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Articles 841 - 870 of 6287
Full-Text Articles in Entire DC Network
Dichotomous Roles Of Acbd3 In Nsclc Growth And Metastasis, Xiaochao Tan, Chao Wu, Priyam Banerjee, Shike Wang, Derrick L Cardin, Yuting Xu, Chad J Creighton, William K Russell
Dichotomous Roles Of Acbd3 In Nsclc Growth And Metastasis, Xiaochao Tan, Chao Wu, Priyam Banerjee, Shike Wang, Derrick L Cardin, Yuting Xu, Chad J Creighton, William K Russell
Faculty, Staff and Students Publications
Lung cancer continues to be the leading cause of cancer-related deaths globally. Unraveling the regulators behind lung cancer growth and its metastatic spread, along with understanding the underlying mechanisms, is crucial for developing novel and effective therapeutic strategies. While much research has focused on identifying potential oncogenes or tumor suppressors, the roles of certain genes can vary depending on the context and may even exhibit contradictory effects. In this study, we demonstrate that acyl-CoA binding domain containing 3 (ACBD3), a Golgi resident protein, promotes primary lung cancer growth by recruiting phosphatidylinositol (PI)-4-kinase IIIβ (PI4KB) to the Golgi, thereby enhancing oncogenic …
Microbial Biosensor For Sensing And Treatment Of Intestinal Inflammation, Duolong Zhu, Jeffrey Galley, Jason Pizzini, Elena Musteata, Martin V Douglas, Walter J Chazin, Eric P Skaar, Jeffrey J Tabor, Robert A Britton
Microbial Biosensor For Sensing And Treatment Of Intestinal Inflammation, Duolong Zhu, Jeffrey Galley, Jason Pizzini, Elena Musteata, Martin V Douglas, Walter J Chazin, Eric P Skaar, Jeffrey J Tabor, Robert A Britton
Faculty, Staff and Students Publications
Synthetic biology has enabled the development of biosensors to detect intestinal inflammation, yet few target the clinically validated biomarker of intestinal inflammation calprotectin with both diagnostic and therapeutic capabilities. Here, an optimized calprotectin biosensor is presented that leverages a zinc uptake regulator (Zur) controlled promoter coupled with a memory circuit to detect and record intestinal inflammation in vivo. The level of biosensor activation strongly correlates with calprotectin levels in the colon of two independent mouse models of colitis. Coupling of the biosensor with the production of the anti-inflammatory cytokine IL10 allowed for the resolution of chemically induced colitis, demonstrating the …
Inhibition Of The Gsk3Β/Nav16 Complex Suppresses Early-Stage Alzheimer’S Hyperexcitability, Timothy John Baumgartner, Manuel Silva-Pérez, Zahra Haghighijoo, Nolan Michael Dvorak, Aditya Kumar Singh, Nana Aboadwe Goode, Jully Singh, Berenice Gutierrez Grebenkova, Mate Marosi, Jessica Di Re, Leandra Koff, Wissarut Wijitrmektong, Manu Bala, Hanyue Liao, Marijn Lijffijt, Adam Thomas Szafran, Michael James Bolt, Michael A Mancini, Gregory D Cuny, Diana Shu-Lian Chow, Agenor Limon, Jeannie Chin, Fernanda Laezza
Inhibition Of The Gsk3Β/Nav16 Complex Suppresses Early-Stage Alzheimer’S Hyperexcitability, Timothy John Baumgartner, Manuel Silva-Pérez, Zahra Haghighijoo, Nolan Michael Dvorak, Aditya Kumar Singh, Nana Aboadwe Goode, Jully Singh, Berenice Gutierrez Grebenkova, Mate Marosi, Jessica Di Re, Leandra Koff, Wissarut Wijitrmektong, Manu Bala, Hanyue Liao, Marijn Lijffijt, Adam Thomas Szafran, Michael James Bolt, Michael A Mancini, Gregory D Cuny, Diana Shu-Lian Chow, Agenor Limon, Jeannie Chin, Fernanda Laezza
Faculty, Staff and Students Publications
Introduction: Network hyperexcitability (NH) is observed in patients with early-stage Alzheimer's disease (AD), emerging decades before cognitive decline. A key molecular determinant of NH is voltage-gated Na+ channel 1.6 (Nav1.6), which mediates action potential firing in CA1 hippocampal neurons. Ameliorating NH through inhibition of the glycogen-synthase kinase 3β (GSK3β/Nav1.6 complex may provide immediate benefits to cognition and memory and slow AD progression.
Methods: Hight-throughput virtual screening and multiple in vitro biological assays were utilized to identify compound 1063. Patch-clamp electrophysiology and electroencephalogram recordings were utilized to functionally assess 1063 in models of AD neuropathology.
Results: Building on previous studies identifying …
A Hypomorphic Model Of Cps1 Deficiency For Investigating The Effects Of Hyperammonemia On The Developing Nervous System, Stuti Bakshi, Taryn Diep, Brandon J Willis, Rachel Reyes, Grace F Wu, Georgios Makris, Martin Poms, Isabel Day, Qin Sun, Irina Zhuravka, Lindsay Lueptow, Michelle Tang, Gareth A Cromie, Aimée M Dudley, Johannes Häberle, Gerald S Lipshutz
A Hypomorphic Model Of Cps1 Deficiency For Investigating The Effects Of Hyperammonemia On The Developing Nervous System, Stuti Bakshi, Taryn Diep, Brandon J Willis, Rachel Reyes, Grace F Wu, Georgios Makris, Martin Poms, Isabel Day, Qin Sun, Irina Zhuravka, Lindsay Lueptow, Michelle Tang, Gareth A Cromie, Aimée M Dudley, Johannes Häberle, Gerald S Lipshutz
Faculty, Staff and Students Publications
Carbamoyl phosphate synthetase 1 (CPS1) deficiency is a rare metabolic disorder that, in neonatal onset, is typically characterized by severe life-threatening and neurologically injuring hyperammonemic episodes with high unmet patient need. Patients that retain limited enzyme activity may present later in life with less severe hyperammonemia. CPS1 drives the first step in the urea cycle, the pathway terrestrial mammals utilize to metabolize nitrogen. In order to probe the effect of hyperammonemia on the developing nervous system and explore new therapies, a murine Cps1 exon 3-4 mutant was previously generated. However, these mice die within 24 h of birth, limiting study …
Glioblastoma-Instructed Astrocytes Suppress Tumour-Specific T Cell Immunity, Camilo Faust Akl, Brian M Andersen, Zhaorong Li, Federico Giovannoni, Martin Diebold, Liliana M Sanmarco, Michael Kilian, Luca Fehrenbacher, Florian Pernin, Joseph M Rone, Hong-Gyun Lee, Gavin Piester, Jessica E Kenison, Joon-Hyuk Lee, Tomer Illouz, Carolina M Polonio, Léna Srun, Jazmin Martinez, Elizabeth N Chung, Anton Schüle, Agustin Plasencia, Lucinda Li, Kylynne Ferrara, Mercedes Lewandrowski, Craig A Strathdee, Lorena Lerner, Christophe Quéva, Iain C Clark, Benjamin Deneen, Judy Lieberman, David H Sherr, Jack P Antel, Michael A Wheeler, Keith L Ligon, E Antonio Chiocca, Marco Prinz, David A Reardon, Francisco J Quintana
Glioblastoma-Instructed Astrocytes Suppress Tumour-Specific T Cell Immunity, Camilo Faust Akl, Brian M Andersen, Zhaorong Li, Federico Giovannoni, Martin Diebold, Liliana M Sanmarco, Michael Kilian, Luca Fehrenbacher, Florian Pernin, Joseph M Rone, Hong-Gyun Lee, Gavin Piester, Jessica E Kenison, Joon-Hyuk Lee, Tomer Illouz, Carolina M Polonio, Léna Srun, Jazmin Martinez, Elizabeth N Chung, Anton Schüle, Agustin Plasencia, Lucinda Li, Kylynne Ferrara, Mercedes Lewandrowski, Craig A Strathdee, Lorena Lerner, Christophe Quéva, Iain C Clark, Benjamin Deneen, Judy Lieberman, David H Sherr, Jack P Antel, Michael A Wheeler, Keith L Ligon, E Antonio Chiocca, Marco Prinz, David A Reardon, Francisco J Quintana
Faculty, Staff and Students Publications
Glioblastoma is the most common and aggressive primary brain cancer and shows minimal response to therapies. The immunosuppressive tumour microenvironment in glioblastoma contributes to the limited therapeutic response. Astrocytes are abundant in the central nervous system and have important immunoregulatory roles. However, little is known about their role in the immune response to glioblastoma1. Here we used single-cell and bulk RNA sequencing of clinical glioblastoma samples and samples from preclinical models, multiplexed immunofluorescence, in vivo CRISPR-based cell-specific genetic perturbations and in vitro mouse and human experimental systems to address this gap in knowledge. We identified an astrocyte subset …
Mechanisms Of Experience-Dependent Place-Cell Referencing In Hippocampal Area Ca1, Fish Kunxun Qian, Yiding Li, Jeffrey C Magee
Mechanisms Of Experience-Dependent Place-Cell Referencing In Hippocampal Area Ca1, Fish Kunxun Qian, Yiding Li, Jeffrey C Magee
Faculty, Staff and Students Publications
Hippocampal CA1 place cells (PCs) encode both space- and goal-referenced information to support a cognitive map. The mechanism of this referencing and the role of experience remain poorly understood. Here we longitudinally recorded PC activity while head-fixed mice performed a spatial learning task on a treadmill. In a familiar environment, the CA1 representation consisted of PCs that were referenced to either specific spatial locations or a reward goal in approximately equal proportions; however, the CA1 representation became predominately goal-referenced upon exposure to a novel environment, as space-referenced PCs adaptively switched reference frames. Intracellular membrane potential recordings revealed that individual CA1 …
Endothelium- And Fibroblast-Derived C-Type Natriuretic Peptide Prevents The Development And Progression Of Aortic Aneurysm, Aisah A Aubdool, Amie J Moyes, Cristina Perez-Ternero, Reshma S Baliga, Jaspinder Singh Sanghera, M Taaha Syed, Kareemah Jaigirdar, Anmolpreet K Panesar, Janice C Tsui, Yanming Li, Hernan G Vasquez, Ying H Shen, Scott A Lemaire, Juliette Raffort, Ziad Mallat, Hong S Lu, Alan Daugherty, Adrian J Hobbs
Endothelium- And Fibroblast-Derived C-Type Natriuretic Peptide Prevents The Development And Progression Of Aortic Aneurysm, Aisah A Aubdool, Amie J Moyes, Cristina Perez-Ternero, Reshma S Baliga, Jaspinder Singh Sanghera, M Taaha Syed, Kareemah Jaigirdar, Anmolpreet K Panesar, Janice C Tsui, Yanming Li, Hernan G Vasquez, Ying H Shen, Scott A Lemaire, Juliette Raffort, Ziad Mallat, Hong S Lu, Alan Daugherty, Adrian J Hobbs
Faculty, Staff and Students Publications
Background: Thoracic (TAA) and abdominal (AAA) aortic aneurysm are life-threatening diseases characterized by dilation, inflammation, and structural weakness; development of pharmacological therapies is desperately needed. CNP (C-type natriuretic peptide) plays a key role in vascular homeostasis, mediating vasodilator, anti-inflammatory, and antiatherogenic actions. Since such processes drive AA, we determined the role of endogenous CNP in offsetting pathogenesis.
Methods: Tissue from patients with AA was analyzed to determine the consequences on CNP signaling. Ascending and suprarenal aortic diameters were assessed at baseline and following Ang II (angiotensin II; 1.44 mg/kg per day) infusion in wild-type, endothelium-restricted (ecCNP-/-), fibroblast-restricted (fbCNP-/-), global CNP …
The Loss Of Opa1 Accelerates Intervertebral Disc Degeneration And Osteoarthritis In Aged Mice, Vedavathi Madhu, Miriam Hernandaz-Meadows, Ashley Coleman, Kimheak Sao, Kameron Inguito, Owen Haslam, Paige Boneski, Hiromi Sesaki, Ruteja Barve, John Collins, Makarand Risbud
The Loss Of Opa1 Accelerates Intervertebral Disc Degeneration And Osteoarthritis In Aged Mice, Vedavathi Madhu, Miriam Hernandaz-Meadows, Ashley Coleman, Kimheak Sao, Kameron Inguito, Owen Haslam, Paige Boneski, Hiromi Sesaki, Ruteja Barve, John Collins, Makarand Risbud
Department of Orthopaedic Surgery Faculty Papers
Recent studies have highlighted the importance of mitochondria in NP cells and articular chondrocyte health. Since the understanding of mechanisms governing mitochondrial dynamics in these tissues is lacking, we investigated the role of OPA1, a mitochondrial fusion protein, in their homeostasis. OPA1 knockdown in NP cells altered mitochondrial size and cristae shape and increased the oxygen consumption rate. OPA1 governed the morphology of multiple organelles, including peroxisomes, early endosomes and cis-Golgi and loss resulted in the dysregulation of autophagy. Metabolic profiling and
The Loss Of Opa1 Accelerates Intervertebral Disc Degeneration And Osteoarthritis In Aged Mice, Vedavathi Madhu, Miriam Hernandaz-Meadows, Ashley Coleman, Kimheak Sao, Kameron Inguito, Owen Haslam, Paige K Boneski, Hiromi Sesaki, Ruteja A Barve, John A Collins, Makarand V Risbud
The Loss Of Opa1 Accelerates Intervertebral Disc Degeneration And Osteoarthritis In Aged Mice, Vedavathi Madhu, Miriam Hernandaz-Meadows, Ashley Coleman, Kimheak Sao, Kameron Inguito, Owen Haslam, Paige K Boneski, Hiromi Sesaki, Ruteja A Barve, John A Collins, Makarand V Risbud
2020-Current year OA Pubs
Recent studies have highlighted the importance of mitochondria in NP cells and articular chondrocyte health. Since the understanding of mechanisms governing mitochondrial dynamics in these tissues is lacking, we investigated the role of OPA1, a mitochondrial fusion protein, in their homeostasis. OPA1 knockdown in NP cells altered mitochondrial size and cristae shape and increased the oxygen consumption rate. OPA1 governed the morphology of multiple organelles, including peroxisomes, early endosomes and cis-Golgi and loss resulted in the dysregulation of autophagy. Metabolic profiling and
Projection-Tags Enable Multiplex Projection Tracing And Multi-Modal Profiling Of Projection Neurons, Lite Yang, Fang Liu, Hannah Hahm, Takao Okuda, Xiaoyue Li, Yufen Zhang, Vani Kalyanaraman, Monique R Heitmeier, Vijay K Samineni
Projection-Tags Enable Multiplex Projection Tracing And Multi-Modal Profiling Of Projection Neurons, Lite Yang, Fang Liu, Hannah Hahm, Takao Okuda, Xiaoyue Li, Yufen Zhang, Vani Kalyanaraman, Monique R Heitmeier, Vijay K Samineni
2020-Current year OA Pubs
Single-cell multiomic techniques have sparked immense interest in developing a comprehensive multi-modal map of diverse neuronal cell types and their brain-wide projections. However, investigating the complex wiring diagram, spatial organization, transcriptional, and epigenetic landscapes of brain-wide projection neurons is hampered by the lack of efficient and easily adoptable tools. Here we introduce Projection-TAGs, a retrograde AAV platform that allows multiplex tagging of projection neurons using RNA barcodes. By using Projection-TAGs, we performed multiplex projection tracing of the cortex and high-throughput single-cell profiling of the transcriptional and epigenetic landscapes of the cortical projection neurons in female mice. Projection-TAGs can be leveraged …
Native Nucleosomes Intrinsically Encode Genome Organization Principles, Sangwoo Park, Raquel Merino-Urteaga, Violetta Karwacki-Neisius, Gustavo Ezequiel Carrizo, Advait Athreya, Alberto Marin-Gonzalez, Nils A Benning, Jonghan Park, Michelle M Mitchener, Natarajan V Bhanu, Benjamin A Garcia, Bin Zhang, Tom W Muir, Erika L Pearce, Taekjip Ha
Native Nucleosomes Intrinsically Encode Genome Organization Principles, Sangwoo Park, Raquel Merino-Urteaga, Violetta Karwacki-Neisius, Gustavo Ezequiel Carrizo, Advait Athreya, Alberto Marin-Gonzalez, Nils A Benning, Jonghan Park, Michelle M Mitchener, Natarajan V Bhanu, Benjamin A Garcia, Bin Zhang, Tom W Muir, Erika L Pearce, Taekjip Ha
2020-Current year OA Pubs
The eukaryotic genome is packed into nucleosomes of 147 base pairs around a histone core and is organized into euchromatin and heterochromatin, corresponding to the A and B compartments, respectively
Choroid Plexus Apocrine Secretion Shapes Csf Proteome During Mouse Brain Development, Ya'el Courtney, Joshua P Head, Neil Dani, Olga V. Chechneva, Frederick B Shipley, Yong Zhang, Michael J Holtzman, Cameron Sadegh, Towia A Libermann, Maria K Lehtinen
Choroid Plexus Apocrine Secretion Shapes Csf Proteome During Mouse Brain Development, Ya'el Courtney, Joshua P Head, Neil Dani, Olga V. Chechneva, Frederick B Shipley, Yong Zhang, Michael J Holtzman, Cameron Sadegh, Towia A Libermann, Maria K Lehtinen
2020-Current year OA Pubs
The choroid plexus (ChP) regulates cerebrospinal fluid (CSF) composition, providing essential molecular cues for brain development; yet, embryonic ChP secretory mechanisms remain poorly defined. Here we identify apocrine secretion by embryonic ChP epithelial cells as a key regulator of the CSF proteome and neurodevelopment in male and female mice. We demonstrate that the activation of serotonergic 5-HT
Renal G Protein-Coupled Estrogen Receptor 1 Regulates The Epithelial Sodium Channel Promoting Natriuresis To A Greater Extent In Females, Victoria L Nasci, Jean C Bopassa, Elena Mironova, Megan Rhoads, Ravneet Singh, Dennis P Buehler, David M Pollock, Oleh M Pochynyuk, James D Stockand, Eman Y Gohar
Renal G Protein-Coupled Estrogen Receptor 1 Regulates The Epithelial Sodium Channel Promoting Natriuresis To A Greater Extent In Females, Victoria L Nasci, Jean C Bopassa, Elena Mironova, Megan Rhoads, Ravneet Singh, Dennis P Buehler, David M Pollock, Oleh M Pochynyuk, James D Stockand, Eman Y Gohar
Faculty, Staff and Student Publications
Hypertension prevalence is lower in women than men. Enhanced renal sodium (Na+) handling in females has been implicated in sex-differences in hypertension. Epithelial Na+ channel (ENaC) is a key contributor to Na+ homeostasis and is regulated by estrogen. Recent evidence suggests G protein-coupled estrogen receptor 1 (GPER1) evokes a female-specific natriuresis that involves endothelin-1 (ET-1). ET-1 has been shown to downregulate ENaC activity, but whether GPER1 regulates ENaC to modulate natriuresis is unknown. We tested the hypothesis that renal GPER1 functionally interacts with ENaC to promote natriuresis in a sex-specific manner. RNAscope confirmed co-expression of GPER1 and ENaC in rat …
Long Akap18 Isoforms Anchor Ubiquitin Specific Proteinases And Coordinate Calcium Reuptake At The Sarcoplasmic Reticulum, Taeyeop Park, Katherine Forbush, Yong Li, Oscar Vivas, Kacey J Rosenthal, Jerome Falcone, Cassandra J Wong, James E Bruce, Claudia Moreno, Carmen W Dessauer, John D Scott
Long Akap18 Isoforms Anchor Ubiquitin Specific Proteinases And Coordinate Calcium Reuptake At The Sarcoplasmic Reticulum, Taeyeop Park, Katherine Forbush, Yong Li, Oscar Vivas, Kacey J Rosenthal, Jerome Falcone, Cassandra J Wong, James E Bruce, Claudia Moreno, Carmen W Dessauer, John D Scott
Faculty, Staff and Student Publications
Subcellular targeting of signaling enzymes influences where and when various modes of intracellular communication operate. Macromolecular complexes of signal transduction and signal termination elements favor reversible control of repetitive processes. This includes adrenergic stimulation of excitation–contraction coupling in the heart. Long isoforms of A-kinase anchoring protein 18 (AKAP18γ and δ) modulate this process via regulation of calcium uptake into the sarcoplasmic reticulum through the Ca2+ATPase 2a (SERCA2a). AKAP18 proximity-proteomic screening in cardiomyocytes identifies networks for protein kinase A (PKA) and ubiquitin-specific proteinases (USPs). A 2′phosphoesterase domain on AKAP18 interfaces with the USP4 isoform at the Z bands of sarcomeres. PKA …
Myh11 Rare Variant Augments Aortic Growth And Induces Cardiac Hypertrophy And Heart Failure With Pressure Overload, Zhen Zhou, Kgosi Hughes, Nisha Saif, Hyoseon Kim, Michael P Massett, Mingjie Zheng, Alana C Cecchi, Dongchuan Guo, David R Murdock, Ping Pan, Jelita S Clinton, Jun Wang, John M Greally, Dianna M Milewicz
Myh11 Rare Variant Augments Aortic Growth And Induces Cardiac Hypertrophy And Heart Failure With Pressure Overload, Zhen Zhou, Kgosi Hughes, Nisha Saif, Hyoseon Kim, Michael P Massett, Mingjie Zheng, Alana C Cecchi, Dongchuan Guo, David R Murdock, Ping Pan, Jelita S Clinton, Jun Wang, John M Greally, Dianna M Milewicz
Faculty, Staff and Student Publications
Smooth muscle cell-specific myosin heavy chain, encoded by MYH11, is selectively expressed in smooth muscle cells (SMCs). Pathogenic variants in MYH11 predispose to a number of disorders, including heritable thoracic aortic disease associated with patent ductus arteriosus, visceral myopathy, and megacystis-microcolon-intestinal hypoperistalsis syndrome. Rare variants of uncertain significance occur throughout the gene, including MYH11 p.Glu1892Asp, and we sought to determine if this variant causes thoracic aortic disease in mice. Genomic editing was used to generate Myh11E1892D/E1892D mice. Wild-type (WT) and mutant mice underwent cardiovascular phenotyping with and without transverse aortic constriction (TAC). Myh11E1892D/E1892D and WT mice displayed …
Kap1 Promotes Gastric Adenocarcinoma Progression By Activating Hippo/Yap1 Signaling Via Binding To Hnrnpab, Shumei Song, Yibo Fan, Gengyi Zou, Longfei Huo, Janani Kumar, Yuan Li, Ruiping Wang, Enyu Dai, Jiankang Jin, Ailing W Scott, Shan Shao, Melissa Pool Pizzi, Jody V Vykoukal, Hiroyuki Katayama, Samir Hanash, George A Calin, Xing Zhang, Min Gyu Lee, Zhenning Wang, Yuan-Hung Lo, Qiong Gan, Rebecca E Waters, Feng Yin, Linghua Wang, Xiaodong Cheng, Jaffer A Ajani, Shilpa S Dhar
Kap1 Promotes Gastric Adenocarcinoma Progression By Activating Hippo/Yap1 Signaling Via Binding To Hnrnpab, Shumei Song, Yibo Fan, Gengyi Zou, Longfei Huo, Janani Kumar, Yuan Li, Ruiping Wang, Enyu Dai, Jiankang Jin, Ailing W Scott, Shan Shao, Melissa Pool Pizzi, Jody V Vykoukal, Hiroyuki Katayama, Samir Hanash, George A Calin, Xing Zhang, Min Gyu Lee, Zhenning Wang, Yuan-Hung Lo, Qiong Gan, Rebecca E Waters, Feng Yin, Linghua Wang, Xiaodong Cheng, Jaffer A Ajani, Shilpa S Dhar
Faculty, Staff and Student Publications
Gastric adenocarcinoma (GAC) remains a significant global health challenge, with over a million new cases annually. Peritoneal carcinomatosis (PC), detected in ∼20 % of cases at diagnosis and ∼45 % later, is uniformly fatal, with limited treatment options. This study investigated the role of KAP1 in GAC progression, focusing on its interaction with YAP1 and cancer stemness traits. Analysis of over 596 primary GACs and 72 PC samples revealed that high nuclear KAP1 expression correlates with poor prognosis. KAP1 knockdown reduced oncogenic activity and stemness traits in GAC cells. Mechanistically, KAP1 positively regulates YAP1 transcription by binding to its promoter …
Wnt-Directed Cxcl12-Expressing Apical Papilla Progenitor Cells Drive Tooth Root Formation, Mizuki Nagata, Gaurav T Gadhvi, Taishi Komori, Yuki Arai, Hiroaki Manabe, Angel Ka Yan Chu, Ramandeep Kaur, Meer Ali, Yuntao Yang, Chiaki Tsutsumi-Arai, Yuta Nakai, Yuki Matsushita, Nicha Tokavanich, W Jim Zheng, Joshua D Welch, Noriaki Ono, Wanida Ono
Wnt-Directed Cxcl12-Expressing Apical Papilla Progenitor Cells Drive Tooth Root Formation, Mizuki Nagata, Gaurav T Gadhvi, Taishi Komori, Yuki Arai, Hiroaki Manabe, Angel Ka Yan Chu, Ramandeep Kaur, Meer Ali, Yuntao Yang, Chiaki Tsutsumi-Arai, Yuta Nakai, Yuki Matsushita, Nicha Tokavanich, W Jim Zheng, Joshua D Welch, Noriaki Ono, Wanida Ono
Faculty, Staff and Student Publications
The tooth root is a critical component of the tooth anchored to surrounding alveolar bones. Tooth root formation is driven by cells in the apical papilla (AP) that generate new dentin-forming odontoblasts at the root-forming front. Mesenchymal stem cells have been isolated from AP for regenerative use; however, how AP cells physiologically coordinate tooth root formation remains undefined. We find that CXCL12+ cells emerge in AP under hypoxic environments at the onset of tooth root formation. Using Cxcl12-creER-based cell-lineage analysis, we further find that CXCL12+ AP cells contribute not only to odontoblasts but also to cementum-forming cementoblasts of the elongating …
Oatp1b1/1b3 Deficiency Exacerbates Hyperbilirubinemia In Erythropoietic Protoporphyria, Ruizhi Gu, Fu-Ying Qin, Luxuan Wang, Jiaojiao Zhang, Jacob Emerson, Qing Ma, Jie Lu, Karl E Anderson, Junmei Wang, Xiaochao Ma
Oatp1b1/1b3 Deficiency Exacerbates Hyperbilirubinemia In Erythropoietic Protoporphyria, Ruizhi Gu, Fu-Ying Qin, Luxuan Wang, Jiaojiao Zhang, Jacob Emerson, Qing Ma, Jie Lu, Karl E Anderson, Junmei Wang, Xiaochao Ma
Faculty, Staff and Student Publications
Erythropoietic protoporphyria (EPP) is caused by loss-of-function mutations in ferrochelatase (FECH), leading to the accumulation of its substrate, protoporphyrin IX (PPIX). PPIX is primarily produced in the bone marrow and transported to the liver for excretion. Because PPIX is hydrophobic, its elevated levels can cause bile duct blockage, cholestatic liver injury, and even liver failure. However, the specific transporter responsible for PPIX uptake into hepatocytes remains unclear. The OATP1B1/1B3 transporters, which are expressed in hepatocytes, facilitate the uptake of coproporphyrin III, a structural analog of PPIX. Additionally, OATP1B1/1B3 mediates the uptake of bilirubin, a biomarker of liver injury, from plasma …
Histone Lysine Methyltransferases Mll3 And Mll4 Direct Gene Expression To Produce Platelets Efficiently, Guozhen Gao, Josimar Dornelas Moreira, Prosun Das, Kevin Lin, Kai Ge, Taiping Chen, Yue Lu, Margarida A Santos
Histone Lysine Methyltransferases Mll3 And Mll4 Direct Gene Expression To Produce Platelets Efficiently, Guozhen Gao, Josimar Dornelas Moreira, Prosun Das, Kevin Lin, Kai Ge, Taiping Chen, Yue Lu, Margarida A Santos
Faculty, Staff and Student Publications
Circulating blood platelets are responsible for maintaining hemostasis. They are released into blood vessels from mature megakaryocytes. Although several transcription factors have been reported to orchestrate the transcriptional programs required for platelet production, how chromatin regulators control these processes is still poorly understood. MLL3 and MLL4 are the main lysine methyltransferases responsible for the deposition of H3K4me1 histone marks at enhancers. MLL3 and MLL4 typically form complexes with other co-factors, such as PTIP. Recently, we showed that loss of PTIP leads to decreased platelet numbers in mice. Here, we find that, although MLL3/4 double deficiency does not alter megakaryopoiesis and …
Crem Is A Regulatory Checkpoint Of Car And Il-15 Signalling In Nk Cells, Hind Rafei, Rafet Basar, Sunil Acharya, Yu-Sung Hsu, Pinghua Liu, Deqiang Zhang, Toszka Bohn, Qingnan Liang, Vakul Mohanty, Ranjan Upadhyay, Ping Li, Pravin Phadatare, Merve Dede, Donghai Xiong, Huihui Fan, Corry Mathew Jones, Sebastian Kunz, May Daher, Ana Karen Nunez Cortes, Mayra Shanley, Bin Liu, Sadie Mae Moseley, Chenyu Zhang, Dexing Fang, Pinaki Banerjee, Nadima Uprety, Ye Li, Rejeena Shrestha, Xinhai Wan, Hong Shen, Vernikka Woods, April Lamour Gilbert, Seema Rawal, Jinzhuang Dou, Yukun Tan, Jeong-Min Park, Francia Reyes Silva, Alexander Biederstädt, Mecit Kaplan, Xin Ru Jiang, Inci Biederstädt, Bijender Kumar, Silvia Tiberti, Madison Moore, Jingling Jin, Ryan Z Yang, Luis Muniz-Feliciano, Samuel Rosemore, Paul Lin, Gary M Deyter, Natalie Wall Fowlkes, Abhinav K Jain, David Marin, Anirban Maitra, Ken Chen, Tobias Bopp, Elizabeth J Shpall, Katayoun Rezvani
Crem Is A Regulatory Checkpoint Of Car And Il-15 Signalling In Nk Cells, Hind Rafei, Rafet Basar, Sunil Acharya, Yu-Sung Hsu, Pinghua Liu, Deqiang Zhang, Toszka Bohn, Qingnan Liang, Vakul Mohanty, Ranjan Upadhyay, Ping Li, Pravin Phadatare, Merve Dede, Donghai Xiong, Huihui Fan, Corry Mathew Jones, Sebastian Kunz, May Daher, Ana Karen Nunez Cortes, Mayra Shanley, Bin Liu, Sadie Mae Moseley, Chenyu Zhang, Dexing Fang, Pinaki Banerjee, Nadima Uprety, Ye Li, Rejeena Shrestha, Xinhai Wan, Hong Shen, Vernikka Woods, April Lamour Gilbert, Seema Rawal, Jinzhuang Dou, Yukun Tan, Jeong-Min Park, Francia Reyes Silva, Alexander Biederstädt, Mecit Kaplan, Xin Ru Jiang, Inci Biederstädt, Bijender Kumar, Silvia Tiberti, Madison Moore, Jingling Jin, Ryan Z Yang, Luis Muniz-Feliciano, Samuel Rosemore, Paul Lin, Gary M Deyter, Natalie Wall Fowlkes, Abhinav K Jain, David Marin, Anirban Maitra, Ken Chen, Tobias Bopp, Elizabeth J Shpall, Katayoun Rezvani
Faculty, Staff and Student Publications
Chimeric antigen receptor (CAR) natural killer (NK) cell immunotherapy offers a promising approach against cancer1-3. However, the molecular mechanisms that regulate CAR-NK cell activity remain unclear. Here we identify the transcription factor cyclic AMP response element modulator (CREM) as a crucial regulator of NK cell function. Transcriptomic analysis revealed a significant induction of CREM in CAR-NK cells during the peak of effector function after adoptive transfer in a tumour mouse model, and this peak coincided with signatures of both activation and dysfunction. We demonstrate that both CAR activation and interleukin-15 signalling rapidly induce CREM upregulation in NK cells. Functionally, CREM …
Functional Regulation Of Macrophages By Ces1d-Mediated Lipid Signaling In Immunometabolism, Long J Shao, Fathima Elizondo, Feng Gao, Rabie Habib, Xin Li, Katherine Pham, Jazmin Ysaguirre, Maryam Elizondo, Shirindokht Shirazi, Kristin L Eckel-Mahan, Sean Hartig, Huaizhu Wu, Kai Sun
Functional Regulation Of Macrophages By Ces1d-Mediated Lipid Signaling In Immunometabolism, Long J Shao, Fathima Elizondo, Feng Gao, Rabie Habib, Xin Li, Katherine Pham, Jazmin Ysaguirre, Maryam Elizondo, Shirindokht Shirazi, Kristin L Eckel-Mahan, Sean Hartig, Huaizhu Wu, Kai Sun
Faculty, Staff and Student Publications
Objective: Macrophage accumulation in metabolically active tissues during obesity is common in both animals and humans, but the lipid signaling mechanisms that trigger macrophage inflammation remain unclear. This study investigates the role of Ces1d, an unconventional lipase, in regulating macrophage inflammation under nutritional stress.
Methods: A myeloid-specific Ces1d knockout (LysM-Cre-Ces1d floxed/floxed, KO) mouse model was used for the studies. For in vitro tests, bone marrow-derived macrophages (BMDMs) from control (Ces1d floxed/floxed, WT) and KO mice were assessed for migration, polarization, and activation. For in vivo experiments, WT and KO mice were induced to obesity via a high-fat diet (HFD) and …
Muscle Rev-Erb Controls Time-Dependent Adaptations To Chronic Exercise In Mice, Jidong Liu, Fang Xiao, Abhinav Choubey, Udhaya Kumar S, Yanxiang Wang, Sungguan Hong, Tingting Yang, Husniye Gul Otlu, Ege Sanem Oturmaz, Emanuele Loro, Yuxiang Sun, Pradip Saha, Tejvir S Khurana, Li Chen, Xinguo Hou, Zheng Sun
Muscle Rev-Erb Controls Time-Dependent Adaptations To Chronic Exercise In Mice, Jidong Liu, Fang Xiao, Abhinav Choubey, Udhaya Kumar S, Yanxiang Wang, Sungguan Hong, Tingting Yang, Husniye Gul Otlu, Ege Sanem Oturmaz, Emanuele Loro, Yuxiang Sun, Pradip Saha, Tejvir S Khurana, Li Chen, Xinguo Hou, Zheng Sun
Center on Aging Staff Publications
The best time of the day for chronic exercise training and the mechanism underlying the timing effects is unclear. Here, we show that low-intensity, low-volume treadmill training in mice before sleep yields greater benefits than after waking for muscle contractile performance and systemic glucose tolerance. Baseline muscle performance also exhibits diurnal variations, with higher strength but lower endurance before sleep than after waking. Muscle-specific knockout of circadian clock genes Rev-erbα/β (Rev-MKO) in male mice eradicates the diurnal variations in both training and baseline conditions without affecting muscle mass, mitochondrial content, food intake, or spontaneous activities. Multi-omics and metabolic measurements reveal …
Reduction Of Neuronal Activity Mediated By Blood-Vessel Regression In The Adult Brain, Xiaofei Gao, Xing-Jun Chen, Meng Ye, Jun-Liszt Li, Nannan Lu, Di Yao, Bo Ci, Fei Chen, Lijun Zheng, Yating Yi, Shiwen Zhang, Zhanying Bi, Xinwei Gao, Yuanlei Yue, Tingbo Li, Jiafu Lin, Ying-Chao Shi, Kaibin Shi, Nicholas E Propson, Yubin Huang, Katherine Poinsatte, Zhaohuan Zhang, Dale B Bosco, Shi-Bing Yang, Ralf H Adams, Volkhard Lindner, Fen Huang, Long-Jun Wu, Hui Zheng, Simon Hippenmeyer, Ann M Stowe, Bo Peng, Marta Margeta, Qingchun Guo, Xiaoqun Wang, Qiang Liu, Jakob Körbelin, Martin Trepel, Hui Lu, Guoen Cai, Bo O Zhou, Bo Shen, Ying-Mei Lu, Wenzhi Sun, Jie-Min Jia, Feng Han, Hu Zhao, Robert M Bachoo, Woo-Ping Ge
Reduction Of Neuronal Activity Mediated By Blood-Vessel Regression In The Adult Brain, Xiaofei Gao, Xing-Jun Chen, Meng Ye, Jun-Liszt Li, Nannan Lu, Di Yao, Bo Ci, Fei Chen, Lijun Zheng, Yating Yi, Shiwen Zhang, Zhanying Bi, Xinwei Gao, Yuanlei Yue, Tingbo Li, Jiafu Lin, Ying-Chao Shi, Kaibin Shi, Nicholas E Propson, Yubin Huang, Katherine Poinsatte, Zhaohuan Zhang, Dale B Bosco, Shi-Bing Yang, Ralf H Adams, Volkhard Lindner, Fen Huang, Long-Jun Wu, Hui Zheng, Simon Hippenmeyer, Ann M Stowe, Bo Peng, Marta Margeta, Qingchun Guo, Xiaoqun Wang, Qiang Liu, Jakob Körbelin, Martin Trepel, Hui Lu, Guoen Cai, Bo O Zhou, Bo Shen, Ying-Mei Lu, Wenzhi Sun, Jie-Min Jia, Feng Han, Hu Zhao, Robert M Bachoo, Woo-Ping Ge
Center on Aging Staff Publications
The brain vasculature supplies neurons with glucose and oxygen, but little is known about how vascular plasticity contributes to brain function. Using longitudinal in vivo imaging, we report that a substantial proportion of blood vessels in the adult mouse brain sporadically occlude and regress. Their regression proceeds through sequential stages of blood-flow occlusion, endothelial cell collapse, relocation or loss of pericytes, and retraction of glial endfeet. Regressing vessels are found to be widespread in mouse, monkey and human brains. We further reveal that blood vessel regression cause a reduction of neuronal activity due to a dysfunction in mitochondrial metabolism and …
Exploitable Mechanisms Of Antibody And Car Mediated Macrophage Cytotoxicity, Tianyi Liu, Alexander B Kim, Young Ah Goo, Minsoo Son, Jaenyeon Kim, Carl J Deselm, Et Al.
Exploitable Mechanisms Of Antibody And Car Mediated Macrophage Cytotoxicity, Tianyi Liu, Alexander B Kim, Young Ah Goo, Minsoo Son, Jaenyeon Kim, Carl J Deselm, Et Al.
2020-Current year OA Pubs
Macrophages infiltrate solid tumors and either support survival or induce cancer cell death through phagocytosis or cytotoxicity. To uncover regulators of macrophage cytotoxicity towards cancer cells, we perform two co-culture CRISPR screens using CAR-macrophages targeting different tumor associated antigens. Both identify ATG9A as an important regulator of this cytotoxic activity. In vitro and in vivo, ATG9A depletion in cancer cells sensitizes them to macrophage-mediated killing. Proteomic and lipidomic analyses reveal that ATG9A deficiency impairs the cancer cell response to macrophage-induced plasma membrane damage through defective lysosomal exocytosis, reduced ceramide production, and disrupted caveolar endocytosis. Depleting non-cytotoxic macrophages using CSF1R inhibition …
Ad-Sge-Dkk3 Gene Therapy Overcomes Resistance To Immune Checkpoint Blockade In Pleural Mesothelioma, Hee-Jin Jang, Meera Patel, Daniel Y Wang, Sung Wook Kang, Jong Min Choi, Claire Lee, Monica Vilchis, Ji Seon Shim, Sonali Mitra, Priyanka Ranchod, Allen Kuncheria, William Hudson, Peter Jindra, Veronica Lenge De Rosen, Maheshwari Ramineni, Ernest Ramsay Camp, Farrah Kheradmand, R Taylor Ripley, Shawn S Groth, Hyun-Sung Lee, Bryan M Burt
Ad-Sge-Dkk3 Gene Therapy Overcomes Resistance To Immune Checkpoint Blockade In Pleural Mesothelioma, Hee-Jin Jang, Meera Patel, Daniel Y Wang, Sung Wook Kang, Jong Min Choi, Claire Lee, Monica Vilchis, Ji Seon Shim, Sonali Mitra, Priyanka Ranchod, Allen Kuncheria, William Hudson, Peter Jindra, Veronica Lenge De Rosen, Maheshwari Ramineni, Ernest Ramsay Camp, Farrah Kheradmand, R Taylor Ripley, Shawn S Groth, Hyun-Sung Lee, Bryan M Burt
Faculty, Staff and Students Publications
Purpose: Immune checkpoint inhibitors (ICI) have limited efficacy in pleural mesothelioma. We investigated the role of Dickkopf WNT signaling pathway inhibitor 3 (DKK3) in overcoming treatment resistance.
Patients and methods: We performed preclinical studies to elucidate DKK3's role in ICI-resistant mouse mesothelioma. Based on these findings, we conducted a single-arm, phase II clinical trial of a combination of Ad-SGE-DKK3 and nivolumab for chemotherapy-refractory epithelioid pleural mesothelioma, with the objective response rate as the primary outcome.
Results: DKK3 was significantly reduced in human epithelioid mesothelioma. Overexpression of DKK3 in cancer cells activated the p53 pathway, enhanced glycolysis, increased surface PD-L1, and …
Fgf21 Promotes Longevity In Diet-Induced Obesity Through Metabolic Benefits Independent Of Growth Suppression, Christy M Gliniak, Ruth Gordillo, Yun-Hee Youm, Qian Lin, Clair Crewe, Zhuzhen Zhang, Bianca C Field, Teppei Fujikawa, Megan Virostek, Shangang Zhao, Yi Zhu, Clifford J Rosen, Tamas L Horvath, Vishwa Deep Dixit, Philipp E Scherer
Fgf21 Promotes Longevity In Diet-Induced Obesity Through Metabolic Benefits Independent Of Growth Suppression, Christy M Gliniak, Ruth Gordillo, Yun-Hee Youm, Qian Lin, Clair Crewe, Zhuzhen Zhang, Bianca C Field, Teppei Fujikawa, Megan Virostek, Shangang Zhao, Yi Zhu, Clifford J Rosen, Tamas L Horvath, Vishwa Deep Dixit, Philipp E Scherer
Faculty, Staff and Students Publications
Approximately 35% of US adults over 65 are obese, highlighting the need for therapies targeting age-related metabolic issues. Fibroblast growth factor 21 (FGF21), a hormone mainly produced by the liver, improves metabolism and extends lifespan. To explore its effects without developmental confounders, we generated mice with adipocyte-specific FGF21 overexpression beginning in adulthood. When fed a high-fat diet, these mice lived up to 3.3 years, resisted weight gain, improved insulin sensitivity, and showed reduced liver steatosis. Aged transgenic mice also displayed lower levels of inflammatory immune cells and lipotoxic ceramides in visceral adipose tissue, benefits that occurred even in the absence …
Formation Of An Expanding Memory Representation In The Hippocampus, Sachin P Vaidya, Guanchun Li, Raymond A Chitwood, Yiding Li, Jeffrey C Magee
Formation Of An Expanding Memory Representation In The Hippocampus, Sachin P Vaidya, Guanchun Li, Raymond A Chitwood, Yiding Li, Jeffrey C Magee
Faculty, Staff and Students Publications
How brain networks connected by labile synapses store new information without catastrophically overwriting previous memories remains poorly understood. To examine this, we tracked the same population of hippocampal CA1 place cells (PCs) as mice learned a task for 7 days. We found evidence of memory formation as both the number of PCs maintaining a stable place field and the stability of individual PCs progressively increased across the week until most of the representation was composed of long-term stable PCs. The stable PCs disproportionately represented task-related learned information, were retrieved earlier within a behavioral session and showed a strong correlation with …
Anti-Transforming Growth Factor-Β Treatment Shows Increased Bone Mass And Strength In A Novel Mouse Model For Osteogenesis Imperfecta Type I, Ellen Busschers, Yuqing Chen-Everson, Mary Adeyeye, I-Wen Song, Emily Busse, Alexis Castellon, Oscar Ruiz, Nicole Meyers, Yangjin Bae, Catherine Ambrose, Brendan Lee
Anti-Transforming Growth Factor-Β Treatment Shows Increased Bone Mass And Strength In A Novel Mouse Model For Osteogenesis Imperfecta Type I, Ellen Busschers, Yuqing Chen-Everson, Mary Adeyeye, I-Wen Song, Emily Busse, Alexis Castellon, Oscar Ruiz, Nicole Meyers, Yangjin Bae, Catherine Ambrose, Brendan Lee
Faculty, Staff and Students Publications
Anti-transforming growth factor beta (TGF-β) is a promising approach for the treatment of osteogenesis imperfecta (OI). To date, preclinical and clinical studies for the use of anti-TGF-β therapy have focused on moderate to severe OI caused by qualitative defects in collagen. However, the majority of OI patients are represented by type I OI. Mutations resulting in the haploinsufficiency of type I collagen is the cause of OI type I in the majority of patients. To study the effect of anti-TGF-β therapy in type I OI, we generated a novel mouse model for OI type I. CMV-CRE mice were crossed to …
Physiological Role And Mechanisms Of Action For A Long Noncoding Haplotype Region., Hong Xue, Manoj K Mishra, Yong Liu, Pengyuan Liu, Michael Grzybowski, Rajan Pandey, Kristie Usa, Mark A Vanden Avond, Niharika Bala, Abdel A Alli, Allen W Cowley, Qiongzi Qiu, Andrew S Greene, Sridhar Rao, Caitlin C O'Meara, Aron M Geurts, Mingyu Liang
Physiological Role And Mechanisms Of Action For A Long Noncoding Haplotype Region., Hong Xue, Manoj K Mishra, Yong Liu, Pengyuan Liu, Michael Grzybowski, Rajan Pandey, Kristie Usa, Mark A Vanden Avond, Niharika Bala, Abdel A Alli, Allen W Cowley, Qiongzi Qiu, Andrew S Greene, Sridhar Rao, Caitlin C O'Meara, Aron M Geurts, Mingyu Liang
Faculty Research 2025
Direct targeting of noncoding genomic regions harboring common sequence variants associated with human traits through in vivo animal model studies and precise genome editing in human cells is essential for closing the critical gap between genetic discoveries and physiological understanding. However, such investigation has been impractical for many of these variants as they are in haplotypes containing multiple single-nucleotide polymorphisms (SNPs) spanning thousands of base pairs and have small effect sizes. We developed an integrated approach to address this challenge, combining an efficient two-step technique to precisely edit large haplotypes in human induced pluripotent stem cells and orthologous region deletion …
Apolipoprotein M Attenuates Age-Related Macular Degeneration Phenotypes Via Sphingosine-1-Phosphate Signaling And Lysosomal Lipid Catabolism, Tae Jun Lee, Andrea Santeford, Kristen M Pitts, Carla Valenzuela Ripoll, Ryo Terao, Zhen Guo, Mualla Ozcan, Dagmar Kratky, Christina Christoffersen, Ali Javaheri, Rajendra S Apte
Apolipoprotein M Attenuates Age-Related Macular Degeneration Phenotypes Via Sphingosine-1-Phosphate Signaling And Lysosomal Lipid Catabolism, Tae Jun Lee, Andrea Santeford, Kristen M Pitts, Carla Valenzuela Ripoll, Ryo Terao, Zhen Guo, Mualla Ozcan, Dagmar Kratky, Christina Christoffersen, Ali Javaheri, Rajendra S Apte
2020-Current year OA Pubs
Age-related macular degeneration (AMD) is a leading cause of blindness in people over 50. AMD and cardiovascular disease share risk factors including age, impaired lipid metabolism, and extracellular lipid deposition. Because of its importance in age-related diseases, we hypothesize that apolipoprotein M (ApoM), a lipocalin that binds sphingosine-1-phosphate (S1P), might restore lipid homeostasis and retinal function in AMD. In support, we find that human patients with AMD demonstrate significantly reduced ApoM compared to controls. In mice with impaired retinal cholesterol efflux, ApoM improves retinal pigment epithelium (RPE) function and lipotoxicity in an S1P- and S1P receptor 3-dependent manner. Ultrastructural evidence …