Overexpression of Shrm4 promotes proliferation and differentiation of neural stem cells through activation of GABA signaling pathway

被引:0
作者
Runhui Tian
Kaimin Guo
Bo Wu
Hongbo Wang
机构
[1] The First Hospital of Jilin University,Department of Psychology
[2] The First Hospital of Jilin University,Department of Andrology
[3] The Sixth People’s Hospital of Changchun,Department of Psychology
[4] The First Hospital of Jilin University,Department of Pediatric Respiratory Disease
来源
Molecular and Cellular Biochemistry | 2020年 / 463卷
关键词
Shrm4; GABA; Neural stem cells; Proliferation; Differentiation; Baclofen; CGP54626;
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中图分类号
学科分类号
摘要
Shrm4 is a protein that is exclusively expressed in polarized tissues. The physiological function of Shrm4 in the brain was required to be elucidated. Thus, we aimed to explore how the Shrm4-mediated gamma-aminobutyric acid (GABA) pathway affected neural stem cells (NSCs). At first, the Nestin expression in cultured NSCs was identified. After determination of the interaction of Shrm4 and GABAB1, a series of in vitro experiment were performed to detect cell proliferation, the ability of cell colony formation, degree that NSCs differentiated into neurons, the apoptosis rate, and cell cycle. The levels of Shrm4, GABAB1, Bcl-2-associated protein x (Bax), B cell lymphoma 2 (Bcl-2), cleaved Caspase-3, microtubule-associated protein 2 (MAP-2) as well as suppressor of cytokine signaling 2 (SOCS2) were detected to further assess the role of Shrm4 and GABA pathway in NSCs. Initially, we found that Shrm4 could bind to GABAB1, and overexpression of Shrm4 or activation of GABAB1 increased the number of positive cells, and promoted cell viability, colony formation rate and differentiation of NSCs. After overexpression of Shrm4 or activation of GABAB1, cells in the G1 phase were decreased, while those in the S phase were increased with an inhibited cell apoptosis rate in the NSCs. Besides, the overexpression of Shrm4 or activation of GABAB1 upregulated the levels of Shrm4, GABAB1, Bcl-2, MAP-2 and SOCS2, while downregulated Bax and cleaved Caspase-3 in NSCs. Overall, overexpression of Shrm4 activated GABAB1 to stimulate the proliferation and differentiation of NSCs. Thus, Shrm4 might be considered as a novel target for promoting the proliferation and differentiation of NSCs.
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页码:115 / 126
页数:11
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  • [1] Shoemaker LD(2016)Neural stem cells (NSCs) and proteomics Mol Cell Proteom 15 344-354
  • [2] Kornblum HI(2017)Neural stem cell plasticity: advantages in therapy for the injured central nervous system Front Cell Dev Biol 5 52-11933
  • [3] Ottoboni L(2007)Neural stem cells improve memory in an inducible mouse model of neuronal loss J Neurosci 27 11925-78
  • [4] Merlini A(2014)Combined use of NGF/BDNF/bFGF promotes proliferation and differentiation of neural stem cells in vitro Int J Dev Neurosci 38 74-3450
  • [5] Martino G(2006)Proliferation and differentiation of neural stem cells on lysine-alanine sequential polymer substrates Biomaterials 27 3441-1757
  • [6] Yamasaki TR(2015)Inhibitory effects of bisphenol-A on neural stem cells proliferation and differentiation in the rat brain are dependent on Wnt/beta-Catenin pathway Mol Neurobiol 52 1735-63
  • [7] Blurton-Jones M(2006)A new standard nomenclature for proteins related to Apx and Shroom BMC Cell Biol 7 18-590
  • [8] Morrissette DA(2007)Shroom4 (Kiaa1202) is an actin-associated protein implicated in cytoskeletal organization Cell Motil Cytoskelet 64 49-4355
  • [9] Chen SQ(2006)Disruptions of the novel KIAA1202 gene are associated with X-linked mental retardation Hum Genet 118 578-3411
  • [10] Cai Q(2017)Epilepsy and intellectual disability linked protein Shrm4 interaction with GABABRs shapes inhibitory neurotransmission Nat Commun 8 14536-206