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Articles 2491 - 2520 of 4657
Full-Text Articles in Entire DC Network
Vip152 Is A Selective Cdk9 Inhibitor With Pre-Clinical In Vitro And In Vivo Efficacy In Chronic Lymphocytic Leukemia, Steven Sher, Ethan Whipp, Janek Walker, Pu Zhang, Larry Beaver, Katie Williams, Shelley Orwick, Janani Ravikrishnan, Brandi Walker, Elizabeth Perry, Charles Gregory, Matthew Purcell, Alexander Pan, Pearlly Yan, Lapo Alinari, Amy J Johnson, Melanie M Frigault, Joy M Greer, Ahmed Hamdy, Raquel Izumi, Xiaokui Mo, Deepa Sampath, Jennifer Woyach, James Blachly, John C Byrd, Rosa Lapalombella
Vip152 Is A Selective Cdk9 Inhibitor With Pre-Clinical In Vitro And In Vivo Efficacy In Chronic Lymphocytic Leukemia, Steven Sher, Ethan Whipp, Janek Walker, Pu Zhang, Larry Beaver, Katie Williams, Shelley Orwick, Janani Ravikrishnan, Brandi Walker, Elizabeth Perry, Charles Gregory, Matthew Purcell, Alexander Pan, Pearlly Yan, Lapo Alinari, Amy J Johnson, Melanie M Frigault, Joy M Greer, Ahmed Hamdy, Raquel Izumi, Xiaokui Mo, Deepa Sampath, Jennifer Woyach, James Blachly, John C Byrd, Rosa Lapalombella
Faculty, Staff and Student Publications
Chronic lymphocytic leukemia (CLL) is effectively treated with targeted therapies including Bruton tyrosine kinase inhibitors and BCL2 antagonists. When these become ineffective, treatment options are limited. Positive transcription elongation factor complex (P-TEFb), a heterodimeric protein complex composed of cyclin dependent kinase 9 (CDK9) and cyclin T1, functions to regulate short half-life transcripts by phosphorylation of RNA Polymerase II (POLII). These transcripts are frequently dysregulated in hematologic malignancies; however, therapies targeting inhibition of P-TEFb have not yet achieved approval for cancer treatment. VIP152 kinome profiling revealed CDK9 as the main enzyme inhibited at 100 nM, with over a 10-fold increase in …
Ampk Regulates Homeostasis Of Invasion And Viability In Trophoblasts By Redirecting Glucose Metabolism: Implications For Pre-Eclampsia, Ping Xu, Yangxi Zheng, Jiujiang Liao, Mingyu Hu, Yike Yang, Baozhen Zhang, Mark D Kilby, Huijia Fu, Yamin Liu, Fumei Zhang, Liling Xiong, Xiyao Liu, Huili Jin, Yue Wu, Jiayu Huang, Tingli Han, Li Wen, Rufei Gao, Yong Fu, Xiujun Fan, Hongbo Qi, Philip N Baker, Chao Tong
Ampk Regulates Homeostasis Of Invasion And Viability In Trophoblasts By Redirecting Glucose Metabolism: Implications For Pre-Eclampsia, Ping Xu, Yangxi Zheng, Jiujiang Liao, Mingyu Hu, Yike Yang, Baozhen Zhang, Mark D Kilby, Huijia Fu, Yamin Liu, Fumei Zhang, Liling Xiong, Xiyao Liu, Huili Jin, Yue Wu, Jiayu Huang, Tingli Han, Li Wen, Rufei Gao, Yong Fu, Xiujun Fan, Hongbo Qi, Philip N Baker, Chao Tong
Faculty, Staff and Student Publications
Pre-eclampsia (PE) is deemed an ischemia-induced metabolic disorder of the placenta due to defective invasion of trophoblasts during placentation; thus, the driving role of metabolism in PE pathogenesis is largely ignored. Since trophoblasts undergo substantial glycolysis, this study aimed to investigate its function and regulatory mechanism by AMPK in PE development. Metabolomics analysis of PE placentas was performed by gas chromatography-mass spectrometry (GC-MS). Trophoblast-specific AMPKα1-deficient mouse placentas were generated to assess morphology. A mouse PE model was established by Reduced Uterine Perfusion Pressure, and placental AMPK was modulated by nanoparticle-delivered A769662. Trophoblast glucose uptake was measured by 2-NBDG and 2-deoxy-d-[
Fibrinogen-Like Protein 2: Its Biological Function Across Cell Types And The Potential To Serve As An Immunotherapy Target For Brain Tumors, Sheng Zhang, Ganesh Rao, Amy Heimberger, Shulin Li
Fibrinogen-Like Protein 2: Its Biological Function Across Cell Types And The Potential To Serve As An Immunotherapy Target For Brain Tumors, Sheng Zhang, Ganesh Rao, Amy Heimberger, Shulin Li
Faculty, Staff and Student Publications
Brain tumors are among the 10 leading causes of cancer-related death and present unique treatment challenges due to their critical location, genetic heterogeneity, and the blood-brain barrier. Recent advances in targeted immunotherapy and immune checkpoint blocking therapy provide alternative therapeutic strategies for brain tumors. Fibrinogen-like protein 2 (FGL2), which induces transformation from low-grade glioma to high-grade glioblastoma, is a type II membrane protein that is highly expressed in both host immune cells and tumor cells. Studies have uncovered multiple forms of FGL2 proteins with a broad range of roles in inducing immune tolerance and avoiding immune surveillance in tumor cells. …
Pd-L1 Translocation To The Plasma Membrane Enables Tumor Immune Evasion Through Mib2 Ubiquitination, Xinfang Yu, Wei Li, Haidan Liu, Xu Wang, Cristian Coarfa, Chao Cheng, Xinlian Yu, Zhaoyang Zeng, Ya Cao, Ken H Young, Yong Li
Pd-L1 Translocation To The Plasma Membrane Enables Tumor Immune Evasion Through Mib2 Ubiquitination, Xinfang Yu, Wei Li, Haidan Liu, Xu Wang, Cristian Coarfa, Chao Cheng, Xinlian Yu, Zhaoyang Zeng, Ya Cao, Ken H Young, Yong Li
Faculty, Staff and Students Publications
Programmed death-ligand 1 (PD-L1), a critical immune checkpoint ligand, is a transmembrane protein synthesized in the endoplasmic reticulum of tumor cells and transported to the plasma membrane to interact with programmed death 1 (PD-1) expressed on T cell surface. This interaction delivers coinhibitory signals to T cells, thereby suppressing their function and allowing evasion of antitumor immunity. Most companion or complementary diagnostic devices for assessing PD-L1 expression levels in tumor cells used in the clinic or in clinical trials require membranous staining. However, the mechanism driving PD-L1 translocation to the plasma membrane after de novo synthesis is poorly understood. Herein, …
In Vivo Editing Of The Pan-Endothelium By Immunity Evading Simian Adenoviral Vector, Reka Lorincz, Aluet Borrego Alvarez, Christopher J Walkey, Samir A Mendonça, Zhi Hong Lu, Alexa E Martinez, Cecilia Ljungberg, Jason D Heaney, William R Lagor, David T Curiel
In Vivo Editing Of The Pan-Endothelium By Immunity Evading Simian Adenoviral Vector, Reka Lorincz, Aluet Borrego Alvarez, Christopher J Walkey, Samir A Mendonça, Zhi Hong Lu, Alexa E Martinez, Cecilia Ljungberg, Jason D Heaney, William R Lagor, David T Curiel
Faculty, Staff and Students Publications
Biological applications deriving from the clustered regularly interspaced short palindromic repeats (CRISPR)-Cas9 site-specific nuclease system continue to impact and accelerate gene therapy strategies. Safe and effective in vivo co-delivery of the CRISPR/Cas9 system to target somatic cells is essential in the clinical therapeutic context. Both non-viral and viral vector systems have been applied for this delivery matter. Despite elegant proof-of-principle studies, available vector technologies still face challenges that restrict the application of CRISPR/Cas9-facilitated gene therapy. Of note, the mandated co-delivery of the gene-editing components must be accomplished in the potential presence of pre-formed anti-vector immunity. Additionally, methods must be sought …
Reduction In Junctophilin 2 Expression In Cardiac Nodal Tissue Results In Intracellular Calcium-Driven Increase In Nodal Cell Automaticity, Andrew P Landstrom, Qixin Yang, Bo Sun, Robin M Perelli, Minu-Tshyeto Bidzimou, Zhushan Zhang, Yuriana Aguilar-Sanchez, Katherina M Alsina, Shuyi Cao, Julia O Reynolds, Tarah A Word, Niels M R Van Der Sangen, Quinn Wells, Prince J Kannankeril, Andreas Ludwig, Jeffrey J Kim, Xander H T Wehrens
Reduction In Junctophilin 2 Expression In Cardiac Nodal Tissue Results In Intracellular Calcium-Driven Increase In Nodal Cell Automaticity, Andrew P Landstrom, Qixin Yang, Bo Sun, Robin M Perelli, Minu-Tshyeto Bidzimou, Zhushan Zhang, Yuriana Aguilar-Sanchez, Katherina M Alsina, Shuyi Cao, Julia O Reynolds, Tarah A Word, Niels M R Van Der Sangen, Quinn Wells, Prince J Kannankeril, Andreas Ludwig, Jeffrey J Kim, Xander H T Wehrens
Faculty, Staff and Students Publications
Background: Spontaneously depolarizing nodal cells comprise the pacemaker of the heart. Intracellular calcium (Ca2+) plays a critical role in mediating nodal cell automaticity and understanding this so-called Ca2+ clock is critical to understanding nodal arrhythmias. We previously demonstrated a role for Jph2 (junctophilin 2) in regulating Ca2+-signaling through inhibition of RyR2 (ryanodine receptor 2) Ca2+ leak in cardiac myocytes; however, its role in pacemaker function and nodal arrhythmias remains unknown. We sought to determine whether nodal Jph2 expression silencing causes increased sinoatrial and atrioventricular nodal cell automaticity due to aberrant RyR2 Ca2+ leak.
Methods: A tamoxifen-inducible, nodal tissue-specific, knockdown mouse …
Sumoylation Regulates Functional Properties Of The Oocyte Transcription Factors Sohlh1 And Nobox, Bethany K Patton, Surabhi Madadi, Shawn M Briley, Avery A Ahmed, Stephanie A Pangas
Sumoylation Regulates Functional Properties Of The Oocyte Transcription Factors Sohlh1 And Nobox, Bethany K Patton, Surabhi Madadi, Shawn M Briley, Avery A Ahmed, Stephanie A Pangas
Faculty, Staff and Students Publications
SOHLH1 and NOBOX are oocyte-expressed transcription factors with critical roles in ovary development and fertility. In mice, Sohlh1 and Nobox are essential for fertility through their regulation of the oocyte transcriptional network and cross-talk to somatic cells. Sumoylation is a posttranslational modification that regulates transcription factor function, and we previously showed that mouse oocytes deficient for sumoylation had an altered transcriptional landscape that included significant changes in NOBOX target genes. Here, we show that mouse SOHLH1 is modified by SUMO2/3 at lysine 345 and mutation of this residue alters SOHLH1 nuclear to cytoplasmic localization. In NOBOX, we identify a non-consensus …
Genetic Variants In Arhgef6 Cause Congenital Anomalies Of The Kidneys And Urinary Tract In Humans, Mice, And Frogs, Verena Klämbt, Florian Buerger, Chunyan Wang, Thomas Naert, Karin Richter, Theresa Nauth, Anna-Carina Weiss, Tobias Sieckmann, Ethan Lai, Dervla M Connaughton, Steve Seltzsam, Nina Mann, Amar J Majmundar, Chen-Han W Wu, Ana C Onuchic-Whitford, Shirlee Shril, Sophia Schneider, Luca Schierbaum, Rufeng Dai, Mir Reza Bekheirnia, Marieke Joosten, Omer Shlomovitz, Asaf Vivante, Ehud Banne, Shrikant Mane, Richard P Lifton, Karin M Kirschner, Andreas Kispert, Georg Rosenberger, Klaus-Dieter Fischer, Soeren S Lienkamp, Mirjam M P Zegers, Friedhelm Hildebrandt
Genetic Variants In Arhgef6 Cause Congenital Anomalies Of The Kidneys And Urinary Tract In Humans, Mice, And Frogs, Verena Klämbt, Florian Buerger, Chunyan Wang, Thomas Naert, Karin Richter, Theresa Nauth, Anna-Carina Weiss, Tobias Sieckmann, Ethan Lai, Dervla M Connaughton, Steve Seltzsam, Nina Mann, Amar J Majmundar, Chen-Han W Wu, Ana C Onuchic-Whitford, Shirlee Shril, Sophia Schneider, Luca Schierbaum, Rufeng Dai, Mir Reza Bekheirnia, Marieke Joosten, Omer Shlomovitz, Asaf Vivante, Ehud Banne, Shrikant Mane, Richard P Lifton, Karin M Kirschner, Andreas Kispert, Georg Rosenberger, Klaus-Dieter Fischer, Soeren S Lienkamp, Mirjam M P Zegers, Friedhelm Hildebrandt
Faculty, Staff and Students Publications
Background: About 40 disease genes have been described to date for isolated CAKUT, the most common cause of childhood CKD. However, these genes account for only 20% of cases. ARHGEF6, a guanine nucleotide exchange factor that is implicated in biologic processes such as cell migration and focal adhesion, acts downstream of integrin-linked kinase (ILK) and parvin proteins. A genetic variant of ILK that causes murine renal agenesis abrogates the interaction of ILK with a murine focal adhesion protein encoded by Parva , leading to CAKUT in mice with this variant.
Methods: To identify novel genes that, when mutated, result in …
Dynamics Of Gametes And Embryos In The Oviduct: What Can In Vivo Imaging Reveal?, Shang Wang, Irina V Larina
Dynamics Of Gametes And Embryos In The Oviduct: What Can In Vivo Imaging Reveal?, Shang Wang, Irina V Larina
Faculty, Staff and Students Publications
IN BRIEF: In vivo imaging of gametes and embryos in the oviduct enables new studies of the native processes that lead to fertilization and pregnancy. This review article discusses recent advancements in the in vivo imaging methods and insights which contribute to understanding the oviductal function.
ABSTRACT: Understanding the physiological dynamics of gametes and embryos in the fallopian tube (oviduct) has significant implications for managing reproductive disorders and improving assisted reproductive technologies. Recent advancements in imaging of the mouse oviduct in vivo uncovered fascinating dynamics of gametes and embryos in their native states. These new imaging approaches and observations are …
Modeling Ewing Sarcoma Lung Metastasis, Atreyi Dasgupta, Lyazat Kurenbekova, Tajhal D Patel, Kimal Rajapakshe, Gargi Ghosal, Bikesh Nirala, Cristian Coarfa, Jason Yustein
Modeling Ewing Sarcoma Lung Metastasis, Atreyi Dasgupta, Lyazat Kurenbekova, Tajhal D Patel, Kimal Rajapakshe, Gargi Ghosal, Bikesh Nirala, Cristian Coarfa, Jason Yustein
Faculty, Staff and Students Publications
Ewing Sarcoma (EwS) is the second most common malignant bone tumor in adolescents and young adults. The single-most powerful predictor of outcome in EwS is presence of metastatic burden at the time of diagnosis. Patients with metastatic Ewing Sarcoma have an abysmal 5-year survival rate of 10–25%, which has not changed over the past 30–40 years. Thus, unraveling underlying mechanisms of EwS metastasis are imperative for developing effective therapeutic measures. Investigations towards this goal are limited by the lack of reliable genetically engineered mouse models and specialized metastatic models. Using two established cell lines, A673 and TC71, we generated lung …
Early Life Reprogramming-Based Treatment Promotes Longevity, Patrizia Pessina, Bruno Di Stefano
Early Life Reprogramming-Based Treatment Promotes Longevity, Patrizia Pessina, Bruno Di Stefano
Faculty, Staff and Students Publications
Short-term expression of Yamanaka factors early in life promotes epigenetic reprogramming and an increased healthy lifespan in a mouse model of accelerated aging.
Molecular Mechanisms Regulating Wound Repair: Evidence For Paracrine Signaling From Corneal Epithelial Cells To Fibroblasts And Immune Cells Following Transient Epithelial Cell Treatment With Mitomycin C, Sonali Pal-Ghosh, Beverly A Karpinski, Himani Datta Majumdar, Trisha Ghosh, Julie Thomasian, Stephen R Brooks, Andrew P Sawaya, Maria I Morasso, Kaitlin K Scholand, Cintia S De Paiva, Jeremias G Galletti, Mary Ann Stepp
Molecular Mechanisms Regulating Wound Repair: Evidence For Paracrine Signaling From Corneal Epithelial Cells To Fibroblasts And Immune Cells Following Transient Epithelial Cell Treatment With Mitomycin C, Sonali Pal-Ghosh, Beverly A Karpinski, Himani Datta Majumdar, Trisha Ghosh, Julie Thomasian, Stephen R Brooks, Andrew P Sawaya, Maria I Morasso, Kaitlin K Scholand, Cintia S De Paiva, Jeremias G Galletti, Mary Ann Stepp
Faculty, Staff and Students Publications
In this paper, we use RNAseq to identify senescence and phagocytosis as key factors to understanding how mitomyin C (MMC) stimulates regenerative wound repair. We use conditioned media (CM) from untreated (CMC) and MMC treated (CMM) human and mouse corneal epithelial cells to show that corneal epithelial cells indirectly exposed to MMC secrete elevated levels of immunomodulatory proteins including IL-1α and TGFβ1 compared to cells exposed to CMC. These factors increase epithelial and macrophage phagocytosis and promote ECM turnover. IL-1α supplementation can increase phagocytosis in control epithelial cells and attenuate TGFβ1 induced αSMA expression by corneal fibroblasts. Yet, we show …
Dissecting Cell Identity Via Network Inference And In Silico Gene Perturbation, Kenji Kamimoto, Blerta Stringa, Christy M Hoffmann, Kunal Jindal, Lilianna Solnica-Krezel, Samantha A Morris
Dissecting Cell Identity Via Network Inference And In Silico Gene Perturbation, Kenji Kamimoto, Blerta Stringa, Christy M Hoffmann, Kunal Jindal, Lilianna Solnica-Krezel, Samantha A Morris
2020-Current year OA Pubs
Cell identity is governed by the complex regulation of gene expression, represented as gene-regulatory networks
The Tetraspanin Transmembrane Protein Cd53 Mediates Dyslipidemia And Integrates Inflammatory And Metabolic Signaling In Hepatocytes, Cassandra B Higgins, Joshua A Adams, Matthew H Ward, Zev J Greenberg, Małgorzata Milewska, Jiameng Sun, Yiming Zhang, Luana Chiquetto Paracatu, Qian Dong, Samuel Ballentine, Weikai Li, Ilona Wandzik, Laura G Schuettpelz, Brian J Debosch
The Tetraspanin Transmembrane Protein Cd53 Mediates Dyslipidemia And Integrates Inflammatory And Metabolic Signaling In Hepatocytes, Cassandra B Higgins, Joshua A Adams, Matthew H Ward, Zev J Greenberg, Małgorzata Milewska, Jiameng Sun, Yiming Zhang, Luana Chiquetto Paracatu, Qian Dong, Samuel Ballentine, Weikai Li, Ilona Wandzik, Laura G Schuettpelz, Brian J Debosch
2020-Current year OA Pubs
Tetraspanins are transmembrane signaling and proinflammatory proteins. Prior work demonstrates that the tetraspanin, CD53/TSPAN25/MOX44, mediates B-cell development and lymphocyte migration to lymph nodes and is implicated in various inflammatory diseases. However, CD53 is also expressed in highly metabolic tissues, including adipose and liver; yet its function outside the lymphoid compartment is not defined. Here, we show that CD53 demarcates the nutritional and inflammatory status of hepatocytes. High-fat exposure and inflammatory stimuli induced CD53 in vivo in liver and isolated primary hepatocytes. In contrast, restricting hepatocyte glucose flux through hepatocyte glucose transporter 8 deletion or through trehalose treatment blocked CD53 induction …
Autophagy Requirements For Eye Lens Differentiation And Transparency, Lisa Brennan, M Joseph Costello, J Fielding Hejtmancik, A Sue Menko, S Amer Riazuddin, Alan Shiels, Marc Kantorow
Autophagy Requirements For Eye Lens Differentiation And Transparency, Lisa Brennan, M Joseph Costello, J Fielding Hejtmancik, A Sue Menko, S Amer Riazuddin, Alan Shiels, Marc Kantorow
2020-Current year OA Pubs
Recent evidence points to autophagy as an essential cellular requirement for achieving the mature structure, homeostasis, and transparency of the lens. Collective evidence from multiple laboratories using chick, mouse, primate, and human model systems provides evidence that classic autophagy structures, ranging from double-membrane autophagosomes to single-membrane autolysosomes, are found throughout the lens in both undifferentiated lens epithelial cells and maturing lens fiber cells. Recently, key autophagy signaling pathways have been identified to initiate critical steps in the lens differentiation program, including the elimination of organelles to form the core lens organelle-free zone. Other recent studies using ex vivo lens culture …
Aortic Stress Activates An Adaptive Program In Thoracic Aortic Smooth Muscle Cells That Maintains Aortic Strength And Protects Against Aneurysm And Dissection In Mice, Chen Zhang, Yanming Li, Abhijit Chakraborty, Yang Li, Kimberly R Rebello, Pingping Ren, Wei Luo, Lin Zhang, Hong S Lu, Lisa A Cassis, Joseph S Coselli, Alan Daugherty, Scott A Lemaire, Ying H Shen
Aortic Stress Activates An Adaptive Program In Thoracic Aortic Smooth Muscle Cells That Maintains Aortic Strength And Protects Against Aneurysm And Dissection In Mice, Chen Zhang, Yanming Li, Abhijit Chakraborty, Yang Li, Kimberly R Rebello, Pingping Ren, Wei Luo, Lin Zhang, Hong S Lu, Lisa A Cassis, Joseph S Coselli, Alan Daugherty, Scott A Lemaire, Ying H Shen
Faculty, Staff and Students Publications
BACKGROUND:
When aortic cells are under stress, such as increased hemodynamic pressure, they adapt to the environment by modifying their functions, allowing the aorta to maintain its strength. To understand the regulation of this adaptive response, we examined transcriptomic and epigenomic programs in aortic smooth muscle cells (SMCs) during the adaptive response to angiotensin II (AngII) infusion and determined its importance in protecting against aortic aneurysm and dissection (AAD).
METHODS:
We performed single-cell RNA sequencing (scRNA-seq) and single-cell sequencing assay for transposase-accessible chromatin (scATAC-seq) analyses in a mouse model of sporadic AAD induced by AngII infusion. We also examined the …
Magel2 Truncation Alters Select Behavioral And Physiological Outcomes In A Rat Model Of Schaaf-Yang Syndrome, Derek L Reznik, Mingxiao V Yang, Pedro Albelda De La Haza, Antrix Jain, Melanie Spanjaard, Susanne Theiss, Christian P Schaaf, Anna Malovannaya, Theresa V Strong, Surabi Veeraragavan, Rodney C Samaco
Magel2 Truncation Alters Select Behavioral And Physiological Outcomes In A Rat Model Of Schaaf-Yang Syndrome, Derek L Reznik, Mingxiao V Yang, Pedro Albelda De La Haza, Antrix Jain, Melanie Spanjaard, Susanne Theiss, Christian P Schaaf, Anna Malovannaya, Theresa V Strong, Surabi Veeraragavan, Rodney C Samaco
Faculty, Staff and Students Publications
Previous studies in mice have utilized Magel2 gene deletion models to examine the consequences of its absence. We report the generation, molecular validation and phenotypic characterization of a novel rat model with a truncating Magel2 mutation modeling variants associated with Schaaf-Yang syndrome-causing mutations. Within the hypothalamus, a brain region in which human MAGEL2 is paternally expressed, we demonstrated, at the level of transcript and peptide detection, that rat Magel2 exhibits a paternal, parent-of-origin effect. In evaluations of behavioral features across several domains, juvenile Magel2 mutant rats displayed alterations in anxiety-like behavior and sociability measures. Moreover, the analysis of peripheral organ …
The Roles Of Cyp1a2 And Cyp2d In Pharmacokinetic Profiles Of Serotonin And Norepinephrine Reuptake Inhibitor Duloxetine And Its Metabolites In Mice, Xuan Qin, Cen Xie, John M Hakenjos, Kevin R Mackenzie, Shelton R Boyd, Mercedes Barzi, Karl-Dimiter Bissig, Damian W Young, Feng Li
The Roles Of Cyp1a2 And Cyp2d In Pharmacokinetic Profiles Of Serotonin And Norepinephrine Reuptake Inhibitor Duloxetine And Its Metabolites In Mice, Xuan Qin, Cen Xie, John M Hakenjos, Kevin R Mackenzie, Shelton R Boyd, Mercedes Barzi, Karl-Dimiter Bissig, Damian W Young, Feng Li
Faculty, Staff and Students Publications
Duloxetine (DLX) is widely used to treat major depressive disorder. Little is known about the mechanistic basis for DLX-related adverse effects (e.g., liver injury). Human CYP1A2 and CYP2D6 mainly contributes to DLX metabolism, which was proposed to be involved in its adverse effects. Here, we investigated the roles of Cyp1a2 and Cyp2d on DLX pharmacokinetic profile and tissue distribution using a Cyp1a2 knockout (Cyp1a2-KO) mouse model together with a Cyp2d inhibitor (propranolol). Cyp1a2-KO has the few effects on the systematic exposure (area under the plasma concentration-time curve, AUC) and tissue disposition of DLX and its primary metabolites. Propranolol dramatically increased …
Brainwave: A Flexible Method For Noninvasive Stimulation Of Brain Rhythms Across Species, Matthew K. Attokaren, Nuri Jeong, Lou Blanpain, Abigail L. Paulson, Kristie M. Garza, Ben Borron, Michael Walelign, Jon Willie, Annabelle C. Singer
Brainwave: A Flexible Method For Noninvasive Stimulation Of Brain Rhythms Across Species, Matthew K. Attokaren, Nuri Jeong, Lou Blanpain, Abigail L. Paulson, Kristie M. Garza, Ben Borron, Michael Walelign, Jon Willie, Annabelle C. Singer
2020-Current year OA Pubs
Rhythmic neural activity, which coordinates brain regions and neurons to achieve multiple brain functions, is impaired in many diseases. Despite the therapeutic potential of driving brain rhythms, methods to noninvasively target deep brain regions are limited. Accordingly, we recently introduced a noninvasive stimulation approach using flickering lights and sounds ("flicker"). Flicker drives rhythmic activity in deep and superficial brain regions. Gamma flicker spurs immune function, clears pathogens, and rescues memory performance in mice with amyloid pathology. Here, we present substantial improvements to this approach that is flexible, user-friendly, and generalizable across multiple experimental settings and species. We present novel open-source …
In Vivo Editing Of The Pan-Endothelium By Immunity Evading Simian Adenoviral Vector, Reka Lorincz, Aluet Borrego Alvarez, Christopher J Walkey, Samir A Mendonça, Zhi Hong Lu, Alexa E Martinez, Cecilia Ljungberg, Jason D Heaney, William R Lagor, David T Curiel
In Vivo Editing Of The Pan-Endothelium By Immunity Evading Simian Adenoviral Vector, Reka Lorincz, Aluet Borrego Alvarez, Christopher J Walkey, Samir A Mendonça, Zhi Hong Lu, Alexa E Martinez, Cecilia Ljungberg, Jason D Heaney, William R Lagor, David T Curiel
2020-Current year OA Pubs
Biological applications deriving from the clustered regularly interspaced short palindromic repeats (CRISPR)-Cas9 site-specific nuclease system continue to impact and accelerate gene therapy strategies. Safe and effective in vivo co-delivery of the CRISPR/Cas9 system to target somatic cells is essential in the clinical therapeutic context. Both non-viral and viral vector systems have been applied for this delivery matter. Despite elegant proof-of-principle studies, available vector technologies still face challenges that restrict the application of CRISPR/Cas9-facilitated gene therapy. Of note, the mandated co-delivery of the gene-editing components must be accomplished in the potential presence of pre-formed anti-vector immunity. Additionally, methods must be sought …
Inhibition Of Colorectal Cancer Tumorigenesis By Ursolic Acid And Doxorubicin Is Mediated By Targeting The Akt Signaling Pathway And Activating The Hippo Signaling Pathway, Dan Hu, Ruo Yu Meng, Thi Van Nguyen, Ok Hee Chai, Byung Hyun Park, Ju-Seog Lee, Soo Mi Kim
Inhibition Of Colorectal Cancer Tumorigenesis By Ursolic Acid And Doxorubicin Is Mediated By Targeting The Akt Signaling Pathway And Activating The Hippo Signaling Pathway, Dan Hu, Ruo Yu Meng, Thi Van Nguyen, Ok Hee Chai, Byung Hyun Park, Ju-Seog Lee, Soo Mi Kim
Faculty, Staff and Student Publications
Colorectal cancer (CRC) is one of the deadliest malignant tumors worldwide and its prevalence is increasing in South Korea. The efficacy of combined treatment with natural product‑derived and chemotherapy agents including curcumin combined with 5‑fluorouracil, resveratrol combined with cisplatin and epigallocatechin‑3‑gallate (EGCG) combined with cisplatin in preventing cancer progression and killing cancer cells has emerged. The Akt and Hippo signaling pathways serve a key role in colorectal tumor growth; however, the exact role of the crosstalk between Akt and Hippo signaling pathways in CRC remains poorly elucidated. The combined effect of UA and DOX on the cell proliferation, apoptosis, migration …
Supplementing Glycine And N-Acetylcysteine (Glynac) In Older Adults Improves Glutathione Deficiency, Oxidative Stress, Mitochondrial Dysfunction, Inflammation, Physical Function, And Aging Hallmarks: A Randomized Clinical Trial, Premranjan Kumar, Chun Liu, James Suliburk, Jean W Hsu, Raja Muthupillai, Farook Jahoor, Charles G Minard, George E Taffet, Rajagopal V Sekhar
Supplementing Glycine And N-Acetylcysteine (Glynac) In Older Adults Improves Glutathione Deficiency, Oxidative Stress, Mitochondrial Dysfunction, Inflammation, Physical Function, And Aging Hallmarks: A Randomized Clinical Trial, Premranjan Kumar, Chun Liu, James Suliburk, Jean W Hsu, Raja Muthupillai, Farook Jahoor, Charles G Minard, George E Taffet, Rajagopal V Sekhar
Faculty, Staff and Students Publications
BACKGROUND: Elevated oxidative stress (OxS), mitochondrial dysfunction, and hallmarks of aging are identified as key contributors to aging, but improving/reversing these defects in older adults (OA) is challenging. In prior studies, we identified that deficiency of the intracellular antioxidant glutathione (GSH) could play a role and reported that supplementing GlyNAC (combination of glycine and N-acetylcysteine [NAC]) in aged mice improved GSH deficiency, OxS, mitochondrial fatty-acid oxidation (MFO), and insulin resistance (IR). To test whether GlyNAC supplementation in OA could improve GSH deficiency, OxS, mitochondrial dysfunction, IR, physical function, and aging hallmarks, we conducted a placebo-controlled randomized clinical trial.
METHODS: Twenty-four …
Engineered Protac-Cid Systems For Mammalian Inducible Gene Regulation, Dacheng Ma, Qichen Yuan, Fei Peng, Victor Paredes, Hongzhi Zeng, Emmanuel C Osikpa, Qiaochu Yang, Advaith Peddi, Anika Patel, Megan S Liu, Zheng Sun, Xue Gao
Engineered Protac-Cid Systems For Mammalian Inducible Gene Regulation, Dacheng Ma, Qichen Yuan, Fei Peng, Victor Paredes, Hongzhi Zeng, Emmanuel C Osikpa, Qiaochu Yang, Advaith Peddi, Anika Patel, Megan S Liu, Zheng Sun, Xue Gao
Faculty, Staff and Students Publications
Gene regulation via chemically induced dimerization (CID) is useful for biomedical research. However, the number, type, versatility, and in vivo applications of CID tools remain limited. Here, we demonstrate the development of proteolysis-targeting chimera-based scalable CID (PROTAC-CID) platforms by systematically engineering the available PROTAC systems for inducible gene regulation and gene editing. Further, we show orthogonal PROTAC-CIDs that can fine-tune gene expression at gradient levels or multiplex biological signals with different logic gating operations. Coupling the PROTAC-CID platform with genetic circuits, we achieve digitally inducible expression of DNA recombinases, base- and prime-editors for transient genome manipulation. Finally, we package a …
Tmem161b Modulates Radial Glial Scaffolding In Neocortical Development., Lu Wang, Caleb Heffner, Keng Ioi Vong, Chelsea Barrows, Yoo-Jin Ha, Sangmoon Lee, Pablo Lara-Gonzalez, Ishani Jhamb, Dennis Van Der Meer, Robert Loughnan, Nadine Parker, David Sievert, Swapnil Mittal, Mahmoud Y Issa, Ole A Andreassen, Anders Dale, William B Dobyns, Maha S Zaki, Stephen A Murray, Joseph G Gleeson
Tmem161b Modulates Radial Glial Scaffolding In Neocortical Development., Lu Wang, Caleb Heffner, Keng Ioi Vong, Chelsea Barrows, Yoo-Jin Ha, Sangmoon Lee, Pablo Lara-Gonzalez, Ishani Jhamb, Dennis Van Der Meer, Robert Loughnan, Nadine Parker, David Sievert, Swapnil Mittal, Mahmoud Y Issa, Ole A Andreassen, Anders Dale, William B Dobyns, Maha S Zaki, Stephen A Murray, Joseph G Gleeson
Faculty Research 2023
TMEM161B encodes an evolutionarily conserved widely expressed novel 8-pass trans- membrane protein of unknown function in human. Here we identify TMEM161B homozygous hypomorphic missense variants in our recessive polymicrogyria (PMG) cohort. Patients carrying TMEM161B mutations exhibit striking neocortical PMG and intellectual disability. Tmem161b knockout mice fail to develop midline hem- ispheric cleavage, whereas knock-in of patient mutations and patient-derived brain organoids show defects in apical cell polarity and radial glial scaffolding. We found that TMEM161B modulates actin filopodia, functioning upstream of the Rho-GTPase CDC42. Our data link TMEM161B with human PMG, likely regulating radial glia apical polarity during neocortical development.
Interfering With Lipid Metabolism Through Targeting Ces1 Sensitizes Hepatocellular Carcinoma For Chemotherapy, Gang Li, Xin Li, Iqbal Mahmud, Jazmin Ysaguirre, Baharan Fekry, Shuyue Wang, Bo Wei, Kristin L Eckel-Mahan, Philip L Lorenzi, Richard Lehner, Kai Sun
Interfering With Lipid Metabolism Through Targeting Ces1 Sensitizes Hepatocellular Carcinoma For Chemotherapy, Gang Li, Xin Li, Iqbal Mahmud, Jazmin Ysaguirre, Baharan Fekry, Shuyue Wang, Bo Wei, Kristin L Eckel-Mahan, Philip L Lorenzi, Richard Lehner, Kai Sun
Faculty, Staff and Student Publications
Hepatocellular carcinoma (HCC) is the most common lethal form of liver cancer. Apart from surgical removal and transplantation, other treatments have not yet been well established for patients with HCC. In this study, we found that carboxylesterase 1 (CES1) is expressed at various levels in HCC. We further revealed that blockage of CES1 by pharmacological and genetical approaches leads to altered lipid profiles that are directly linked to impaired mitochondrial function. Mechanistically, lipidomic analyses indicated that lipid signaling molecules, including polyunsaturated fatty acids (PUFAs), which activate PPARα/γ, were dramatically reduced upon CES1 inhibition. As a result, the expression of SCD, …
A Novel Defined Tlr3 Agonist As An Effective Vaccine Adjuvant, Kwang Hyun Ko, Seung Bin Cha, Seung-Hwan Lee, Hyun Shik Bae, Chul Soo Ham, Min-Gyu Lee, Dong-Ho Kim, Seung Hyun Han
A Novel Defined Tlr3 Agonist As An Effective Vaccine Adjuvant, Kwang Hyun Ko, Seung Bin Cha, Seung-Hwan Lee, Hyun Shik Bae, Chul Soo Ham, Min-Gyu Lee, Dong-Ho Kim, Seung Hyun Han
Faculty, Staff and Student Publications
Synthetic double-stranded RNA analogs recognized by Toll-like receptor 3 (TLR3) are an attractive adjuvant candidate for vaccines, especially against intracellular pathogens or tumors, because of their ability to enhance T cell and antibody responses. Although poly(I:C) is a representative dsRNA with potent adjuvanticity, its clinical application has been limited due to heterogeneous molecular size, inconsistent activity, poor stability, and toxicity. To overcome these limitations, we developed a novel dsRNA-based TLR3 agonist named NexaVant (NVT) by using PCR-coupled bidirectional in vitro transcription. Agarose gel electrophoresis and reverse phase-HPLC analysis demonstrated that NVT is a single 275-kDa homogeneous molecule. NVT appears to …
Cbx5 Loss Drives Egfr Inhibitor Resistance And Results In Therapeutically Actionable Vulnerabilities In Lung Cancer, Suresh Bugide, Yvonne J K Edwards, Romi Gupta, Michael R Green, Narendra Wajapeyee
Cbx5 Loss Drives Egfr Inhibitor Resistance And Results In Therapeutically Actionable Vulnerabilities In Lung Cancer, Suresh Bugide, Yvonne J K Edwards, Romi Gupta, Michael R Green, Narendra Wajapeyee
Faculty, Staff and Student Publications
Although epidermal growth factor receptor (EGFR) tyrosine kinase inhibitors (EGFRi) are approved for treating EGFR-mutant lung adenocarcinoma (LUAD), emergence of acquired resistance limits their clinical benefits. Several mechanisms for acquired resistance to EGFRi in LUAD have been identified; however, the molecular basis for this resistance remains unknown in ~30% of LUAD. Chromatin and DNA modifiers and their regulators play important roles in determining response to anticancer therapies. Therefore, to identify nongenetic mechanisms of EGFRi resistance in LUAD, we performed an epigenome-wide shRNA screen targeting 363 human epigenetic regulator genes. This screen identified loss of the transcriptional repressor chromobox homolog 5 …
Tmem161b Regulates Cerebral Cortical Gyration, Sonic Hedgehog Signaling, And Ciliary Structure In The Developing Central Nervous System, Shyam K Akula, Jack H Marciano, Youngshin Lim, David Exposito-Alonso, Norma K Hylton, Grace H Hwang, Jennifer E Neil, Nicole Dominado, Rosie K Bunton-Stasyshyn, Janet H T Song, Maya Talukdar, Aloisia Schmid, Lydia Teboul, Alisa Mo, Taehwan Shin, Benjamin Finander, Samantha G Beck, Rebecca C Yeh, Aoi Otani, Xuyu Qian, Ellen M Degennaro, Fowzan S Alkuraya, Sateesh Maddirevula, Gregory D Cascino, Caterina Giannini, Undiagnosed Diseases Network, Lindsay C Burrage, Jill A Rosenfield, Shamika Ketkar, Gary D Clark, Carlos Bacino, Richard A Lewis, Rosalind A Segal, J Fernando Bazan, Kelly A Smith, Jeffrey A Golden, Ginam Cho, Christopher A Walsh
Tmem161b Regulates Cerebral Cortical Gyration, Sonic Hedgehog Signaling, And Ciliary Structure In The Developing Central Nervous System, Shyam K Akula, Jack H Marciano, Youngshin Lim, David Exposito-Alonso, Norma K Hylton, Grace H Hwang, Jennifer E Neil, Nicole Dominado, Rosie K Bunton-Stasyshyn, Janet H T Song, Maya Talukdar, Aloisia Schmid, Lydia Teboul, Alisa Mo, Taehwan Shin, Benjamin Finander, Samantha G Beck, Rebecca C Yeh, Aoi Otani, Xuyu Qian, Ellen M Degennaro, Fowzan S Alkuraya, Sateesh Maddirevula, Gregory D Cascino, Caterina Giannini, Undiagnosed Diseases Network, Lindsay C Burrage, Jill A Rosenfield, Shamika Ketkar, Gary D Clark, Carlos Bacino, Richard A Lewis, Rosalind A Segal, J Fernando Bazan, Kelly A Smith, Jeffrey A Golden, Ginam Cho, Christopher A Walsh
Faculty, Staff and Students Publications
Sonic hedgehog signaling regulates processes of embryonic development across multiple tissues, yet factors regulating context-specific Shh signaling remain poorly understood. Exome sequencing of families with polymicrogyria (disordered cortical folding) revealed multiple individuals with biallelic deleterious variants in TMEM161B, which encodes a multi-pass transmembrane protein of unknown function. Tmem161b null mice demonstrated holoprosencephaly, craniofacial midline defects, eye defects, and spinal cord patterning changes consistent with impaired Shh signaling, but were without limb defects, suggesting a CNS-specific role of Tmem161b. Tmem161b depletion impaired the response to Smoothened activation in vitro and disrupted cortical histogenesis in vivo in both mouse and ferret …
The Nfib/Carm1 Partnership Is A Driver In Preclinical Models Of Small Cell Lung Cancer, Guozhen Gao, Simone Hausmann, Natasha M Flores, Ana Morales Benitez, Jianjun Shen, Xiaojie Yang, Maria D Person, Sitaram Gayatri, Donghang Cheng, Yue Lu, Bin Liu, Pawel K Mazur, Mark T Bedford
The Nfib/Carm1 Partnership Is A Driver In Preclinical Models Of Small Cell Lung Cancer, Guozhen Gao, Simone Hausmann, Natasha M Flores, Ana Morales Benitez, Jianjun Shen, Xiaojie Yang, Maria D Person, Sitaram Gayatri, Donghang Cheng, Yue Lu, Bin Liu, Pawel K Mazur, Mark T Bedford
Faculty, Staff and Student Publications
The coactivator associated arginine methyltransferase (CARM1) promotes transcription, as its name implies. It does so by modifying histones and chromatin bound proteins. We identified nuclear factor I B (NFIB) as a CARM1 substrate and show that this transcription factor utilizes CARM1 as a coactivator. Biochemical studies reveal that tripartite motif 29 (TRIM29) is an effector molecule for methylated NFIB. Importantly, NFIB harbors both oncogenic and metastatic activities, and is often overexpressed in small cell lung cancer (SCLC). Here, we explore the possibility that CARM1 methylation of NFIB is important for its transforming activity. Using a SCLC mouse model, we show …
Trisomy 21 Induces Pericentrosomal Crowding Delaying Primary Ciliogenesis And Mouse Cerebellar Development., Cayla E Jewett, Bailey L Mccurdy, Eileen T O'Toole, Alexander J Stemm-Wolf, Katherine S Given, Carrie H Lin, Valerie Olsen, Whitney Martin, Laura G Reinholdt, Joaquín M Espinosa, Kelly D Sullivan, Wendy B Macklin, Rytis Prekeris, Chad G Pearson
Trisomy 21 Induces Pericentrosomal Crowding Delaying Primary Ciliogenesis And Mouse Cerebellar Development., Cayla E Jewett, Bailey L Mccurdy, Eileen T O'Toole, Alexander J Stemm-Wolf, Katherine S Given, Carrie H Lin, Valerie Olsen, Whitney Martin, Laura G Reinholdt, Joaquín M Espinosa, Kelly D Sullivan, Wendy B Macklin, Rytis Prekeris, Chad G Pearson
Faculty Research 2023
Trisomy 21, the genetic cause of Down syndrome, disrupts primary cilia formation and function, in part through elevated Pericentrin, a centrosome protein encoded on chromosome 21. Yet how trisomy 21 and elevated Pericentrin disrupt cilia-related molecules and pathways, and the in vivo phenotypic relevance remain unclear. Utilizing ciliogenesis time course experiments combined with light microscopy and electron tomography, we reveal that chromosome 21 polyploidy elevates Pericentrin and microtubules away from the centrosome that corral MyosinVA and EHD1, delaying ciliary membrane delivery and mother centriole uncapping essential for ciliogenesis. If given enough time, trisomy 21 cells eventually ciliate, but these ciliated …