan, Cristan Carter, Stephen A Murray, David E Clouthier Apr 2022

Auriculocondylar Syndrome 2 Results From The Dominant-Negative Action Of Plcb4 Variants., Stanley M Kanai, Caleb Heffner, Timothy C Cox, Michael L Cunningham, Francisco A Perez, Aaron M Bauer, Philip Reigan, Cristan Carter, Stephen A Murray, David E Clouthier

Faculty Research 2022

Auriculocondylar syndrome 2 (ARCND2) is a rare autosomal dominant craniofacial malformation syndrome linked to multiple genetic variants in the coding sequence of phospholipase C β4 (PLCB4). PLCB4 is a direct signaling effector of the endothelin receptor type A (EDNRA)-Gq/11 pathway, which establishes the identity of neural crest cells (NCCs) that form lower jaw and middle ear structures. However, the functional consequences of PLCB4 variants on EDNRA signaling is not known. Here, we show, using multiple signaling reporter assays, that known PLCB4 variants resulting from missense mutations exert a dominant-negative interference over EDNRA signaling. In addition, using CRISPR/Cas9, we find that …


Disrupting The Myc-Tfeb Circuit Impairs Amino Acid Homeostasis And Provokes Metabolic Anergy, Mario R Fernandez, Franz X Schaub, Chunying Yang, Weimin Li, Seongseok Yun, Stephanie K Schaub, Frank C Dorsey, Min Liu, Meredith A Steeves, Andrea Ballabio, Alexandar Tzankov, Zhihua Chen, John M Koomen, Anders E Berglund, John L Cleveland Apr 2022

Disrupting The Myc-Tfeb Circuit Impairs Amino Acid Homeostasis And Provokes Metabolic Anergy, Mario R Fernandez, Franz X Schaub, Chunying Yang, Weimin Li, Seongseok Yun, Stephanie K Schaub, Frank C Dorsey, Min Liu, Meredith A Steeves, Andrea Ballabio, Alexandar Tzankov, Zhihua Chen, John M Koomen, Anders E Berglund, John L Cleveland

Duncan NRI Faculty and Staff Publications

MYC family oncoproteins are regulators of metabolic reprogramming that sustains cancer cell anabolism. Normal cells adapt to nutrient-limiting conditions by activating autophagy, which is required for amino acid (AA) homeostasis. Here we report that the autophagy pathway is suppressed by Myc in normal B cells, in premalignant and neoplastic B cells of Eμ-Myc transgenic mice, and in human MYC-driven Burkitt lymphoma. Myc suppresses autophagy by antagonizing the expression and function of transcription factor EB (TFEB), a master regulator of autophagy. Mechanisms that sustained AA pools in MYC-expressing B cells include coordinated induction of the proteasome and increases in AA …


Perturbed Hematopoiesis In Individuals With Germline Dnmt3a Overgrowth Tatton-Brown-Rahman Syndrome, Ayala Tovy, Carina Rosas, Amos S Gaikwad, Geraldo Medrano, Linda Zhang, Jaime M Reyes, Yung-Hsin Huang, Tastuhiko Arakawa, Kristen Kurtz, Shannon E Conneely, Anna G Guzman, Rogelio Aguilar, Anne Gao, Chun-Wei Chen, Jean J Kim, Melissa T Carter, Amaia Lasa-Aranzasti, Irene Valenzuela, Lionel Van Maldergem, Lorenzo Brunetti, M John Hicks, Andrea N Marcogliese, Margaret A Goodell, Rachel E Rau Apr 2022

Perturbed Hematopoiesis In Individuals With Germline Dnmt3a Overgrowth Tatton-Brown-Rahman Syndrome, Ayala Tovy, Carina Rosas, Amos S Gaikwad, Geraldo Medrano, Linda Zhang, Jaime M Reyes, Yung-Hsin Huang, Tastuhiko Arakawa, Kristen Kurtz, Shannon E Conneely, Anna G Guzman, Rogelio Aguilar, Anne Gao, Chun-Wei Chen, Jean J Kim, Melissa T Carter, Amaia Lasa-Aranzasti, Irene Valenzuela, Lionel Van Maldergem, Lorenzo Brunetti, M John Hicks, Andrea N Marcogliese, Margaret A Goodell, Rachel E Rau

Faculty, Staff and Students Publications

Tatton-Brown-Rahman syndrome (TBRS) is an overgrowth disorder caused by germline heterozygous mutations in the DNA methyltransferase DNMT3A. DNMT3A is a critical regulator of hematopoietic stem cell (HSC) differentiation and somatic DNMT3A mutations are frequent in hematologic malignancies and clonal hematopoiesis. Yet, the impact of constitutive DNMT3A mutation on hematopoiesis in TBRS is undefined. In order to establish how constitutive mutation of DNMT3A impacts blood development in TBRS we gathered clinical data and analyzed blood parameters in 18 individuals with TBRS. We also determined the distribution of major peripheral blood cell lineages by flow cytometric analyses. Our analyses revealed non-anemic macrocytosis, …


Foxo1 Represses Sprouty 2 And Sprouty 4 Expression To Promote Arterial Specification And Vascular Remodeling In The Mouse Yolk Sac, Nanbing Li-Villarreal, Rebecca Lee Yean Wong, Monica D Garcia, Ryan S Udan, Ross A Poché, Tara L Rasmussen, Alexander M Rhyner, Joshua D Wythe, Mary E Dickinson Apr 2022

Foxo1 Represses Sprouty 2 And Sprouty 4 Expression To Promote Arterial Specification And Vascular Remodeling In The Mouse Yolk Sac, Nanbing Li-Villarreal, Rebecca Lee Yean Wong, Monica D Garcia, Ryan S Udan, Ross A Poché, Tara L Rasmussen, Alexander M Rhyner, Joshua D Wythe, Mary E Dickinson

Faculty, Staff and Students Publications

Establishing a functional circulatory system is required for post-implantation development during murine embryogenesis. Previous studies in loss-of-function mouse models showed that FOXO1, a Forkhead family transcription factor, is required for yolk sac (YS) vascular remodeling and survival beyond embryonic day (E) 11. Here, we demonstrate that at E8.25, loss of Foxo1 in Tie2-cre expressing cells resulted in increased sprouty 2 (Spry2) and Spry4 expression, reduced arterial gene expression and reduced Kdr (also known as Vegfr2 and Flk1) transcripts without affecting overall endothelial cell identity, survival or proliferation. Using a Dll4-BAC-nlacZ reporter line, we found that one of the earliest expressed …


Pgc1Α/Β Expression Predicts Therapeutic Response To Oxidative Phosphorylation Inhibition In Ovarian Cancer, Carmen Ghilardi, Catarina Moreira-Barbosa, Laura Brunelli, Paola Ostano, Nicolò Panini, Monica Lupi, Alessia Anastasia, Fabio Fiordaliso, Monica Salio, Laura Formenti, Massimo Russo, Edoardo Arrigoni, Ferdinando Chiaradonna, Giovanna Chiorino, Giulio Draetta, Joseph R Marszalek, Christopher P Vellano, Roberta Pastorelli, Mariarosa Bani, Alessandra Decio, Raffaella Giavazzi Apr 2022

Pgc1Α/Β Expression Predicts Therapeutic Response To Oxidative Phosphorylation Inhibition In Ovarian Cancer, Carmen Ghilardi, Catarina Moreira-Barbosa, Laura Brunelli, Paola Ostano, Nicolò Panini, Monica Lupi, Alessia Anastasia, Fabio Fiordaliso, Monica Salio, Laura Formenti, Massimo Russo, Edoardo Arrigoni, Ferdinando Chiaradonna, Giovanna Chiorino, Giulio Draetta, Joseph R Marszalek, Christopher P Vellano, Roberta Pastorelli, Mariarosa Bani, Alessandra Decio, Raffaella Giavazzi

Faculty, Staff and Student Publications

Ovarian cancer is the deadliest gynecologic cancer, and novel therapeutic options are crucial to improve overall survival. Here we provide evidence that impairment of oxidative phosphorylation (OXPHOS) can help control ovarian cancer progression, and this benefit correlates with expression of the two mitochondrial master regulators PGC1α and PGC1β. In orthotopic patient-derived ovarian cancer xenografts (OC-PDX), concomitant high expression of PGC1α and PGC1β (PGC1α/β) fostered a unique transcriptional signature, leading to increased mitochondrial abundance, enhanced tricarboxylic acid cycling, and elevated cellular respiration that ultimately conferred vulnerability to OXPHOS inhibition. Treatment with the respiratory chain complex I inhibitor IACS-010759 caused mitochondrial swelling …


Camk2/Camkii Activates Mlkl In Short-Term Starvation To Facilitate Autophagic Flux, Qionghui Zhan, Jaepyo Jeon, Ying Li, Yu Huang, Jian Xiong, Qiaochu Wang, Tian-Le Xu, Yong Li, Fu-Hai Ji, Guangwei Du, Michael X Zhu Apr 2022

Camk2/Camkii Activates Mlkl In Short-Term Starvation To Facilitate Autophagic Flux, Qionghui Zhan, Jaepyo Jeon, Ying Li, Yu Huang, Jian Xiong, Qiaochu Wang, Tian-Le Xu, Yong Li, Fu-Hai Ji, Guangwei Du, Michael X Zhu

Faculty, Staff and Student Publications

MLKL (mixed lineage kinase domain like pseudokinase) is a well-known core component of necrosome that executes necroptotic cell death upon phosphorylation by RIPK3 (receptor interacting serine/threonine kinase 3). Recent studies also implicate a role of MLKL in endosomal trafficking, which is not always dependent on RIPK3. Using mouse Neuro-2a and L929 as well as human HEK293 and HT29 cells, we show here that MLKL is phosphorylated in response to serum and amino acid deprivation from the culture medium, in a manner that depends on CAMK2/CaMKII (calcium/calmodulin dependent protein kinase II) but not RIPK3. The starvation-induced increase in MLKL phosphorylation was …


Alterations Of The Mdm2 C-Terminus Differentially Impact Its Function In Vivo, Vinod Pant, Neeraj K Aryal, Shunbin Xiong, Gilda P Chau, Natalie W Fowlkes, Guillermina Lozano Apr 2022

Alterations Of The Mdm2 C-Terminus Differentially Impact Its Function In Vivo, Vinod Pant, Neeraj K Aryal, Shunbin Xiong, Gilda P Chau, Natalie W Fowlkes, Guillermina Lozano

Faculty, Staff and Student Publications

Murine double minute 2 (Mdm2) is the principal E3-ubiquitin ligase for p53 and contains a C2H2C4 type RING domain wherein the last cysteine residue is followed by an evolutionarily conserved 13 amino acid C-terminal tail. Previous studies have indicated that integrity of the C-terminal tail is critical for Mdm2 function. Recently, a mutation extending the MDM2 length by five amino acids was identified and associated with enhanced p53 response in fibroblasts and premature aging in a human patient. To investigate the importance of the conserved Mdm2 C-terminal length on p53 regulatory function in vivo, we engineered three novel mouse alleles …


Inhibiting Type I Arginine Methyltransferase Activity Promotes T Cell-Mediated Antitumor Immune Responses, Andrew Fedoriw, Leilei Shi, Shane O'Brien, Kimberly N Smitheman, Yunfei Wang, Jiakai Hou, Christian Sherk, Satyajit Rajapurkar, Jenny Laraio, Leila J Williams, Chunyu Xu, Guangchun Han, Qin Feng, Mark T Bedford, Linghua Wang, Olena Barbash, Ryan G Kruger, Patrick Hwu, Helai P Mohammad, Weiyi Peng Apr 2022

Inhibiting Type I Arginine Methyltransferase Activity Promotes T Cell-Mediated Antitumor Immune Responses, Andrew Fedoriw, Leilei Shi, Shane O'Brien, Kimberly N Smitheman, Yunfei Wang, Jiakai Hou, Christian Sherk, Satyajit Rajapurkar, Jenny Laraio, Leila J Williams, Chunyu Xu, Guangchun Han, Qin Feng, Mark T Bedford, Linghua Wang, Olena Barbash, Ryan G Kruger, Patrick Hwu, Helai P Mohammad, Weiyi Peng

Faculty, Staff and Student Publications

Protein arginine methyltransferases (PRMT) are a widely expressed class of enzymes responsible for catalyzing arginine methylation on numerous protein substrates. Among them, type I PRMTs are responsible for generating asymmetric dimethylarginine. By controlling multiple basic cellular processes, such as DNA damage responses, transcriptional regulation, and mRNA splicing, type I PRMTs contribute to cancer initiation and progression. A type I PRMT inhibitor, GSK3368715, has been developed and has entered clinical trials for solid and hematologic malignancies. Although type I PRMTs have been reported to play roles in modulating immune cell function, the immunologic role of tumor-intrinsic pathways controlled by type I …


Comparative Molecular Genomic Analyses Of A Spontaneous Rhesus Macaque Model Of Mismatch Repair-Deficient Colorectal Cancer, Nejla Ozirmak Lermi, Stanton B Gray, Charles M Bowen, Laura Reyes-Uribe, Beth K Dray, Nan Deng, R Alan Harris, Muthuswamy Raveendran, Fernando Benavides, Carolyn L Hodo, Melissa W Taggart, Karen Colbert Maresso, Krishna M Sinha, Jeffrey Rogers, Eduardo Vilar Apr 2022

Comparative Molecular Genomic Analyses Of A Spontaneous Rhesus Macaque Model Of Mismatch Repair-Deficient Colorectal Cancer, Nejla Ozirmak Lermi, Stanton B Gray, Charles M Bowen, Laura Reyes-Uribe, Beth K Dray, Nan Deng, R Alan Harris, Muthuswamy Raveendran, Fernando Benavides, Carolyn L Hodo, Melissa W Taggart, Karen Colbert Maresso, Krishna M Sinha, Jeffrey Rogers, Eduardo Vilar

Faculty, Staff and Student Publications

Colorectal cancer (CRC) remains the third most common cancer in the US with 15% of cases displaying Microsatellite Instability (MSI) secondary to Lynch Syndrome (LS) or somatic hypermethylation of the MLH1 promoter. A cohort of rhesus macaques from our institution developed spontaneous mismatch repair deficient (MMRd) CRC with a notable fraction harboring a pathogenic germline mutation in MLH1 (c.1029C


Effect Of Perfluorocarbon Composition On Activation Of Phase-Changing Ultrasound Contrast Agents, Trevor M Mitcham, Dmitry Nevozhay, Yunyun Chen, Linh D Nguyen, Gianmarco F Pinton, Stephen Y Lai, Konstantin V Sokolov, Richard R Bouchard Apr 2022

Effect Of Perfluorocarbon Composition On Activation Of Phase-Changing Ultrasound Contrast Agents, Trevor M Mitcham, Dmitry Nevozhay, Yunyun Chen, Linh D Nguyen, Gianmarco F Pinton, Stephen Y Lai, Konstantin V Sokolov, Richard R Bouchard

Faculty, Staff and Student Publications

BACKGROUND: While microbubble contrast agents (MCAs) are commonly used in ultrasound (US), they are inherently limited to vascular targets due to their size. Alternatively, phase-changing nanodroplet contrast agents (PNCAs) can be delivered as nanoscale agents (i.e., small enough to extravasate), but when exposed to a US field of sufficient mechanical index (MI), they convert to MCAs, which can be visualized with high contrast using nonlinear US.

PURPOSE: To investigate the effect of perfluorocarbon (PFC) core composition and presence of cholesterol in particle coatings on stability and image contrast generated from acoustic activation of PNCAs using high-frequency US suitable for clinical …


Notch-Induced Mdsc Recruitment After Ohsv Virotherapy In Cns Cancer Models Modulates Antitumor Immunotherapy, Yoshihiro Otani, Ji Young Yoo, Cole T Lewis, Samantha Chao, Jessica Swanner, Toshihiko Shimizu, Jin Muk Kang, Sara A Murphy, Kimberly Rivera-Caraballo, Bangxing Hong, Joseph C Glorioso, Hiroshi Nakashima, Sean E Lawler, Yeshavanth Banasavadi-Siddegowda, John D Heiss, Yuanqing Yan, Guangsheng Pei, Michael A Caligiuri, Zhongming Zhao, E Antonio Chiocca, Jianhua Yu, Balveen Kaur Apr 2022

Notch-Induced Mdsc Recruitment After Ohsv Virotherapy In Cns Cancer Models Modulates Antitumor Immunotherapy, Yoshihiro Otani, Ji Young Yoo, Cole T Lewis, Samantha Chao, Jessica Swanner, Toshihiko Shimizu, Jin Muk Kang, Sara A Murphy, Kimberly Rivera-Caraballo, Bangxing Hong, Joseph C Glorioso, Hiroshi Nakashima, Sean E Lawler, Yeshavanth Banasavadi-Siddegowda, John D Heiss, Yuanqing Yan, Guangsheng Pei, Michael A Caligiuri, Zhongming Zhao, E Antonio Chiocca, Jianhua Yu, Balveen Kaur

Faculty, Staff and Student Publications

PURPOSE: Oncolytic herpes simplex virus-1 (oHSV) infection of brain tumors activates NOTCH, however the consequences of NOTCH on oHSV-induced immunotherapy is largely unknown. Here we evaluated the impact of NOTCH blockade on virus-induced immunotherapy.

EXPERIMENTAL DESIGN: RNA sequencing (RNA-seq), TCGA data analysis, flow cytometry, Luminex- and ELISA-based assays, brain tumor animal models, and serum analysis of patients with recurrent glioblastoma (GBM) treated with oHSV was used to evaluate the effect of NOTCH signaling on virus-induced immunotherapy.

RESULTS: TCGA data analysis of patients with grade IV glioma and oHSV treatment of experimental brain tumors in mice showed that NOTCH signaling significantly …


Single-Cell Transcriptional Profiling Of Murine Conjunctival Immune Cells Reveals Distinct Populations Expressing Homeostatic And Regulatory Genes, Jehan Alam, Ghasem Yazdanpanah, Rinki Ratnapriya, Nicholas Borcherding, Cintia S De Paiva, Dequan Li, Stephen C Pflugfelder Apr 2022

Single-Cell Transcriptional Profiling Of Murine Conjunctival Immune Cells Reveals Distinct Populations Expressing Homeostatic And Regulatory Genes, Jehan Alam, Ghasem Yazdanpanah, Rinki Ratnapriya, Nicholas Borcherding, Cintia S De Paiva, Dequan Li, Stephen C Pflugfelder

Faculty, Staff and Students Publications

Immune cells in the exposed conjunctiva mucosa defend against environmental and microbial stresses. Expression profiling by single-cell RNA sequencing was performed to identify conjunctival immune cell populations expressing homeostatic and regulatory genes. Fourteen distinct clusters were identified, including myeloid cells (neutrophils, monocytes, macrophages), dendritic cells (DC), and lymphoid cells (B, T, γδT, ILC2, and NK) lineages. Novel neutrophil [lipocalin (Lcn2) high and low), and MHCIIlo macrophage (MP) clusters were identified. More than half of the cells map to myeloid and dendritic cell populations with differential expression profiles that include genes with homeostatic and regulatory functions: Serpinb2 (MHCIIlo macrophage), …


Intestinal Deletion Of 3-Hydroxy-3-Methylglutaryl-Coenzyme A Reductase Promotes Expansion Of The Resident Stem Cell Compartment, Alexandria M Doerfler, Jun Han, Kelsey E Jarrett, Li Tang, Antrix Jain, Alexander Saltzman, Marco De Giorgi, Marcel Chuecos, Ayrea E Hurley, Ang Li, Pauline Morand, Claudia Ayala, David R Goodlett, Anna Malovannaya, James F Martin, Thomas Q De Aguiar Vallim, Noah Shroyer, William R Lagor Apr 2022

Intestinal Deletion Of 3-Hydroxy-3-Methylglutaryl-Coenzyme A Reductase Promotes Expansion Of The Resident Stem Cell Compartment, Alexandria M Doerfler, Jun Han, Kelsey E Jarrett, Li Tang, Antrix Jain, Alexander Saltzman, Marco De Giorgi, Marcel Chuecos, Ayrea E Hurley, Ang Li, Pauline Morand, Claudia Ayala, David R Goodlett, Anna Malovannaya, James F Martin, Thomas Q De Aguiar Vallim, Noah Shroyer, William R Lagor

Faculty, Staff and Students Publications

BACKGROUND: The intestine occupies the critical interface between cholesterol absorption and excretion. Surprisingly little is known about the role of de novo cholesterol synthesis in this organ, and its relationship to whole body cholesterol homeostasis. Here, we investigate the physiological importance of this pathway through genetic deletion of the rate-limiting enzyme.

METHODS: Mice lacking 3-hydroxy-3-methylglutaryl-coenzyme A reductase (Hmgcr) in intestinal villus and crypt epithelial cells were generated using a Villin-Cre transgene. Plasma lipids, intestinal morphology, mevalonate pathway metabolites, and gene expression were analyzed.

RESULTS: Mice with intestine-specific loss of Hmgcr were markedly smaller at birth, but gain …


The Role Of Palmitoleic Acid In Regulating Hepatic Gluconeogenesis Through Sirt3 In Obese Mice, Xin Guo, Xiaofan Jiang, Keyun Chen, Qijian Liang, Shixiu Zhang, Juan Zheng, Xiaomin Ma, Hongmei Jiang, Hao Wu, Qiang Tong Apr 2022

The Role Of Palmitoleic Acid In Regulating Hepatic Gluconeogenesis Through Sirt3 In Obese Mice, Xin Guo, Xiaofan Jiang, Keyun Chen, Qijian Liang, Shixiu Zhang, Juan Zheng, Xiaomin Ma, Hongmei Jiang, Hao Wu, Qiang Tong

Faculty, Staff and Students Publications

Hepatic gluconeogenesis is a crucial process to maintain glucose level during starvation. However, unabated glucose production in diabetic patients is a major contributor to hyperglycemia. Palmitoleic acid is a monounsaturated fatty acid (16:1n7) that is available from dietary sources. Palmitoleic acid exhibits health beneficial effects on diabetes, insulin resistance, inflammation, and metabolic syndrome. However, the mechanism by which palmitoleate reduces blood glucose is still unclear. SIRT3 is a key metabolism-regulating NAD+-dependent protein deacetylase. It is known that fasting elevates the expression of SIRT3 in the liver and it regulates many aspects of liver’s response to nutrient deprivation, such as fatty …


Deglutarylation Of Glutaryl-Coa Dehydrogenase By Deacylating Enzyme Sirt5 Promotes Lysine Oxidation In Mice, Dhaval P Bhatt, C Allie Mills, Kristin A Anderson, Bárbara J Henriques, Tânia G Lucas, Sara Francisco, Juan Liu, Olga R Ilkayeva, Alexander E Adams, Shreyas R Kulkarni, Donald S Backos, Michael B Major, Paul A Grimsrud, Cláudio M Gomes, Matthew D Hirschey Apr 2022

Deglutarylation Of Glutaryl-Coa Dehydrogenase By Deacylating Enzyme Sirt5 Promotes Lysine Oxidation In Mice, Dhaval P Bhatt, C Allie Mills, Kristin A Anderson, Bárbara J Henriques, Tânia G Lucas, Sara Francisco, Juan Liu, Olga R Ilkayeva, Alexander E Adams, Shreyas R Kulkarni, Donald S Backos, Michael B Major, Paul A Grimsrud, Cláudio M Gomes, Matthew D Hirschey

2020-Current year OA Pubs

A wide range of protein acyl modifications has been identified on enzymes across various metabolic processes; however, the impact of these modifications remains poorly understood. Protein glutarylation is a recently identified modification that can be nonenzymatically driven by glutaryl-CoA. In mammalian systems, this unique metabolite is only produced in the lysine and tryptophan oxidative pathways. To better understand the biology of protein glutarylation, we studied the relationship between enzymes within the lysine/tryptophan catabolic pathways, protein glutarylation, and regulation by the deglutarylating enzyme sirtuin 5 (SIRT5). Here, we identify glutarylation on the lysine oxidation pathway enzyme glutaryl-CoA dehydrogenase (GCDH) and show …


Parent-Of-Origin Effects Propagate Through Networks To Shape Metabolic Traits, Juan F Macias-Velasco, Celine L St Pierre, Jessica P Wayhart, Li Yin, Larry Spears, Mario A Miranda, Caryn Carson, Katsuhiko Funai, James M Cheverud, Clay F Semenkovich, Heather A Lawson Mar 2022

Parent-Of-Origin Effects Propagate Through Networks To Shape Metabolic Traits, Juan F Macias-Velasco, Celine L St Pierre, Jessica P Wayhart, Li Yin, Larry Spears, Mario A Miranda, Caryn Carson, Katsuhiko Funai, James M Cheverud, Clay F Semenkovich, Heather A Lawson

2020-Current year OA Pubs

Parent-of-origin effects are unexpectedly common in complex traits, including metabolic and neurological traits. Parent-of-origin effects can be modified by the environment, but the architecture of these gene-by-environmental effects on phenotypes remains to be unraveled. Previously, quantitative trait loci (QTL) showing context-specific parent-of-origin effects on metabolic traits were mapped in the F


Efficient Targeted Transgenesis Of Large Donor Dna Into Multiple Mouse Genetic Backgrounds Using Bacteriophage Bxb1 Integrase., Benjamin E. Low, Vishnu Hosur, Simon Lesbirel, Michael V. Wiles Mar 2022

Efficient Targeted Transgenesis Of Large Donor Dna Into Multiple Mouse Genetic Backgrounds Using Bacteriophage Bxb1 Integrase., Benjamin E. Low, Vishnu Hosur, Simon Lesbirel, Michael V. Wiles

Faculty Research 2022

The development of mouse models of human disease and synthetic biology research by targeted transgenesis of large DNA constructs represent a significant genetic engineering hurdle. We developed an efficient, precise, single-copy integration of large transgenes directly into zygotes using multiple mouse genetic backgrounds. We used in vivo Bxb1 mediated recombinase-mediated cassette exchange (RMCE) with a transgene "landing pad" composed of dual heterologous Bxb1 attachment (att) sites in cis, within the Gt(ROSA)26Sor safe harbor locus. RMCE of donor was achieved by microinjection of vector DNA carrying cognate attachment sites flanking the donor transgene with Bxb1-integrase mRNA. This approach achieves perfect vector-free …


Differential Function And Maturation Of Human Stem Cell-Derived Islets After Transplantation, Kristina G Maxwell, Michelle H Kim, Sarah E Gale, Jeffrey R Millman Mar 2022

Differential Function And Maturation Of Human Stem Cell-Derived Islets After Transplantation, Kristina G Maxwell, Michelle H Kim, Sarah E Gale, Jeffrey R Millman

2020-Current year OA Pubs

Insulin-producing stem cell-derived islets (SC-islets) provide a virtually unlimited cell source for diabetes cell replacement therapy. While SC-islets are less functional when first differentiated in vitro compared to isolated cadaveric islets, transplantation into mice has been shown to increase their maturation. To understand the effects of transplantation on maturation and function of SC-islets, we examined the effects of cell dose, transplantation strategy, and diabetic state in immunocompromised mice. Transplantation of 2 and 5, but not 0.75 million SC-islet cells underneath the kidney capsule successfully reversed diabetes in mice with pre-existing diabetes. SQ and intramuscular injections failed to reverse diabetes at …


Oleic Acid Is An Endogenous Ligand Of Tlx/Nr2e1 That Triggers Hippocampal Neurogenesis, Prasanna Kandel, Fatih Semerci, Rachana Mishra, William Choi, Aleksandar Bajic, Dodge Baluya, Lihua Ma, Kevin Chen, Austin C Cao, Tipwarin Phongmekhin, Nick Matinyan, Alba Jiménez-Panizo, Srinivas Chamakuri, Idris O Raji, Lyra Chang, Pablo Fuentes-Prior, Kevin R Mackenzie, Caroline L Benn, Eva Estébanez-Perpiñá, Koen Venken, David D Moore, Damian W Young, Mirjana Maletic-Savatic Mar 2022

Oleic Acid Is An Endogenous Ligand Of Tlx/Nr2e1 That Triggers Hippocampal Neurogenesis, Prasanna Kandel, Fatih Semerci, Rachana Mishra, William Choi, Aleksandar Bajic, Dodge Baluya, Lihua Ma, Kevin Chen, Austin C Cao, Tipwarin Phongmekhin, Nick Matinyan, Alba Jiménez-Panizo, Srinivas Chamakuri, Idris O Raji, Lyra Chang, Pablo Fuentes-Prior, Kevin R Mackenzie, Caroline L Benn, Eva Estébanez-Perpiñá, Koen Venken, David D Moore, Damian W Young, Mirjana Maletic-Savatic

Faculty, Staff and Students Publications

Neural stem cells, the source of newborn neurons in the adult hippocampus, are intimately involved in learning and memory, mood, and stress response. Despite considerable progress in understanding the biology of neural stem cells and neurogenesis, regulating the neural stem cell population precisely has remained elusive because we have lacked the specific targets to stimulate their proliferation and neurogenesis. The orphan nuclear receptor TLX/NR2E1 governs neural stem and progenitor cell self-renewal and proliferation, but the precise mechanism by which it accomplishes this is not well understood because its endogenous ligand is not known. Here, we identify oleic acid (18:1ω9 monounsaturated …


Wwox Binding To The Murine Brca1-Brct Domain Regulates Timing Of Brip1 And Ctip Phospho-Protein Interactions With This Domain At Dna Double-Strand Breaks, And Repair Pathway Choice, Dongju Park, Mehdi Gharghabi, Colleen R Reczek, Rebecca Plow, Charles Yungvirt, C Marcelo Aldaz, Kay Huebner Mar 2022

Wwox Binding To The Murine Brca1-Brct Domain Regulates Timing Of Brip1 And Ctip Phospho-Protein Interactions With This Domain At Dna Double-Strand Breaks, And Repair Pathway Choice, Dongju Park, Mehdi Gharghabi, Colleen R Reczek, Rebecca Plow, Charles Yungvirt, C Marcelo Aldaz, Kay Huebner

Faculty, Staff and Student Publications

Wwox-deficient human cells show elevated homologous recombination, leading to resistance to killing by double-strand break-inducing agents. Human Wwox binds to the Brca1 981-PPLF-984 Wwox-binding motif, likely blocking the pChk2 phosphorylation site at Brca1-S988. This phosphorylation site is conserved across mammalian species; the PPLF motif is conserved in primates but not in rodents. We now show that murine Wwox does not bind Brca1 near the conserved mouse Brca1 phospho-S971 site, leaving it open for Chk2 phosphorylation and Brca1 activation. Instead, murine Wwox binds to Brca1 through its BRCT domain, where pAbraxas, pBrip1, and pCtIP, of the A, B, and C binding …


Cross-Omics Analysis Of Fenugreek Supplementation Reveals Beneficial Effects Are Caused By Gut Microbiome Changes Not Mammalian Host Physiology, Katarina A. Jones, Allison J. Richard, J Michael Salbaum, Susan Newman Phd, Rn, Crrn, Faan, Richard Carmouche, Sara Webb, Annadora J. Bruce-Keller, Jacqueline M. Stephens, Shawn R. Campagna Mar 2022

Cross-Omics Analysis Of Fenugreek Supplementation Reveals Beneficial Effects Are Caused By Gut Microbiome Changes Not Mammalian Host Physiology, Katarina A. Jones, Allison J. Richard, J Michael Salbaum, Susan Newman Phd, Rn, Crrn, Faan, Richard Carmouche, Sara Webb, Annadora J. Bruce-Keller, Jacqueline M. Stephens, Shawn R. Campagna

Publications

Herbal remedies are increasing in popularity as treatments for metabolic conditions such as obesity and Type 2 Diabetes. One potential therapeutic option is fenugreek seeds (Trigonella foenum-graecum), which have been used for treating high cholesterol and Type 2 diabetes. A proposed mechanism for these benefits is through alterations in the microbiome, which impact mammalian host metabolic function. This study used untargeted metabolomics to investigate the fenugreek-induced alterations in the intestinal, liver, and serum profiles of mice fed either a 60% high-fat or low-fat control diet each with or without fenugreek supplementation (2% w/w) for 14 weeks. Metagenomic analyses of intestinal …


Cross-Omics Analysis Of Fenugreek Supplementation Reveals Beneficial Effects Are Caused By Gut Microbiome Changes Not Mammalian Host Physiology, Katarina A. Jones, Allison J. Richard, J Michael Salbaum, Susan Newman Phd, Rn, Crrn, Faan, Richard Carmouche, Sara Webb, Annadora J. Bruce-Keller, Jacqueline M. Stephens, Shawn R. Campagna Mar 2022

Cross-Omics Analysis Of Fenugreek Supplementation Reveals Beneficial Effects Are Caused By Gut Microbiome Changes Not Mammalian Host Physiology, Katarina A. Jones, Allison J. Richard, J Michael Salbaum, Susan Newman Phd, Rn, Crrn, Faan, Richard Carmouche, Sara Webb, Annadora J. Bruce-Keller, Jacqueline M. Stephens, Shawn R. Campagna

Publications

Herbal remedies are increasing in popularity as treatments for metabolic conditions such as obesity and Type 2 Diabetes. One potential therapeutic option is fenugreek seeds (Trigonella foenum-graecum), which have been used for treating high cholesterol and Type 2 diabetes. A proposed mechanism for these benefits is through alterations in the microbiome, which impact mammalian host metabolic function. This study used untargeted metabolomics to investigate the fenugreek-induced alterations in the intestinal, liver, and serum profiles of mice fed either a 60% high-fat or low-fat control diet each with or without fenugreek supplementation (2% w/w) for 14 weeks. Metagenomic analyses of intestinal …


Uncontrolled Mitochondrial Calcium Uptake Underlies The Pathogenesis Of Neurodegeneration In Micu1-Deficient Mice And Patients, Raghavendra Singh, Adam Bartok, Melanie Paillard, Ashley L. Tyburski, Melanie B Elliott, György Hajnóczky Mar 2022

Uncontrolled Mitochondrial Calcium Uptake Underlies The Pathogenesis Of Neurodegeneration In Micu1-Deficient Mice And Patients, Raghavendra Singh, Adam Bartok, Melanie Paillard, Ashley L. Tyburski, Melanie B Elliott, György Hajnóczky

Department of Pathology, Anatomy, and Cell Biology Faculty Papers

Dysregulation of mitochondrial Ca2+ homeostasis has been linked to neurodegenerative diseases. Mitochondrial Ca2+ uptake is mediated via the calcium uniporter complex that is primarily regulated by MICU1, a Ca2+-sensing gatekeeper. Recently, human patients with MICU1 loss-of-function mutations were diagnosed with neuromuscular and cognitive impairments. While studies in patient-derived cells revealed altered mitochondrial calcium signaling, the neuronal pathogenesis was difficult to study. To fill this void, we created a neuron-specific MICU1-KO mouse model. These animals show progressive, abnormal motor and cognitive phenotypes likely caused by the degeneration of motor neurons in the spinal cord and the cortex. We found increased susceptibility …


Adherence Enables Neisseria Gonorrhoeae To Overcome Zinc Limitation Imposed By Nutritional Immunity Proteins, Jocelyn C Ray, Asya Smirnov, Stavros A Maurakis, Simone A Harrison, Eugene Ke, Walter J Chazin, Cynthia Nau Cornelissen, Alison K Criss Mar 2022

Adherence Enables Neisseria Gonorrhoeae To Overcome Zinc Limitation Imposed By Nutritional Immunity Proteins, Jocelyn C Ray, Asya Smirnov, Stavros A Maurakis, Simone A Harrison, Eugene Ke, Walter J Chazin, Cynthia Nau Cornelissen, Alison K Criss

Open Access Publications

Neisseria gonorrhoeae (Gc) must overcome the limitation of metals such as zinc to colonize mucosal surfaces in its obligate human host. While the zinc-binding nutritional immunity proteins calprotectin (S100A8/A9) and psoriasin (S100A7) are abundant in human cervicovaginal lavage fluid, Gc possesses TonB-dependent transporters TdfH and TdfJ that bind and extract zinc from the human version of these proteins, respectively. Here we investigated the contribution of zinc acquisition to Gc infection of epithelial cells of the female genital tract. We found that TdfH and TdfJ were dispensable for survival of strain FA1090 Gc that was associated with Ect1 human immortalized epithelial …


Transcriptional Control Of Retinal Ganglion Cell Death After Axonal Injury., Stephanie B Syc-Mazurek, Hongtian Stanley Yang, Olivia J Marola, Gareth R Howell, Richard T Libby Mar 2022

Transcriptional Control Of Retinal Ganglion Cell Death After Axonal Injury., Stephanie B Syc-Mazurek, Hongtian Stanley Yang, Olivia J Marola, Gareth R Howell, Richard T Libby

Faculty Research 2022

Injury to the axons of retinal ganglion cells (RGCs) is a key pathological event in glaucomatous neurodegeneration. The transcription factors JUN (the target of the c-Jun N-terminal kinases, JNKs) and DDIT3/CHOP (a mediator of the endoplasmic reticulum stress response) have been shown to control the majority of proapoptotic signaling after mechanical axonal injury in RGCs and in other models of neurodegeneration. The downstream transcriptional networks controlled by JUN and DDIT3, which are critical for RGC death, however, are not well defined. To determine these networks, RNA was isolated from the retinas of wild-type mice and mice deficient in Jun, Ddit3, …


Adult Mouse Fibroblasts Retain Organ-Specific Transcriptomic Identity., Elvira Forte, Mirana Ramialison, Hieu T Nim, Madison Mara, Jacky Y Li, Rachel Cohn, Sandra Daigle, Sarah Boyd, Edouard G Stanley, Andrew G Elefanty, J Travis Hinson, Mauro W Costa, Nadia Rosenthal, Milena B Furtado Mar 2022

Adult Mouse Fibroblasts Retain Organ-Specific Transcriptomic Identity., Elvira Forte, Mirana Ramialison, Hieu T Nim, Madison Mara, Jacky Y Li, Rachel Cohn, Sandra Daigle, Sarah Boyd, Edouard G Stanley, Andrew G Elefanty, J Travis Hinson, Mauro W Costa, Nadia Rosenthal, Milena B Furtado

Faculty Research 2022

Organ fibroblasts are essential components of homeostatic and diseased tissues. They participate in sculpting the extracellular matrix, sensing the microenvironment, and communicating with other resident cells. Recent studies have revealed transcriptomic heterogeneity among fibroblasts within and between organs. To dissect the basis of interorgan heterogeneity, we compare the gene expression of murine fibroblasts from different tissues (tail, skin, lung, liver, heart, kidney, and gonads) and show that they display distinct positional and organ-specific transcriptome signatures that reflect their embryonic origins. We demonstrate that expression of genes typically attributed to the surrounding parenchyma by fibroblasts is established in embryonic development and …


Functional Replacement Of Myostatin With Gdf-11 In The Germline Of Mice., Se-Jin Lee, Adam Lehar, Renata Rydzik, Daniel W Youngstrom, Shalender Bhasin, Yewei Liu, Emily L Germain-Lee Mar 2022

Functional Replacement Of Myostatin With Gdf-11 In The Germline Of Mice., Se-Jin Lee, Adam Lehar, Renata Rydzik, Daniel W Youngstrom, Shalender Bhasin, Yewei Liu, Emily L Germain-Lee

Faculty Research 2022

BACKGROUND: Myostatin (MSTN) is a transforming growth factor-ß superfamily member that acts as a major regulator of skeletal muscle mass. GDF-11, which is highly related to MSTN, plays multiple roles during embryonic development, including regulating development of the axial skeleton, kidneys, nervous system, and pancreas. As MSTN and GDF-11 share a high degree of amino acid sequence identity, behave virtually identically in cell culture assays, and utilize similar regulatory and signaling components, a critical question is whether their distinct biological functions result from inherent differences in their abilities to interact with specific regulatory and signaling components or whether their distinct …


Discovery And Preclinical Pharmacology Of Ine963, A Potent And Fast-Acting Blood-Stage Antimalarial With A High Barrier To Resistance And Potential For Single-Dose Cures In Uncomplicated Malaria., Benjamin R. Taft, Fumiaki Yokokawa, Tom Kirrane, Anne-Catherine Mata, Richard Huang, Nicole Blaquiere, Grace Waldron, Bin Zou, Oliver Simon, Subramanyam Vankadara, Wai Ling Chan, Mei Ding, Sandra Sim, Judith Straimer, Armand Guiguemde, Suresh B Lakshminarayana, Jay Prakash Jain, Christopher Bodenreider, Christopher Thompson, Christian Lanshoeft, Wei Shu, Eric Fang, Jafri Qumber, Katherine Chan, Luying Pei, Yen-Liang Chen, Hanna Schulz, Jessie Lim, Siti Nurdiana Abas, Xiaoman Ang, Yugang Liu, Iñigo Angulo-Barturen, María Belén Jiménez-Díaz, Glaxosmithkline Gamo, Benigno Crespo-Fernandez, Philip J. Rosenthal, Roland A. Cooper, Patrick Tumwebaze, Anna Caroline Campos Aguiar, Brice Campo, Simon Campbell, Jürgen Wagner, Thierry T Diagana, Christopher Sarko Mar 2022

Discovery And Preclinical Pharmacology Of Ine963, A Potent And Fast-Acting Blood-Stage Antimalarial With A High Barrier To Resistance And Potential For Single-Dose Cures In Uncomplicated Malaria., Benjamin R. Taft, Fumiaki Yokokawa, Tom Kirrane, Anne-Catherine Mata, Richard Huang, Nicole Blaquiere, Grace Waldron, Bin Zou, Oliver Simon, Subramanyam Vankadara, Wai Ling Chan, Mei Ding, Sandra Sim, Judith Straimer, Armand Guiguemde, Suresh B Lakshminarayana, Jay Prakash Jain, Christopher Bodenreider, Christopher Thompson, Christian Lanshoeft, Wei Shu, Eric Fang, Jafri Qumber, Katherine Chan, Luying Pei, Yen-Liang Chen, Hanna Schulz, Jessie Lim, Siti Nurdiana Abas, Xiaoman Ang, Yugang Liu, Iñigo Angulo-Barturen, María Belén Jiménez-Díaz, Glaxosmithkline Gamo, Benigno Crespo-Fernandez, Philip J. Rosenthal, Roland A. Cooper, Patrick Tumwebaze, Anna Caroline Campos Aguiar, Brice Campo, Simon Campbell, Jürgen Wagner, Thierry T Diagana, Christopher Sarko

Natural Sciences and Mathematics | Faculty Scholarship

A series of 5-aryl-2-amino-imidazothiadiazole (ITD) derivatives were identified by a phenotype-based high-throughput screening using a blood stage Plasmodium falciparum (Pf) growth inhibition assay. A lead optimization program focused on improving antiplasmodium potency, selectivity against human kinases, and absorption, distribution, metabolism, excretion, and toxicity properties and extended pharmacological profiles culminated in the identification of INE963 (1), which demonstrates potent cellular activity against Pf 3D7 (EC50 = 0.006 μM) and achieves "artemisinin-like" kill kinetics in vitro with a parasite clearance time of/kg is fully curative in the Pf-humanized severe combined immunodeficient mouse model. INE963 (1) also exhibits a high barrier to resistance …


Defining The Mammalian Coactivation Of Hepatic 12-H Clock And Lipid Metabolism, Huan Meng, Naomi M Gonzales, Sung Yun Jung, Yue Lu, Nagireddy Putluri, Bokai Zhu, Clifford C Dacso, David M Lonard, Bert W O'Malley Mar 2022

Defining The Mammalian Coactivation Of Hepatic 12-H Clock And Lipid Metabolism, Huan Meng, Naomi M Gonzales, Sung Yun Jung, Yue Lu, Nagireddy Putluri, Bokai Zhu, Clifford C Dacso, David M Lonard, Bert W O'Malley

Faculty, Staff and Students Publications

The 12-h clock coordinates lipid homeostasis, energy metabolism, and stress rhythms via the transcriptional regulator XBP1. However, the biochemical and physiological bases for integrated control of the 12-h clock and diverse metabolic pathways remain unclear. Here, we show that steroid receptor coactivator SRC-3 coactivates XBP1 transcription and regulates hepatic 12-h cistrome and gene rhythmicity. Mice lacking SRC-3 show abnormal 12-h rhythms in hepatic transcription, metabolic functions, systemic energetics, and rate-limiting lipid metabolic processes, including triglyceride, phospholipid, and cardiolipin pathways. Notably, 12-h clock coactivation is not only preserved, with its cistromic activation priming ahead of the zeitgeber cue of light, but …


Glynac (Glycine And N-Acetylcysteine) Supplementation In Mice Increases Length Of Life By Correcting Glutathione Deficiency, Oxidative Stress, Mitochondrial Dysfunction, Abnormalities In Mitophagy And Nutrient Sensing, And Genomic Damage, Premranjan Kumar, Ob W Osahon, Rajagopal V Sekhar Mar 2022

Glynac (Glycine And N-Acetylcysteine) Supplementation In Mice Increases Length Of Life By Correcting Glutathione Deficiency, Oxidative Stress, Mitochondrial Dysfunction, Abnormalities In Mitophagy And Nutrient Sensing, And Genomic Damage, Premranjan Kumar, Ob W Osahon, Rajagopal V Sekhar

Faculty, Staff and Students Publications

Determinants of length of life are not well understood, and therefore increasing lifespan is a challenge. Cardinal theories of aging suggest that oxidative stress (OxS) and mitochondrial dysfunction contribute to the aging process, but it is unclear if they could also impact lifespan. Glutathione (GSH), the most abundant intracellular antioxidant, protects cells from OxS and is necessary for maintaining mitochondrial health, but GSH levels decline with aging. Based on published human studies where we found that supplementing glycine and N-acetylcysteine (GlyNAC) improved/corrected GSH deficiency, OxS and mitochondrial dysfunction, we hypothesized that GlyNAC supplementation could increase longevity. We tested our hypothesis …