Literature DB >> 32245798

Coregulator Sin3a Promotes Postnatal Murine β-Cell Fitness by Regulating Genes in Ca2+ Homeostasis, Cell Survival, Vesicle Biosynthesis, Glucose Metabolism, and Stress Response.

Xiaodun Yang1, Sarah M Graff2, Cody N Heiser1,3,4, Kung-Hsien Ho1, Bob Chen1,3,4, Alan J Simmons1,3, Austin N Southard-Smith1,3, Gregory David5, David A Jacobson2, Irina Kaverina1, Christopher V E Wright1, Ken S Lau1,3,4, Guoqiang Gu6.   

Abstract

Swi-independent 3a and 3b (Sin3a and Sin3b) are paralogous transcriptional coregulators that direct cellular differentiation, survival, and function. Here, we report that mouse Sin3a and Sin3b are coproduced in most pancreatic cells during embryogenesis but become much more enriched in endocrine cells in adults, implying continued essential roles in mature endocrine cell function. Mice with loss of Sin3a in endocrine progenitors were normal during early postnatal stages but gradually developed diabetes before weaning. These physiological defects were preceded by the compromised survival, insulin-vesicle packaging, insulin secretion, and nutrient-induced Ca2+ influx of Sin3a-deficient β-cells. RNA sequencing coupled with candidate chromatin immunoprecipitation assays revealed several genes that could be directly regulated by Sin3a in β-cells, which modulate Ca2+/ion transport, cell survival, vesicle/membrane trafficking, glucose metabolism, and stress responses. Finally, mice with loss of both Sin3a and Sin3b in multipotent embryonic pancreatic progenitors had significantly reduced islet cell mass at birth, caused by decreased endocrine progenitor production and increased β-cell death. These findings highlight the stage-specific requirements for the presumed "general" coregulators Sin3a and Sin3b in islet β-cells, with Sin3a being dispensable for differentiation but required for postnatal function and survival.
© 2020 by the American Diabetes Association.

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Year:  2020        PMID: 32245798      PMCID: PMC7243292          DOI: 10.2337/db19-0721

Source DB:  PubMed          Journal:  Diabetes        ISSN: 0012-1797            Impact factor:   9.461


  48 in total

1.  mSin3A corepressor regulates diverse transcriptional networks governing normal and neoplastic growth and survival.

Authors:  Jan-Hermen Dannenberg; Gregory David; Sheng Zhong; Jaco van der Torre; Wing H Wong; Ronald A Depinho
Journal:  Genes Dev       Date:  2005-07-01       Impact factor: 11.361

Review 2.  Mechanisms of COPII vesicle formation and protein sorting.

Authors:  Ken Sato; Akihiko Nakano
Journal:  FEBS Lett       Date:  2007-02-14       Impact factor: 4.124

3.  Sin3a regulates epithelial progenitor cell fate during lung development.

Authors:  Changfu Yao; Gianni Carraro; Bindu Konda; Xiangrong Guan; Takako Mizuno; Norika Chiba; Matthew Kostelny; Adrianne Kurkciyan; Gregory David; Jonathan L McQualter; Barry R Stripp
Journal:  Development       Date:  2017-06-15       Impact factor: 6.868

4.  Fam60a defines a variant Sin3a-Hdac complex in embryonic stem cells required for self-renewal.

Authors:  Gundula Streubel; Darren J Fitzpatrick; Giorgio Oliviero; Andrea Scelfo; Bruce Moran; Sudipto Das; Nayla Munawar; Ariane Watson; Kieran Wynne; Gian Luca Negri; Eugene T Dillon; SriGanesh Jammula; Karsten Hokamp; Darran P O'Connor; Diego Pasini; Gerard Cagney; Adrian P Bracken
Journal:  EMBO J       Date:  2017-05-29       Impact factor: 11.598

5.  Chromatin associated Sin3A is essential for male germ cell lineage in the mouse.

Authors:  Jessica Pellegrino; Diego H Castrillon; Gregory David
Journal:  Dev Biol       Date:  2012-07-20       Impact factor: 3.582

6.  The mSin3A chromatin-modifying complex is essential for embryogenesis and T-cell development.

Authors:  Shaun M Cowley; Brian M Iritani; Susan M Mendrysa; Tina Xu; Pei Feng Cheng; Jason Yada; H Denny Liggitt; Robert N Eisenman
Journal:  Mol Cell Biol       Date:  2005-08       Impact factor: 4.272

7.  Inactivating the permanent neonatal diabetes gene Mnx1 switches insulin-producing β-cells to a δ-like fate and reveals a facultative proliferative capacity in aged β-cells.

Authors:  Fong Cheng Pan; Marcela Brissova; Alvin C Powers; Samuel Pfaff; Christopher V E Wright
Journal:  Development       Date:  2015-11-01       Impact factor: 6.868

8.  LSD1 coordinates with the SIN3A/HDAC complex and maintains sensitivity to chemotherapy in breast cancer.

Authors:  Yang Yang; Wei Huang; Rongfang Qiu; Ruiqiong Liu; Yi Zeng; Jie Gao; Yu Zheng; Yongqiang Hou; Shuang Wang; Wenqian Yu; Shuai Leng; Dandan Feng; Yan Wang
Journal:  J Mol Cell Biol       Date:  2018-08-01       Impact factor: 6.216

9.  MLL3 and MLL4 Methyltransferases Bind to the MAFA and MAFB Transcription Factors to Regulate Islet β-Cell Function.

Authors:  David W Scoville; Holly A Cyphert; Lan Liao; Jianming Xu; Al Reynolds; Shuangli Guo; Roland Stein
Journal:  Diabetes       Date:  2015-07-15       Impact factor: 9.461

10.  Loss of Calreticulin Uncovers a Critical Role for Calcium in Regulating Cellular Lipid Homeostasis.

Authors:  Wen-An Wang; Wen-Xin Liu; Serpen Durnaoglu; Sun-Kyung Lee; Jihong Lian; Richard Lehner; Joohong Ahnn; Luis B Agellon; Marek Michalak
Journal:  Sci Rep       Date:  2017-07-19       Impact factor: 4.379

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  1 in total

1.  Groucho co-repressor proteins regulate β cell development and proliferation by repressing Foxa1 in the developing mouse pancreas.

Authors:  Alexandra Theis; Ruth A Singer; Diana Garofalo; Alexander Paul; Anila Narayana; Lori Sussel
Journal:  Development       Date:  2021-03-24       Impact factor: 6.868

  1 in total

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