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RNA-seq-based identification of Star upregulation by islet amyloid formation.

Citation
Hogan, M. F., et al. “Rna-Seq-Based Identification Of Star Upregulation By Islet Amyloid Formation.”. Protein Engineering, Design & Selection : Peds, pp. 67-76.
Center University of Washington
Author Meghan F Hogan, Mark Ziemann, Harikrishnan K N, Hanah Rodriguez, Antony Kaspi, Nathalie Esser, Andrew T Templin, Assam El-Osta, Steven E Kahn
Keywords RNA-seq, amylin, amyloid, diabetes, glucose, islet amyloid polypeptide, islets, steroidogenic acute regulatory protein, β-Cell
Abstract

Aggregation of islet amyloid polypeptide (IAPP) into islet amyloid results in β-cell toxicity in human type 2 diabetes. To determine the effect of islet amyloid formation on gene expression, we performed ribonucleic acid (RNA) sequencing (RNA-seq) analysis using cultured islets from either wild-type mice (mIAPP), which are not amyloid prone, or mice that express human IAPP (hIAPP), which develop amyloid. Comparing mIAPP and hIAPP islets, 5025 genes were differentially regulated (2439 upregulated and 2586 downregulated). When considering gene sets (reactomes), 248 and 52 pathways were up- and downregulated, respectively. Of the top 100 genes upregulated under two conditions of amyloid formation, seven were common. Of these seven genes, only steroidogenic acute regulatory protein (Star) demonstrated no effect of glucose per se to modify its expression. We confirmed this differential gene expression using quantitative reverse transcription polymerase chain reaction (qRT-PCR) and also demonstrated the presence of STAR protein in islets containing amyloid. Furthermore, Star is a part of reactomes representing metabolism, metabolism of lipids, metabolism of steroid hormones, metabolism of steroids and pregnenolone biosynthesis. Thus, examining gene expression that is differentially regulated by islet amyloid has the ability to identify new molecules involved in islet physiology and pathology applicable to type 2 diabetes.

Year of Publication
2019
Journal
Protein engineering, design & selection : PEDS
Volume
32
Issue
2
Number of Pages
67-76
Date Published
12/2019
ISSN Number
1741-0134
DOI
10.1093/protein/gzz022
Alternate Journal
Protein Eng. Des. Sel.
PMID
31504890
PMCID
PMC6908819
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