Literature DB >> 31614370

Reduced Expression of Chl1 gene Impairs Insulin Secretion by Down-Regulating the Expression of Key Molecules of β-cell Function.

Jalal Taneera1, Sarah Dhaiban1, Mahmood Hachim1, Abdul Khader Mohammed1, Debasmita Mukhopadhyay1, Khuloud Bajbouj1, Rifat Hamoudi1,2, Albert Salehi3, Mawieh Hamad1.   

Abstract

Silencing of Chl1 gene expression has been previously reported to reduce insulin secretion. Nevertheless, the mechanism underlying this effect remains unclear. In this study, we performed a serial of studies to investigate how Chl1 affects insulin secretion in INS-1 cells. RNA-sequencing was used to investigate the expression of CHL1 in human adipose, liver, muscle, and human islets. Silencing of Chl1 in INS-1 cells was done to assess its impact on the insulin secretion, content, cell viability, and apoptosis. In addition, gene set enrichment analysis (GSEA) was performed to identify possible molecular signatures that associate with Chl1 expression silencing.RNA sequencing data revealed a high expression of CHL1 in pancreatic islets and adipose tissues compared to liver and muscles tissues. Diabetic islets exhibited a lower expression of CHL1 as compared to non-diabetic islets. CHL1 expression was found to correlate positively with insulin secretory index, GLP1R but inversely with HbA1c and BMI. Silencing of Chl1 in INS-1 cells markedly reduced insulin content and secretion. The expression of key molecules of β-cell function including Insulin, Pdx1, Gck, Glut2, and Insrβ was down-regulated in Chl1-silenced cells at transcriptional and translational levels. Cell viability, apoptosis, and proliferation rate were not affected. GSEA showed that the insulin-signaling pathway was influenced in Chl1-silenced cells. Silencing of Chl1 impairs β-cell function by disrupting the activity of key signaling pathways of importance for insulin biosynthesis and secretion. Thieme. All rights reserved.

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Year:  2019        PMID: 31614370     DOI: 10.1055/a-1014-2544

Source DB:  PubMed          Journal:  Exp Clin Endocrinol Diabetes        ISSN: 0947-7349            Impact factor:   2.949


  3 in total

1.  Copine 3 "CPNE3" is a novel regulator for insulin secretion and glucose uptake in pancreatic β-cells.

Authors:  Waseem El-Huneidi; Shabana Anjum; Abdul Khader Mohammed; Hema Unnikannan; Rania Saeed; Khuloud Bajbouj; Eman Abu-Gharbieh; Jalal Taneera
Journal:  Sci Rep       Date:  2021-10-19       Impact factor: 4.379

2.  Carnosic Acid Protects INS-1 β-Cells against Streptozotocin-Induced Damage by Inhibiting Apoptosis and Improving Insulin Secretion and Glucose Uptake.

Authors:  Waseem El-Huneidi; Shabana Anjum; Mohamed A Saleh; Yasser Bustanji; Eman Abu-Gharbieh; Jalal Taneera
Journal:  Molecules       Date:  2022-03-24       Impact factor: 4.411

3.  EXOC6 (Exocyst Complex Component 6) Is Associated with the Risk of Type 2 Diabetes and Pancreatic β-Cell Dysfunction.

Authors:  Nabil Sulaiman; Mahmood Yaseen Hachim; Anila Khalique; Abdul Khader Mohammed; Saba Al Heialy; Jalal Taneera
Journal:  Biology (Basel)       Date:  2022-03-01
  3 in total

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