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Author
- Hanover, John A4
- van Aalten, Daan MF4
- Ferenbach, Andrew T3
- Love, Dona C3
- Peterson, Kenneth R3
- Slawson, Chad3
- Zhang, Zhen3
- Bond, Michelle R2
- Costello, Catherine E2
- DiTacchio, Luciano2
- Graw, Stefan2
- Han, Inn-Oc2
- Hart, Gerald W2
- Harwood, Katryn R2
- Hwang, Ji-Sun2
- Koestler, Devin C2
- McComb, Mark E2
- Abraham, Brian J1
- Akan, Ilhan1
- Alejandro, Emilyn U1
- Apte, Udayan1
- Asahi, Michio1
- Authier, Florence1
- Banerjee, Partha1
- Berninsone, Patricia M1
Keyword
- O-linked N-acetylglucosamine (O-GlcNAc) transferase (OGT)12
- O-GlcNAcase9
- O-linked N-acetylglucosamine (O-GlcNAc)8
- cell cycle5
- OGT5
- O-GlcNAc transferase4
- phosphorylation4
- post-translational modification (PTM)4
- transcription4
- glycosylation3
- OGA3
- RNA polymerase II3
- Alzheimer's disease2
- cancer2
- chromatin2
- Drosophila2
- GATA transcription factor2
- MS2
- proteomics2
- (O-GlcNAc)1
- ACN1
- AD1
- Animal Model1
- Ash11
Glycobiology and Extracellular Matrices
32 Results
- Research ArticleOpen Access
EGF promotes PKM2 O-GlcNAcylation by stimulating O-GlcNAc transferase phosphorylation at Y976 and their subsequent association
Journal of Biological ChemistryVol. 298Issue 9102340Published online: August 2, 2022- Yang Wang
- Hengyao Shu
- Jia Liu
- Xin Jin
- Lihua Wang
- Yanzhao Qu
- and others
Cited in Scopus: 0Epidermal growth factor (EGF) is one of the most well-characterized growth factors and plays a crucial role in cell proliferation and differentiation. Its receptor EGFR has been extensively explored as a therapeutic target against multiple types of cancers, such as lung cancer and glioblastoma. Recent studies have established a connection between deregulated EGF signaling and metabolic reprogramming, especially rewiring in aerobic glycolysis, which is also known as the Warburg effect and recognized as a hallmark in cancer. - Research ArticleOpen Access
O-GlcNAc transferase regulates p21 protein levels and cell proliferation through the FoxM1–Skp2 axis in a p53-independent manner
Journal of Biological ChemistryVol. 298Issue 9102289Published online: July 19, 2022- Rafaela Muniz de Queiroz
- Sung-Hwan Moon
- Carol Prives
Cited in Scopus: 2The protein product of the CDKN1A gene, p21, has been extensively characterized as a negative regulator of the cell cycle. Nevertheless, it is clear that p21 has manifold complex and context-dependent roles that can be either tumor suppressive or oncogenic. Most well studied as a transcriptional target of the p53 tumor suppressor protein, there are other means by which p21 levels can be regulated. In this study, we show that pharmacological inhibition or siRNA-mediated reduction of O-GlcNAc transferase (OGT), the enzyme responsible for glycosylation of intracellular proteins, increases expression of p21 in both p53-dependent and p53-independent manners in nontransformed and cancer cells. - Research ArticleOpen Access
Histone methyltransferase Dot1L recruits O-GlcNAc transferase to target chromatin sites to regulate histone O-GlcNAcylation
Journal of Biological ChemistryVol. 298Issue 7102115Published online: June 8, 2022- Bo Xu
- Can Zhang
- Ao Jiang
- Xianhong Zhang
- Fenfei Liang
- Xueqing Wang
- and others
Cited in Scopus: 0O-GlcNAc transferase (OGT) is the distinctive enzyme responsible for catalyzing O-GlcNAc addition to the serine or threonine residues of thousands of cytoplasmic and nuclear proteins involved in such basic cellular processes as DNA damage repair, RNA splicing, and transcription preinitiation and initiation complex assembly. However, the molecular mechanism by which OGT regulates gene transcription remains elusive. Using proximity labeling-based mass spectrometry, here, we searched for functional partners of OGT and identified interacting protein Dot1L, a conserved and unique histone methyltransferase known to mediate histone H3 Lys79 methylation, which is required for gene transcription, DNA damage repair, cell proliferation, and embryo development. - Research ArticleOpen Access
Loss of O-GlcNAcase catalytic activity leads to defects in mouse embryogenesis
Journal of Biological ChemistryVol. 296100439Published online: February 18, 2021- Villő Muha
- Florence Authier
- Zsombor Szoke-Kovacs
- Sara Johnson
- Jennifer Gallagher
- Alison McNeilly
- and others
Cited in Scopus: 16O-GlcNAcylation is an essential post-translational modification that has been implicated in neurodevelopmental and neurodegenerative disorders. O-GlcNAcase (OGA), the sole enzyme catalyzing the removal of O-GlcNAc from proteins, has emerged as a potential drug target. OGA consists of an N-terminal OGA catalytic domain and a C-terminal pseudo histone acetyltransferase (HAT) domain with unknown function. To investigate phenotypes specific to loss of OGA catalytic activity and dissect the role of the HAT domain, we generated a constitutive knock-in mouse line, carrying a mutation of a catalytic aspartic acid to alanine. - Glycobiology and Extracellular MatricesOpen Access
Fluctuation in O-GlcNAcylation inactivates STIM1 to reduce store-operated calcium ion entry via down-regulation of Ser621 phosphorylation
Journal of Biological ChemistryVol. 295Issue 50p17071–17082Published online: October 6, 2020- Atsuo Nomura
- Shunichi Yokoe
- Kiichiro Tomoda
- Takatoshi Nakagawa
- Francisco Javier Martin-Romero
- Michio Asahi
Cited in Scopus: 7Stromal interaction molecule 1 (STIM1) plays a pivotal role in store-operated Ca2+ entry (SOCE), an essential mechanism in cellular calcium signaling and in maintaining cellular calcium balance. Because O-GlcNAcylation plays pivotal roles in various cellular function, we examined the effect of fluctuation in STIM1 O-GlcNAcylation on SOCE activity. We found that both increase and decrease in STIM1 O-GlcNAcylation impaired SOCE activity. To determine the molecular basis, we established STIM1-knockout HEK293 (STIM1-KO-HEK) cells using the CRISPR/Cas9 system and transfected STIM1 WT (STIM1-KO-WT-HEK), S621A (STIM1-KO-S621A-HEK), or T626A (STIM1-KO-T626A-HEK) cells. - Glycobiology and Extracellular MatricesOpen Access
O-GlcNAcylation of myosin phosphatase targeting subunit 1 (MYPT1) dictates timely disjunction of centrosomes
Journal of Biological ChemistryVol. 295Issue 21p7341–7349Published online: April 15, 2020- Caifei Liu
- Yingxin Shi
- Jie Li
- Xuewen Liu
- Zhikai Xiahou
- Zhongping Tan
- and others
Cited in Scopus: 9The role of O-linked N-acetylglucosamine (O-GlcNAc) modification in the cell cycle has been enigmatic. Previously, both O-GlcNAc transferase (OGT) and O-GlcNAcase (OGA) disruptions have been shown to derail the mitotic centrosome numbers, suggesting that mitotic O-GlcNAc oscillation needs to be in concert with mitotic progression to account for centrosome integrity. Here, using both chemical approaches and biological assays with HeLa cells, we attempted to address the underlying molecular mechanism and observed that incubation of the cells with the OGA inhibitor Thiamet-G strikingly elevates centrosomal distances, suggestive of premature centrosome disjunction. - Glycobiology and Extracellular MatricesOpen Access
O-GlcNAcase contributes to cognitive function in Drosophila
Journal of Biological ChemistryVol. 295Issue 26p8636–8646Published online: February 24, 2020- Villo Muha
- Michaela Fenckova
- Andrew T. Ferenbach
- Marica Catinozzi
- Ilse Eidhof
- Erik Storkebaum
- and others
Cited in Scopus: 7O-GlcNAcylation is an abundant post-translational modification in neurons. In mice, an increase in O-GlcNAcylation leads to defects in hippocampal synaptic plasticity and learning. O-GlcNAcylation is established by two opposing enzymes: O-GlcNAc transferase (OGT) and O-GlcNAcase (OGA). To investigate the role of OGA in elementary learning, we generated catalytically inactive and precise knockout Oga alleles (OgaD133N and OgaKO, respectively) in Drosophila melanogaster. Adult OgaD133N and OgaKO flies lacking O-GlcNAcase activity showed locomotor phenotypes. - Glycobiology and Extracellular MatricesOpen Access
O-GlcNAcylation of Thr12/Ser56 in short-form O-GlcNAc transferase (sOGT) regulates its substrate selectivity
Journal of Biological ChemistryVol. 294Issue 45p16620–16633Published online: September 16, 2019- Li Liu
- Ling Li
- Cheng Ma
- Yangde Shi
- Congcong Liu
- Zikang Xiao
- and others
Cited in Scopus: 12O-GlcNAcylation is a ubiquitous protein glycosylation playing different roles on variant proteins. O-GlcNAc transferase (OGT) is the unique enzyme responsible for the sugar addition to nucleocytoplasmic proteins. Recently, multiple O-GlcNAc sites have been observed on short-form OGT (sOGT) and nucleocytoplasmic OGT (ncOGT), both of which locate in the nucleus and cytoplasm in cell. Moreover, O-GlcNAcylation of Ser389 in ncOGT (1036 amino acids) affects its nuclear translocation in HeLa cells. To date, the major O-GlcNAcylation sites and their roles in sOGT remain unknown. - MetabolismOpen Access
eIF4G1 and carboxypeptidase E axis dysregulation in O-GlcNAc transferase–deficient pancreatic β-cells contributes to hyperproinsulinemia in mice
Journal of Biological ChemistryVol. 294Issue 35p13040–13050Published online: July 12, 2019- Seokwon Jo
- Amber Lockridge
- Emilyn U. Alejandro
Cited in Scopus: 17An early hallmark of type 2 diabetes is a failure of proinsulin-to-insulin processing in pancreatic β-cells, resulting in hyperproinsulinemia. Proinsulin processing is quite sensitive to nutrient flux, and β-cell–specific deletion of the nutrient-sensing protein modifier OGlcNAc transferase (βOGTKO) causes β-cell failure and diabetes, including early development of hyperproinsulinemia. The mechanisms underlying this latter defect are unknown. Here, using several approaches, including site-directed mutagenesis, Click O-GlcNAc labeling, immunoblotting, and immunofluorescence and EM imaging, we provide the first evidence for a relationship between the O-GlcNAcylation of eukaryotic translation initiation factor 4γ1 (eIF4G1) and carboxypeptidase E (CPE)-dependent proinsulin processing in βOGTKO mice. - Glycobiology and Extracellular MatricesOpen Access
O-GlcNAcylation regulates integrin-mediated cell adhesion and migration via formation of focal adhesion complexes
Journal of Biological ChemistryVol. 294Issue 9p3117–3124Published online: December 26, 2018- Zhiwei Xu
- Tomoya Isaji
- Tomohiko Fukuda
- Yuqin Wang
- Jianguo Gu
Cited in Scopus: 16O-GlcNAcylation is a post-translational modification of a protein serine or threonine residue catalyzed by O-GlcNAc transferase (OGT) in the nucleus and cytoplasm. O-GlcNAcylation plays important roles in the cellular signaling that affect the different biological functions of cells, depending upon cell type. However, whether or not O-GlcNAcylation regulates cell adhesion and migration remains unclear. Here, we used the doxycycline-inducible short hairpin RNA (shRNA) system to establish an OGT knockdown (KD) HeLa cell line and found that O-GlcNAcylation is a key regulator for cell adhesion, migration, and focal adhesion (FA) complex formation. - ASBMB Award ArticlesOpen Access
Nutrient regulation of signaling and transcription
Journal of Biological ChemistryVol. 294Issue 7p2211–2231Published online: January 9, 2019- Gerald W. Hart
Cited in Scopus: 180In the early 1980s, while using purified glycosyltransferases to probe glycan structures on surfaces of living cells in the murine immune system, we discovered a novel form of serine/threonine protein glycosylation (O-linked β-GlcNAc; O-GlcNAc) that occurs on thousands of proteins within the nucleus, cytoplasm, and mitochondria. Prior to this discovery, it was dogma that protein glycosylation was restricted to the luminal compartments of the secretory pathway and on extracellular domains of membrane and secretory proteins. - Gene RegulationOpen Access
O-GlcNAc homeostasis contributes to cell fate decisions during hematopoiesis
Journal of Biological ChemistryVol. 294Issue 4p1363–1379Published online: December 6, 2018- Zhen Zhang
- Matthew P. Parker
- Stefan Graw
- Lesya V. Novikova
- Halyna Fedosyuk
- Joseph D. Fontes
- and others
Cited in Scopus: 20The addition of a single β-d-GlcNAc sugar (O-GlcNAc) by O-GlcNAc-transferase (OGT) and O-GlcNAc removal by O-GlcNAcase (OGA) maintain homeostatic O-GlcNAc levels on cellular proteins. Changes in protein O-GlcNAcylation regulate cellular differentiation and cell fate decisions, but how these changes affect erythropoiesis, an essential process in blood cell formation, remains unclear. Here, we investigated the role of O-GlcNAcylation in erythropoiesis by using G1E-ER4 cells, which carry the erythroid-specific transcription factor GATA-binding protein 1 (GATA-1) fused to the estrogen receptor (GATA-1–ER) and therefore undergo erythropoiesis after β-estradiol (E2) addition. - ImmunologyOpen Access
Glucosamine improves survival in a mouse model of sepsis and attenuates sepsis-induced lung injury and inflammation
Journal of Biological ChemistryVol. 294Issue 2p608–622Published online: November 19, 2018- Ji-Sun Hwang
- Kyung-Hong Kim
- Jiwon Park
- Sang-Min Kim
- Hyeongjin Cho
- Yunkyoung Lee
- and others
Cited in Scopus: 54The aim of the current study was to investigate the effects of glucosamine (GlcN) on septic lethality and sepsis-induced inflammation using animal models of mice and zebrafish. GlcN pretreatment improved survival in the cecal ligation and puncture (CLP)-induced sepsis mouse model and attenuated lipopolysaccharide (LPS)-induced septic lung injury and systemic inflammation. GlcN suppressed LPS-induced M1-specific but not M2-specific gene expression. Furthermore, increased expressions of inflammatory genes in visceral tissue of LPS-injected zebrafish were suppressed by GlcN. - Editors' PicksOpen Access
Metabolic reprogramming of murine cardiomyocytes during autophagy requires the extracellular nutrient sensor decorin
Journal of Biological ChemistryVol. 293Issue 43p16940–16950Published online: July 26, 2018- Maria A. Gubbiotti
- Erin Seifert
- Ulrich Rodeck
- Jan B. Hoek
- Renato V. Iozzo
Cited in Scopus: 18The extracellular matrix is a master regulator of tissue homeostasis in health and disease. Here we examined how the small, leucine-rich, extracellular matrix proteoglycan decorin regulates cardiomyocyte metabolism during fasting in vivo. First, we validated in Dcn−/− mice that decorin plays an essential role in autophagy induced by fasting. High-throughput metabolomics analyses of cardiac tissue in Dcn−/− mice subjected to fasting revealed striking differences in the hexosamine biosynthetic pathway resulting in aberrant cardiac O-β-N-acetylglycosylation as compared with WT mice. - Glycobiology and Extracellular MatricesOpen Access
A genetic model to study O-GlcNAc cycling in immortalized mouse embryonic fibroblasts
Journal of Biological ChemistryVol. 293Issue 35p13673–13681Published online: June 28, 2018- Melissa M. St. Amand
- Michelle R. Bond
- Julia Riedy
- Marcella Comly
- Joseph Shiloach
- John A. Hanover
Cited in Scopus: 7O-GlcNAcylation is an abundant posttranslational protein modification in which the monosaccharide O-GlcNAc is added to Ser/Thr residues by O-GlcNAc transferase and removed by O-GlcNAcase. Analyses of O-GlcNAc–mediated signaling and metabolic phenomena are complicated by factors including unsatisfactory inhibitors and loss-of-function cell lines lacking identical genetic backgrounds. In this work, we generated immortalized WT, Oga knockout, and Ogt floxed allele (Ogt floxed) mouse embryonic fibroblast (MEF) cell lines with similar genetic backgrounds. - Glycobiology and Extracellular MatricesOpen Access
Checkpoint kinase 1–induced phosphorylation of O-linked β-N-acetylglucosamine transferase regulates the intermediate filament network during cytokinesis
Journal of Biological ChemistryVol. 292Issue 48p19548–19555Published online: October 11, 2017- Zhe Li
- Xueyan Li
- Shanshan Nai
- Qizhi Geng
- Ji Liao
- Xingzhi Xu
- and others
Cited in Scopus: 22Checkpoint kinase 1 (Chk1) is a kinase instrumental for orchestrating DNA replication, DNA damage checkpoints, the spindle assembly checkpoint, and cytokinesis. Despite Chk1’s pivotal role in multiple cellular processes, many of its substrates remain elusive. Here, we identified O-linked β-N-acetylglucosamine (O-GlcNAc)-transferase (OGT) as one of Chk1’s substrates. We found that Chk1 interacts with and phosphorylates OGT at Ser-20, which not only stabilizes OGT, but also is required for cytokinesis. - Glycobiology and Extracellular MatricesOpen Access
Sustained O-GlcNAcylation reprograms mitochondrial function to regulate energy metabolism
Journal of Biological ChemistryVol. 292Issue 36p14940–14962Published online: July 24, 2017- Ee Phie Tan
- Steven R. McGreal
- Stefan Graw
- Robert Tessman
- Scott J. Koppel
- Pramod Dhakal
- and others
Cited in Scopus: 57Dysfunctional mitochondria and generation of reactive oxygen species (ROS) promote chronic diseases, which have spurred interest in the molecular mechanisms underlying these conditions. Previously, we have demonstrated that disruption of post-translational modification of proteins with β-linked N-acetylglucosamine (O-GlcNAcylation) via overexpression of the O-GlcNAc-regulating enzymes O-GlcNAc transferase (OGT) or O-GlcNAcase (OGA) impairs mitochondrial function. Here, we report that sustained alterations in O-GlcNAcylation either by pharmacological or genetic manipulation also alter metabolic function. - Molecular Bases of DiseaseOpen Access
Mutations in N-acetylglucosamine (O-GlcNAc) transferase in patients with X-linked intellectual disability
Journal of Biological ChemistryVol. 292Issue 30p12621–12631Published online: June 5, 2017- Anke P. Willems
- Mehmet Gundogdu
- Marlies J.E. Kempers
- Jacques C. Giltay
- Rolph Pfundt
- Martin Elferink
- and others
Cited in Scopus: 47N-Acetylglucosamine (O-GlcNAc) transferase (OGT) regulates protein O-GlcNAcylation, an essential and dynamic post-translational modification. The O-GlcNAc modification is present on numerous nuclear and cytosolic proteins and has been implicated in essential cellular functions such as signaling and gene expression. Accordingly, altered levels of protein O-GlcNAcylation have been associated with developmental defects and neurodegeneration. However, mutations in the OGT gene have not yet been functionally confirmed in humans. - Glycobiology and Extracellular MatricesOpen Access
Hyper-O-GlcNAcylation activates nuclear factor κ-light-chain-enhancer of activated B cells (NF-κB) signaling through interplay with phosphorylation and acetylation
Journal of Biological ChemistryVol. 292Issue 22p9150–9163Published online: April 17, 2017- Zhiyuan Ma
- Robert J. Chalkley
- Keith Vosseller
Cited in Scopus: 36O-GlcNAcylation is the covalent addition of an O-linked β-N-acetylglucosamine (O-GlcNAc) sugar moiety to hydroxyl groups of serine/threonine residues of cytosolic and nuclear proteins. O-GlcNAcylation, analogous to phosphorylation, plays critical roles in gene expression through direct modification of transcription factors, such as NF-κB. Aberrantly increased NF-κB O-GlcNAcylation has been linked to NF-κB constitutive activation and cancer development. Therefore, it is of a great biological and clinical significance to dissect the molecular mechanisms that tune NF-κB activity. - Glycobiology and Extracellular MatricesOpen Access
Fatty acid synthase inhibits the O-GlcNAcase during oxidative stress
Journal of Biological ChemistryVol. 292Issue 16p6493–6511Published online: February 23, 2017- Jennifer A. Groves
- Austin O. Maduka
- Robert N. O'Meally
- Robert N. Cole
- Natasha E. Zachara
Cited in Scopus: 41The dynamic post-translational modification O-linked β-N-acetylglucosamine (O-GlcNAc) regulates thousands of nuclear, cytoplasmic, and mitochondrial proteins. Cellular stress, including oxidative stress, results in increased O-GlcNAcylation of numerous proteins, and this increase is thought to promote cell survival. The mechanisms by which the O-GlcNAc transferase (OGT) and the O-GlcNAcase (OGA), the enzymes that add and remove O-GlcNAc, respectively, are regulated during oxidative stress to alter O-GlcNAcylation are not fully characterized. - Glycobiology and Extracellular MatricesOpen Access
Nutrient-driven O-linked N-acetylglucosamine (O-GlcNAc) cycling impacts neurodevelopmental timing and metabolism
Journal of Biological ChemistryVol. 292Issue 15p6076–6085Published online: February 28, 2017- Stephanie Olivier-Van Stichelen
- Peng Wang
- Marcy Comly
- Dona C. Love
- John A. Hanover
Cited in Scopus: 46Nutrient-driven O-GlcNAcylation is strikingly abundant in the brain and has been linked to development and neurodegenerative disease. We selectively targeted the O-GlcNAcase (Oga) gene in the mouse brain to define the role of O-GlcNAc cycling in the central nervous system. Brain knockout animals exhibited dramatically increased brain O-GlcNAc levels and pleiotropic phenotypes, including early-onset obesity, growth defects, and metabolic dysregulation. Anatomical defects in the Oga knockout included delayed brain differentiation and neurogenesis as well as abnormal proliferation accompanying a developmental delay. - Glycobiology and Extracellular MatricesOpen Access
Mitochondrial O-GlcNAc Transferase (mOGT) Regulates Mitochondrial Structure, Function, and Survival in HeLa Cells
Journal of Biological ChemistryVol. 292Issue 11p4499–4518Published online: January 18, 2017- Juliana L. Sacoman
- Raul Y. Dagda
- Amanda R. Burnham-Marusich
- Ruben K. Dagda
- Patricia M. Berninsone
Cited in Scopus: 54O-Linked N-acetylglucosamine transferase (OGT) catalyzes O-GlcNAcylation of target proteins and regulates numerous biological processes. OGT is encoded by a single gene that yields nucleocytosolic and mitochondrial isoforms. To date, the role of the mitochondrial isoform of OGT (mOGT) remains largely unknown. Using high throughput proteomics, we identified 84 candidate mitochondrial glycoproteins, of which 44 are novel. Notably, two of the candidate glycoproteins identified (cytochrome oxidase 2 (COX2) and NADH:ubiquinone oxidoreductase core subunit 4 (MT-ND4)) are encoded by mitochondrial DNA. - Glycobiology and Extracellular MatricesOpen Access
Lipopolysaccharide (LPS)-stimulated iNOS Induction Is Increased by Glucosamine under Normal Glucose Conditions but Is Inhibited by Glucosamine under High Glucose Conditions in Macrophage Cells
Journal of Biological ChemistryVol. 292Issue 5p1724–1736Published online: December 7, 2016- Ji-Sun Hwang
- Mi-Youn Kwon
- Kyung-Hong Kim
- Yunkyoung Lee
- In Kyoon Lyoo
- Jieun E. Kim
- and others
Cited in Scopus: 42We investigated the regulatory effect of glucosamine (GlcN) for the production of nitric oxide (NO) and expression of inducible NO synthase (iNOS) under various glucose conditions in macrophage cells. At normal glucose concentrations, GlcN dose dependently increased LPS-stimulated production of NO/iNOS. However, GlcN suppressed NO/iNOS production under high glucose culture conditions. Moreover, GlcN suppressed LPS-induced up-regulation of COX-2, IL-6, and TNF-α mRNAs under 25 mm glucose conditions yet did not inhibit up-regulation under 5 mm glucose conditions. - Gene RegulationOpen Access
O-GlcNAcase Is an RNA Polymerase II Elongation Factor Coupled to Pausing Factors SPT5 and TIF1β
Journal of Biological ChemistryVol. 291Issue 43p22703–22713Published online: September 6, 2016- Melissa Resto
- Bong-Hyun Kim
- Alfonso G. Fernandez
- Brian J. Abraham
- Keji Zhao
- Brian A. Lewis
Cited in Scopus: 20We describe here the identification and functional characterization of the enzyme O-GlcNAcase (OGA) as an RNA polymerase II elongation factor. Using in vitro transcription elongation assays, we show that OGA activity is required for elongation in a crude nuclear extract system, whereas in a purified system devoid of OGA the addition of rOGA inhibited elongation. Furthermore, OGA is physically associated with the known RNA polymerase II (pol II) pausing/elongation factors SPT5 and TRIM28-KAP1-TIF1β, and a purified OGA-SPT5-TIF1β complex has elongation properties. - Glycobiology and Extracellular MatricesOpen Access
O-Linked N-Acetylglucosamine (O-GlcNAc) Transferase and O-GlcNAcase Interact with Mi2β Protein at the Aγ-Globin Promoter
Journal of Biological ChemistryVol. 291Issue 30p15628–15640Published online: May 26, 2016- Zhen Zhang
- Flávia C. Costa
- Ee Phie Tan
- Nathan Bushue
- Luciano DiTacchio
- Catherine E. Costello
- and others
Cited in Scopus: 17One mode of γ-globin gene silencing involves a GATA-1·FOG-1·Mi2β repressor complex that binds to the −566 GATA site relative to the Aγ-globin gene cap site. However, the mechanism of how this repressor complex is assembled at the −566 GATA site is unknown. In this study, we demonstrate that the O-linked N-acetylglucosamine (O-GlcNAc) processing enzymes, O-GlcNAc-transferase (OGT) and O-GlcNAcase (OGA), interact with the Aγ-globin promoter at the −566 GATA repressor site; however, mutation of the GATA site to GAGA significantly reduces OGT and OGA promoter interactions in β-globin locus yeast artificial chromosome (β-YAC) bone marrow cells.