Association of the Human Leptin Receptor Gene (rs1137101; Gln223Arg) Polymorphism and Circulating Leptin in Patients with Metabolic Syndrome in the Indian Population.

IF 1.5 Q4 BIOCHEMISTRY & MOLECULAR BIOLOGY Indian Journal of Clinical Biochemistry Pub Date : 2023-10-01 Epub Date: 2022-08-09 DOI:10.1007/s12291-022-01065-5
Deepak Parchwani, Sagar Dholariya, Digishaben D Patel, Ashishkumar Agravatt, Jayant Uperia, Tanishk Parchwani, Ragini Singh, Madhuri Radadiya, Yash Desai
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Abstract

Phenotypic expression of metabolic syndrome is precipitated by environmental variables along with the individual genetic susceptibility to the obesogenic environment and growing body of evidence suggest a paramount role of adipocytokines. Therefore, identifying the genetic influence on circulation leptin levels and clarifying genotype-phenotype correlation of rs1137101 {Leptin receptor gene (LEPR) Gln223Arg (Q223R; A668G)} in metabolic syndrome were the primary objective of this study. A total of 447 adult participants, including 214 metabolic syndrome patients and 233 healthy controls, were genotyped using polymerase chain reaction-restriction fragment length polymorphism method to unravel the effects of genetic risk loci {Leptin receptor gene; Gln223Arg (Q223R; A668G); rs1137101} on the occurrence of metabolic syndrome in consort with circulation leptin levels. Suitable descriptive statistics was used for different variables. The genotype frequencies were found to be in Hardy-Weinberg equilibrium for both cases (p > 0.2722) as well as in controls (p > 0.2331). However, genotype (x2: 11.26, 2 d.f. p = 0.0036) and allele distribution (x2: 10.51, 2 d.f. p: 0.0012) of the LEPR Gln223Arg (Q223R; A668G) differed significantly between cases and controls. Gln/Arg genotype (OR = 1.6099; 95% CI = 1.0847-2.3893; p value = 0.0181), Arg/Arg genotype (OR = 2.8121; 95% CI = 1.4103-5.6074; p value = 0.0033) and R allele (OR = 1.5875; 95% CI = 1.1996-2.1008; p value = 0.0012) were significantly associated with increased risk of metabolic syndrome in univariate analysis. Further a multivariate logistic regression adjusted for potential confounders showed that Arg/Arg genotype (OR = 1.9; 95% CI = 1.271-2.639; p-value < 0.05) and Gln/Arg (OR: 1.3; 95% CI = 0.873-2.034; p value < 0.05) have a significant risk for the occurrence of the metabolic syndrome. A progressive increase in the serum leptin levels from major homozygous alleles to minor homozygous alleles were observed indicating that rs1137101 modify the serum leptin concentrations in patients with metabolic syndrome. These findings provide enough evidence of a significant association of LEPR Gln223Arg (Q223R; A668G) polymorphism in the LepR gene in Indian patients with increased risk of metabolic syndrome for R allele and Arg/Arg homozygote. Thus, rs1137101 might be a pleiotropic locus for metabolic syndrome and its components in studied population.

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人类瘦素受体基因(rs1137101;Gln223Arg)多态性与印度人群代谢综合征患者循环瘦素的相关性。
代谢综合征的表型表达是由环境变量以及个体对肥胖环境的遗传易感性促成的,越来越多的证据表明脂肪细胞因子发挥着重要作用。因此,本研究的主要目的是确定遗传对循环瘦素水平的影响,并阐明rs1137101{瘦素受体基因(LEPR)Gln223Arg(Q223R;A668G)}在代谢综合征中的基因型-表型相关性。共有447名成年参与者,包括214名代谢综合征患者和233名健康对照,使用聚合酶链式反应限制性片段长度多态性方法进行基因分型,以揭示遗传风险基因座{瘦素受体基因;Gln223Arg(Q223R;A668G);rs1137101}对循环瘦素水平的配偶代谢综合征发生的影响。对不同的变量使用了适当的描述性统计。两种情况的基因型频率均处于Hardy-Weinberg平衡(p > 0.2722)以及对照组(p > 0.2331)。然而,基因型(x2:11.26,2 d.f.p = 0.0036)和LEPR Gln223Arg(Q223R;A668G)的等位基因分布(x2:10.51,2 d.f.p:0.0012)在病例和对照组之间存在显著差异。Gln/Arg基因型(OR = 1.6099;95%CI = 1.0847-2.3893;p值 = 0.0181)、Arg/Arg基因型(OR = 2.8121;95%CI = 1.4103-5.6074;p值 = 0.0033)和R等位基因(OR = 1.5875;95%CI = 1.1996-21008;p值 = 0.0012)与代谢综合征风险增加显著相关。此外,对潜在混杂因素进行调整的多变量逻辑回归显示,Arg/Arg基因型(OR = 1.9;95%CI = 1.271-2.639;p值
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来源期刊
Indian Journal of Clinical Biochemistry
Indian Journal of Clinical Biochemistry BIOCHEMISTRY & MOLECULAR BIOLOGY-
CiteScore
4.50
自引率
4.80%
发文量
74
期刊介绍: The primary mission of the journal is to promote improvement in the health and well-being of community through the development and practice of clinical biochemistry and dissemination of knowledge and recent advances in this discipline among professionals, diagnostics industry, government and non-government organizations. Indian Journal of Clinical Biochemistry (IJCB) publishes peer reviewed articles that contribute to the existing knowledge in all fields of Clinical biochemistry, either experimental or theoretical, particularly deal with the applications of biochemistry, molecular biology, genetics, biotechnology, and immunology to the diagnosis, treatment, monitoring and prevention of human diseases. The articles published also include those covering the analytical and molecular diagnostic techniques, instrumentation, data processing, quality assurance and accreditation aspects of the clinical investigations in which chemistry has played a major role, or laboratory animal studies with biochemical and clinical relevance.
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