Literature DB >> 22578083

Discovery of novel glucose-regulated proteins in isolated human pancreatic islets using LC-MS/MS-based proteomics.

Alexandra C Schrimpe-Rutledge1, Ghislaine Fontès, Marina A Gritsenko, Angela D Norbeck, David J Anderson, Katrina M Waters, Joshua N Adkins, Richard D Smith, Vincent Poitout, Thomas O Metz.   

Abstract

The prevalence of diabetes mellitus is increasing dramatically throughout the world, and the disease has become a major public health issue. The most common form of the disease, type 2 diabetes, is characterized by insulin resistance and insufficient insulin production from the pancreatic beta-cell. Since glucose is the most potent regulator of beta-cell function under physiological conditions, identification of the insulin secretory defect underlying type 2 diabetes requires a better understanding of glucose regulation of human beta-cell function. To this aim, a bottom-up LC-MS/MS-based proteomics approach was used to profile pooled islets from multiple donors under basal (5 mM) or high (15 mM) glucose conditions. Our analysis discovered 256 differentially abundant proteins (∼p < 0.05) after 24 h of high glucose exposure from more than 4500 identified in total. Several novel glucose-regulated proteins were elevated under high glucose conditions, including regulators of mRNA splicing (pleiotropic regulator 1), processing (retinoblastoma binding protein 6), and function (nuclear RNA export factor 1), in addition to neuron navigator 1 and plasminogen activator inhibitor 1. Proteins whose abundances markedly decreased during incubation at 15 mM glucose included Bax inhibitor 1 and synaptotagmin-17. Up-regulation of dicer 1 and SLC27A2 and down-regulation of phospholipase Cβ4 were confirmed by Western blots. Many proteins found to be differentially abundant after high glucose stimulation are annotated as uncharacterized or hypothetical. These findings expand our knowledge of glucose regulation of the human islet proteome and suggest many hitherto unknown responses to glucose that require additional studies to explore novel functional roles.

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Year:  2012        PMID: 22578083      PMCID: PMC3391329          DOI: 10.1021/pr3002996

Source DB:  PubMed          Journal:  J Proteome Res        ISSN: 1535-3893            Impact factor:   4.466


  76 in total

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2.  High glucose induces dysfunction in insulin secretory cells by different pathways: a proteomic approach.

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3.  Nutrient control of insulin secretion in isolated normal human islets.

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Journal:  Diabetes       Date:  2006-12       Impact factor: 9.461

4.  Cloning, gene expression, and characterization of CP27, a novel gene in mouse embryogenesis.

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5.  Impaired gene and protein expression of exocytotic soluble N-ethylmaleimide attachment protein receptor complex proteins in pancreatic islets of type 2 diabetic patients.

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Journal:  Diabetes       Date:  2006-02       Impact factor: 9.461

6.  Palmitate inhibits insulin gene expression by altering PDX-1 nuclear localization and reducing MafA expression in isolated rat islets of Langerhans.

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7.  Genome-wide association analysis identifies loci for type 2 diabetes and triglyceride levels.

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8.  Prevention of obesity and insulin resistance in mice lacking plasminogen activator inhibitor 1.

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Journal:  Diabetes       Date:  2004-02       Impact factor: 9.461

9.  Oligonucleotide microarray analysis of intact human pancreatic islets: identification of glucose-responsive genes and a highly regulated TGFbeta signaling pathway.

Authors:  Anath Shalev; Cynthia A Pise-Masison; Michael Radonovich; Steven C Hoffmann; Boaz Hirshberg; John N Brady; David M Harlan
Journal:  Endocrinology       Date:  2002-09       Impact factor: 4.736

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Authors:  Andrew D Johnson; Christopher J O'Donnell
Journal:  BMC Med Genet       Date:  2009-01-22       Impact factor: 2.103

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  29 in total

1.  Sample preparation protocol for bottom-up proteomic analysis of the secretome of the islets of Langerhans.

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2.  Insulin biosynthetic interaction network component, TMEM24, facilitates insulin reserve pool release.

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3.  GRP94 Is an Essential Regulator of Pancreatic β-Cell Development, Mass, and Function in Male Mice.

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Journal:  Endocrinology       Date:  2018-02-01       Impact factor: 4.736

4.  Unbiased Profiling of the Human Proinsulin Biosynthetic Interaction Network Reveals a Role for Peroxiredoxin 4 in Proinsulin Folding.

Authors:  Duc T Tran; Anita Pottekat; Saiful A Mir; Salvatore Loguercio; Insook Jang; Alexandre Rosa Campos; Kathleen M Scully; Reyhaneh Lahmy; Ming Liu; Peter Arvan; William E Balch; Randal J Kaufman; Pamela Itkin-Ansari
Journal:  Diabetes       Date:  2020-05-26       Impact factor: 9.461

5.  Over-expression of insulin-response element binding protein-1 (IRE-BP1) in mouse pancreatic islets increases expression of RACK1 and TCTP: Beta cell markers of high glucose sensitivity.

Authors:  Betty C Villafuerte; Michelle T Barati; Madhavi J Rane; Susan Isaacs; Ming Li; Daniel W Wilkey; Michael L Merchant
Journal:  Biochim Biophys Acta Proteins Proteom       Date:  2016-11-03       Impact factor: 3.036

6.  A proteome analysis of pig pancreatic islets and exocrine tissue by liquid chromatography with tandem mass spectrometry.

Authors:  Yoshiki Nakashima; Chika Miyagi-Shiohira; Naoya Kobayashi; Issei Saitoh; Masami Watanabe; Hirofumi Noguchi
Journal:  Islets       Date:  2017-11-03       Impact factor: 2.694

Review 7.  The pancreatic β-cell transcriptome and integrated-omics.

Authors:  David M Blodgett; Anthony J Cura; David M Harlan
Journal:  Curr Opin Endocrinol Diabetes Obes       Date:  2014-04       Impact factor: 3.243

8.  Label-Free LC-MS/MS Strategy for Comprehensive Proteomic Profiling of Human Islets Collected Using Laser Capture Microdissection from Frozen Pancreata.

Authors:  Lina Zhang; Giacomo Lanzoni; Matteo Battarra; Luca Inverardi; Qibin Zhang
Journal:  Methods Mol Biol       Date:  2019

9.  Proteomic profiling of human islets collected from frozen pancreata using laser capture microdissection.

Authors:  Lina Zhang; Giacomo Lanzoni; Matteo Battarra; Luca Inverardi; Qibin Zhang
Journal:  J Proteomics       Date:  2016-09-13       Impact factor: 4.044

10.  Fatty Acid Transport Proteins: Targeting FATP2 as a Gatekeeper Involved in the Transport of Exogenous Fatty Acids.

Authors:  Paul N Black; Constance Ahowesso; David Montefusco; Nipun Saini; Concetta C DiRusso
Journal:  Medchemcomm       Date:  2016-02-19       Impact factor: 3.597

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