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PMID: 33122440 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

The adaptor protein APPL2 controls glucose-stimulated insulin secretion via F-actin remodeling in pancreatic β-cells.

Proceedings of the National Academy of Sciences of the United States of America ·Vol. 117 ·No. 45 ·2020-00-10 ·页码 28307-28315

Wang B, Lin H, Li X, Lu W, Kim JB, Xu A, Cheng KKY

Abstract

Filamentous actin (F-actin) cytoskeletal remodeling is critical for glucose-stimulated insulin secretion (GSIS) in pancreatic β-cells, and its dysregulation causes type 2 diabetes. The adaptor protein APPL1 promotes first-phase GSIS by up-regulating soluble N-ethylmaleimide-sensitive factor attachment protein receptor (SNARE) protein expression. However, whether APPL2 (a close homology of APPL1 with the same domain organization) plays a role in β-cell functions is unknown. Here, we show that APPL2 enhances GSIS by promoting F-actin remodeling via the small GTPase Rac1 in pancreatic β-cells. β-cell specific abrogation of APPL2 impaired GSIS, leading to glucose intolerance in mice. APPL2 deficiency largely abolished glucose-induced first- and second-phase insulin secretion in pancreatic islets. Real-time live-cell imaging and phalloidin staining revealed that APPL2 deficiency abolished glucose-induced F-actin depolymerization in pancreatic islets. Likewise, knockdown of APPL2 expression impaired glucose-stimulated F-actin depolymerization and subsequent insulin secretion in INS-1E cells, which were attributable to the impairment of Ras-related C3 botulinum toxin substrate 1 (Rac1) activation. Treatment with the F-actin depolymerization chemical compounds or overexpression of gelsolin (a F-actin remodeling protein) rescued APPL2 deficiency-induced defective GSIS. In addition, APPL2 interacted with Rac GTPase activating protein 1 (RacGAP1) in a glucose-dependent manner via the bin/amphiphysin/rvs-pleckstrin homology (BAR-PH) domain of APPL2 in INS-1E cells and HEK293 cells. Concomitant knockdown of RacGAP1 expression reverted APPL2 deficiency-induced defective GSIS, F-actin remodeling, and Rac1 activation in INS-1E cells. Our data indicate that APPL2 interacts with RacGAP1 and suppresses its negative action on Rac1 activity and F-actin depolymerization thereby enhancing GSIS in pancreatic β-cells.

Keywords
APPL2 F-actin depolymerization Rac1 glucose-stimulated insulin secretion type 2 diabetes
MeSH 主题词
Actin Cytoskeleton/metabolism Actins/metabolism Adaptor Proteins, Signal Transducing/genetics,metabolism,pharmacology Animals Diabetes Mellitus, Type 2/metabolism Female GTPase-Activating Proteins/metabolism Gene Knockdown Techniques Glucose/metabolism Glucose Intolerance HEK293 Cells Humans Insulin Secretion/drug effects Insulin-Secreting Cells/metabolism Male Mice Mice, Knockout Neuropeptides/genetics,metabolism SNARE Proteins/metabolism Transcriptome rac1 GTP-Binding Protein/genetics,metabolism
化学物质
APPL2 protein, human Actins Adaptor Proteins, Signal Transducing Appl1 protein, mouse DCC-interacting protein 13-beta, mouse GTPase-Activating Proteins Neuropeptides RAC1 protein, human Rac1 protein, mouse SNARE Proteins mgcRacGAP rac1 GTP-Binding Protein Glucose
作者与单位
共 7 位作者,点击展开单位 / ORCID
Wang Baile ORCID
State Key Laboratory of Pharmaceutical Biotechnology, The University of Hong Kong, Hong Kong, China. | Department of Medicine, The University of Hong Kong, Hong Kong, China.
Lin Huige ORCID
Department of Health Technology and Informatics, The Hong Kong Polytechnic University, Hong Kong, China.
Li Xiaomu ORCID
Department of Endocrinology and Metabolism, Zhongshan Hospital, Fudan University, Shanghai 200032, China.
Lu Wenqi
Department of Health Technology and Informatics, The Hong Kong Polytechnic University, Hong Kong, China.
Kim Jae Bum
Department of Biological Sciences, Institute of Molecular Biology and Genetics, Center for Adipose Tissue Remodeling, Seoul National University, Seoul 08826, South Korea.
Xu Aimin ORCID
State Key Laboratory of Pharmaceutical Biotechnology, The University of Hong Kong, Hong Kong, China; amxu@hku.hk kenneth.ky.cheng@polyu.edu.hk. | Department of Medicine, The University of Hong Kong, Hong Kong, China. | Department of Pharmacology & Pharmacy, The University of Hong Kong, Hong Kong, China.
Cheng Kenneth K Y ORCID
Department of Health Technology and Informatics, The Hong Kong Polytechnic University, Hong Kong, China; amxu@hku.hk kenneth.ky.cheng@polyu.edu.hk.
Article Info
Journal
Proceedings of the National Academy of Sciences of the United States of America
Abbr.
Proc Natl Acad Sci U S A
ISSN
1091-6490
Published
2020-00-10
电子出版
2020-00-29
页码
28307-28315
Language
English
Country/Region
United States
NLM ID
7505876
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