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Molecular Determination of mirRNA-126 rs4636297, Phosphoinositide-3-Kinase Regulatory Subunit 1-Gene Variability rs7713645, rs706713 (Tyr73Tyr), rs3730089 (Met326Ile) and Their Association with Susceptibility to T2D

Type 2 diabetes is a metabolic disease characterized by elevated blood sugar. It has serious complications and socioeconomic impact. The MicroRNAs are short single-stranded and non-coding RNA molecules. They regulate gene expression at the post-transcriptional levels. They are important for many phy...

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Autores principales: Mir, Rashid, Elfaki, Imadeldin, Duhier, Faisel M. Abu, Alotaibi, Maeidh A., AlAlawy, Adel Ibrahim, Barnawi, Jameel, Babakr, Abdullatif Taha, Mir, Mohammad Muzaffar, Mirghani, Hyder, Hamadi, Abdullah, Dabla, Pradeep Kumar
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8469127/
https://www.ncbi.nlm.nih.gov/pubmed/34575638
http://dx.doi.org/10.3390/jpm11090861
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author Mir, Rashid
Elfaki, Imadeldin
Duhier, Faisel M. Abu
Alotaibi, Maeidh A.
AlAlawy, Adel Ibrahim
Barnawi, Jameel
Babakr, Abdullatif Taha
Mir, Mohammad Muzaffar
Mirghani, Hyder
Hamadi, Abdullah
Dabla, Pradeep Kumar
author_facet Mir, Rashid
Elfaki, Imadeldin
Duhier, Faisel M. Abu
Alotaibi, Maeidh A.
AlAlawy, Adel Ibrahim
Barnawi, Jameel
Babakr, Abdullatif Taha
Mir, Mohammad Muzaffar
Mirghani, Hyder
Hamadi, Abdullah
Dabla, Pradeep Kumar
author_sort Mir, Rashid
collection PubMed
description Type 2 diabetes is a metabolic disease characterized by elevated blood sugar. It has serious complications and socioeconomic impact. The MicroRNAs are short single-stranded and non-coding RNA molecules. They regulate gene expression at the post-transcriptional levels. They are important for many physiological processes including metabolism, growth, and others. The phosphoinositide 3-kinase (PI3K) is important for insulin signaling and glucose uptake. The genome wide association studies have identified the association of certain loci with diseases including T2D. In this study we have examined the association of miR126 rs4636297 and Phosphoinositide-3-kinase regulatory subunit 1 (PIK3R1) gene Variations rs7713645, rs706713 (Tyr73Tyr), and rs3730089 (Met326Ile) with T2D using the amplification refractory mutation system PCR. Results indicated that there was a significant different (p-value < 0.05) in the Mir126 rs4636297 genotypes distribution between cases and controls, and the minor allele of the rs4636297 was also associated with T2D with OR = 0.58, p-value < 0.05. In addition results showed that there were significant differences (p-value < 0.05) of rs4636297 genotype distribution of patients with normal and patient with abnormal lipid profile. Results also showed that the PIK3R1 rs7713645 and rs3730089 genotype distribution was significantly different between cases and controls with a p-values < 0.05. In addition, the minor allele of the rs7713645 and rs3730089 were associated with T2D with OR = 0.58, p-value < 0.05. We conclude that the Mir126 rs4636297 and PIK3R1 SNPs (rs7713645 and rs3730089) were associated with T2D. These results need verification in future studies with larger sample sizes and in different populations. Protein-protein interaction and enzyme assay studies are also required to uncover the effect of the SNPs on the PI3K regulatory subunit (PI3KR1) and PI3K catalytic activity.
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spelling pubmed-84691272021-09-27 Molecular Determination of mirRNA-126 rs4636297, Phosphoinositide-3-Kinase Regulatory Subunit 1-Gene Variability rs7713645, rs706713 (Tyr73Tyr), rs3730089 (Met326Ile) and Their Association with Susceptibility to T2D Mir, Rashid Elfaki, Imadeldin Duhier, Faisel M. Abu Alotaibi, Maeidh A. AlAlawy, Adel Ibrahim Barnawi, Jameel Babakr, Abdullatif Taha Mir, Mohammad Muzaffar Mirghani, Hyder Hamadi, Abdullah Dabla, Pradeep Kumar J Pers Med Article Type 2 diabetes is a metabolic disease characterized by elevated blood sugar. It has serious complications and socioeconomic impact. The MicroRNAs are short single-stranded and non-coding RNA molecules. They regulate gene expression at the post-transcriptional levels. They are important for many physiological processes including metabolism, growth, and others. The phosphoinositide 3-kinase (PI3K) is important for insulin signaling and glucose uptake. The genome wide association studies have identified the association of certain loci with diseases including T2D. In this study we have examined the association of miR126 rs4636297 and Phosphoinositide-3-kinase regulatory subunit 1 (PIK3R1) gene Variations rs7713645, rs706713 (Tyr73Tyr), and rs3730089 (Met326Ile) with T2D using the amplification refractory mutation system PCR. Results indicated that there was a significant different (p-value < 0.05) in the Mir126 rs4636297 genotypes distribution between cases and controls, and the minor allele of the rs4636297 was also associated with T2D with OR = 0.58, p-value < 0.05. In addition results showed that there were significant differences (p-value < 0.05) of rs4636297 genotype distribution of patients with normal and patient with abnormal lipid profile. Results also showed that the PIK3R1 rs7713645 and rs3730089 genotype distribution was significantly different between cases and controls with a p-values < 0.05. In addition, the minor allele of the rs7713645 and rs3730089 were associated with T2D with OR = 0.58, p-value < 0.05. We conclude that the Mir126 rs4636297 and PIK3R1 SNPs (rs7713645 and rs3730089) were associated with T2D. These results need verification in future studies with larger sample sizes and in different populations. Protein-protein interaction and enzyme assay studies are also required to uncover the effect of the SNPs on the PI3K regulatory subunit (PI3KR1) and PI3K catalytic activity. MDPI 2021-08-29 /pmc/articles/PMC8469127/ /pubmed/34575638 http://dx.doi.org/10.3390/jpm11090861 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Mir, Rashid
Elfaki, Imadeldin
Duhier, Faisel M. Abu
Alotaibi, Maeidh A.
AlAlawy, Adel Ibrahim
Barnawi, Jameel
Babakr, Abdullatif Taha
Mir, Mohammad Muzaffar
Mirghani, Hyder
Hamadi, Abdullah
Dabla, Pradeep Kumar
Molecular Determination of mirRNA-126 rs4636297, Phosphoinositide-3-Kinase Regulatory Subunit 1-Gene Variability rs7713645, rs706713 (Tyr73Tyr), rs3730089 (Met326Ile) and Their Association with Susceptibility to T2D
title Molecular Determination of mirRNA-126 rs4636297, Phosphoinositide-3-Kinase Regulatory Subunit 1-Gene Variability rs7713645, rs706713 (Tyr73Tyr), rs3730089 (Met326Ile) and Their Association with Susceptibility to T2D
title_full Molecular Determination of mirRNA-126 rs4636297, Phosphoinositide-3-Kinase Regulatory Subunit 1-Gene Variability rs7713645, rs706713 (Tyr73Tyr), rs3730089 (Met326Ile) and Their Association with Susceptibility to T2D
title_fullStr Molecular Determination of mirRNA-126 rs4636297, Phosphoinositide-3-Kinase Regulatory Subunit 1-Gene Variability rs7713645, rs706713 (Tyr73Tyr), rs3730089 (Met326Ile) and Their Association with Susceptibility to T2D
title_full_unstemmed Molecular Determination of mirRNA-126 rs4636297, Phosphoinositide-3-Kinase Regulatory Subunit 1-Gene Variability rs7713645, rs706713 (Tyr73Tyr), rs3730089 (Met326Ile) and Their Association with Susceptibility to T2D
title_short Molecular Determination of mirRNA-126 rs4636297, Phosphoinositide-3-Kinase Regulatory Subunit 1-Gene Variability rs7713645, rs706713 (Tyr73Tyr), rs3730089 (Met326Ile) and Their Association with Susceptibility to T2D
title_sort molecular determination of mirrna-126 rs4636297, phosphoinositide-3-kinase regulatory subunit 1-gene variability rs7713645, rs706713 (tyr73tyr), rs3730089 (met326ile) and their association with susceptibility to t2d
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8469127/
https://www.ncbi.nlm.nih.gov/pubmed/34575638
http://dx.doi.org/10.3390/jpm11090861
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