Literature DB >> 20028975

Differential phosphorylation of RhoGDI mediates the distinct cycling of Cdc42 and Rac1 to regulate second-phase insulin secretion.

Zhanxiang Wang1, Debbie C Thurmond.   

Abstract

Cdc42 cycling through GTP/GDP states is critical for its function in the second/granule mobilization phase of insulin granule exocytosis in pancreatic islet beta cells, although the identities of the Cdc42 cycling proteins involved remain incomplete. Using a tandem affinity purification-based mass spectrometry screen for Cdc42 cycling factors in beta cells, RhoGDI was identified. RNA interference-mediated depletion of RhoGDI from isolated islets selectively amplified the second phase of insulin release, consistent with the role of RhoGDI as a Cdc42 cycling factor. Replenishment of RhoGDI to RNA interference-depleted cells normalized secretion, confirming the action of RhoGDI to be that of a negative regulator of Cdc42 activation. Given that RhoGDI also regulates Rac1 activation in beta cells, and that Rac1 activation occurs in a Cdc42-dependent manner, the question as to how the beta cell utilized RhoGDI for differential Cdc42 and Rac1 cycling was explored. Co-immunoprecipitation was used to determine that RhoGDI-Cdc42 complexes dissociated upon stimulation of beta cells with glucose for 3 min, correlating with the timing of glucose-induced Cdc42 activation and the onset of RhoGDI tyrosine phosphorylation. Glucose-induced disruption of RhoGDI-Rac1 complexes occurred subsequent to this, coincident with Rac1 activation, which followed the onset of RhoGDI serine phosphorylation. RhoGDI-Cdc42 complex dissociation was blocked by mutation of RhoGDI residue Tyr-156, whereas RhoGDI-Rac1 dissociation was blocked by RhoGDI mutations Y156F and S101A/S174A. Finally, expression of a triple Y156F/S101A/S174A-RhoGDI mutant specifically inhibited only the second/granule mobilization phase of glucose-stimulated insulin secretion, overall supporting the integration of RhoGDI into the activation cycling mechanism of glucose-responsive small GTPases.

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Year:  2009        PMID: 20028975      PMCID: PMC2825414          DOI: 10.1074/jbc.M109.072421

Source DB:  PubMed          Journal:  J Biol Chem        ISSN: 0021-9258            Impact factor:   5.157


  54 in total

1.  Phosphorylation of RhoGDI by Src regulates Rho GTPase binding and cytosol-membrane cycling.

Authors:  Céline DerMardirossian; Gabriel Rocklin; Ji-Yeon Seo; Gary M Bokoch
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2.  First phase of glucose-stimulated insulin secretion from MIN 6 cells does not always require extracellular calcium influx.

Authors:  Makoto Shigeto; Masashi Katsura; Masafumi Matsuda; Seitaro Ohkuma; Kohei Kaku
Journal:  J Pharmacol Sci       Date:  2006-08-05       Impact factor: 3.337

3.  Imaging exocytosis of single insulin secretory granules with evanescent wave microscopy: distinct behavior of granule motion in biphasic insulin release.

Authors:  Mica Ohara-Imaizumi; Yoko Nakamichi; Toshiaki Tanaka; Hitoshi Ishida; Shinya Nagamatsu
Journal:  J Biol Chem       Date:  2001-12-21       Impact factor: 5.157

4.  Evidence for differential roles of the Rho subfamily of GTP-binding proteins in glucose- and calcium-induced insulin secretion from pancreatic beta cells.

Authors:  A Kowluru; G Li; M E Rabaglia; V B Segu; F Hofmann; K Aktories; S A Metz
Journal:  Biochem Pharmacol       Date:  1997-11-15       Impact factor: 5.858

5.  Caveolin-1 functions as a novel Cdc42 guanine nucleotide dissociation inhibitor in pancreatic beta-cells.

Authors:  Angela K Nevins; Debbie C Thurmond
Journal:  J Biol Chem       Date:  2006-05-19       Impact factor: 5.157

6.  Novel regulation by Rac1 of glucose- and forskolin-induced insulin secretion in INS-1 beta-cells.

Authors:  Jingsong Li; Ruihua Luo; Anjaneyulu Kowluru; GuoDong Li
Journal:  Am J Physiol Endocrinol Metab       Date:  2004-01-21       Impact factor: 4.310

7.  Glucose-stimulated insulin secretion is coupled to the interaction of actin with the t-SNARE (target membrane soluble N-ethylmaleimide-sensitive factor attachment protein receptor protein) complex.

Authors:  Debbie C Thurmond; Carmen Gonelle-Gispert; Megumi Furukawa; Philippe A Halban; Jeffrey E Pessin
Journal:  Mol Endocrinol       Date:  2003-01-16

8.  Glucose regulates the cortical actin network through modulation of Cdc42 cycling to stimulate insulin secretion.

Authors:  Angela K Nevins; Debbie C Thurmond
Journal:  Am J Physiol Cell Physiol       Date:  2003-05-21       Impact factor: 4.249

9.  Residual insulin secretion in insulin dependent diabetes mellitus.

Authors:  S Rogers; M Silink
Journal:  Arch Dis Child       Date:  1985-03       Impact factor: 3.791

Review 10.  Protein prenylation in glucose-induced insulin secretion from the pancreatic islet beta cell: a perspective.

Authors:  Anjaneyulu Kowluru
Journal:  J Cell Mol Med       Date:  2007-12-05       Impact factor: 5.310

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  39 in total

Review 1.  The Rho guanine nucleotide exchange factors Intersectin 1L and β-Pix control calcium-regulated exocytosis in neuroendocrine PC12 cells.

Authors:  F Momboisse; S Ory; M Ceridono; V Calco; N Vitale; M-F Bader; S Gasman
Journal:  Cell Mol Neurobiol       Date:  2010-11-19       Impact factor: 5.046

2.  Characterization of Acyl-CoA synthetase isoforms in pancreatic beta cells: Gene silencing shows participation of ACSL3 and ACSL4 in insulin secretion.

Authors:  Israr-Ul H Ansari; Melissa J Longacre; Scott W Stoker; Mindy A Kendrick; Lucas M O'Neill; Laura J Zitur; Luis A Fernandez; James M Ntambi; Michael J MacDonald
Journal:  Arch Biochem Biophys       Date:  2017-02-11       Impact factor: 4.013

Review 3.  Dynamics of insulin secretion and the clinical implications for obesity and diabetes.

Authors:  Susumu Seino; Tadao Shibasaki; Kohtaro Minami
Journal:  J Clin Invest       Date:  2011-06-01       Impact factor: 14.808

Review 4.  Dyslipidaemia of diabetes and the intestine.

Authors:  Gerald H Tomkin; Daphne Owens
Journal:  World J Diabetes       Date:  2015-07-10

5.  Tyrosine 397 phosphorylation is critical for FAK-promoted Rac1 activation and invasive properties in oral squamous cell carcinoma cells.

Authors:  Lykke Sylow
Journal:  Lab Invest       Date:  2016-09       Impact factor: 5.662

6.  Gelsolin associates with the N terminus of syntaxin 4 to regulate insulin granule exocytosis.

Authors:  Michael A Kalwat; Dean A Wiseman; Wei Luo; Zhanxiang Wang; Debbie C Thurmond
Journal:  Mol Endocrinol       Date:  2011-11-22

7.  PPARβ/δ affects pancreatic β cell mass and insulin secretion in mice.

Authors:  José Iglesias; Sebastian Barg; David Vallois; Shawon Lahiri; Catherine Roger; Akadiri Yessoufou; Sylvain Pradevand; Angela McDonald; Claire Bonal; Frank Reimann; Fiona Gribble; Marie-Bernard Debril; Daniel Metzger; Pierre Chambon; Pedro Herrera; Guy A Rutter; Marc Prentki; Bernard Thorens; Walter Wahli
Journal:  J Clin Invest       Date:  2012-10-24       Impact factor: 14.808

8.  Characterization of phospholipids in insulin secretory granules and mitochondria in pancreatic beta cells and their changes with glucose stimulation.

Authors:  Michael J MacDonald; Lacmbouh Ade; James M Ntambi; Israr-Ul H Ansari; Scott W Stoker
Journal:  J Biol Chem       Date:  2015-03-11       Impact factor: 5.157

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

Authors:  Baile Wang; Huige Lin; Xiaomu Li; Wenqi Lu; Jae Bum Kim; Aimin Xu; Kenneth K Y Cheng
Journal:  Proc Natl Acad Sci U S A       Date:  2020-10-29       Impact factor: 11.205

10.  VAV2, a guanine nucleotide exchange factor for Rac1, regulates glucose-stimulated insulin secretion in pancreatic beta cells.

Authors:  Rajakrishnan Veluthakal; Ragadeepthi Tunduguru; Daleep Kumar Arora; Vaibhav Sidarala; Khadija Syeda; Cornelis P Vlaar; Debbie C Thurmond; Anjaneyulu Kowluru
Journal:  Diabetologia       Date:  2015-07-31       Impact factor: 10.122

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