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SHANK3 基因多态性与 ASD 易感性:来自分子、计算和荟萃分析方法的证据。

SHANK3 genetic polymorphism and susceptibility to ASD: evidence from molecular, in silico, and meta-analysis approaches.

机构信息

Laboratory of Microbial Genetics and Metabolic Engineering, Department of Genetic Engineering and Biotechnology, Faculty of Biological Sciences, University of Chittagong, Chittagong-4331, Chittagong, Bangladesh.

Ludwig-Maximilians-Universität München, GroßhadernerStrasse 2, 82152 Martinsried, Munich, Germany.

出版信息

Mol Biol Rep. 2022 Sep;49(9):8449-8460. doi: 10.1007/s11033-022-07663-z. Epub 2022 Jul 11.

Abstract

BACKGROUND

The SHANK3 gene encodes a master synaptic scaffolding protein at the excitatory synapse's postsynaptic density, which is predominantly responsible for constructing a synapse, maintaining synaptic structure, and functions. Recently, evidence from rare mutations and copy number variation provided an important clue about SHANK3 which acts as a strong candidate gene in the pathogenesis of Autism Spectrum Disorder (ASD).

MATERIALS AND METHODS

To investigate potential allelic variants for the SHANK3 (rs9616915) gene as a genetic risk factor, we performed PCR-RFLP analysis and Sanger sequencing for 90 ASD and 90 healthy subjects. Moreover, to understand the functional and structural impacts of our selected non-synonymous SHANK3 SNP rs9616915, we have performed an in silico analysis. Subsequently, a meta-analysis of rs9616915 with a total of 6 eligible studies (including the present study) containing a total of 795 cases and 12,947 controls was obtained from a comprehensive online database search to evaluate the overall association with ASD.

RESULTS

Our retrieved data, such as Pearson's chi-square test (p = 0.081) as well as logistic regression analysis of co-dominant (p = 0.1131), dominant (p = 0.3656) and recessive models (p = 0.0569) speculated no significant association between rs9616915 and our studied sample. Interestingly, by in silico analysis, we have observed two hydrogen bonds between amino acids instead of one hydrogen bond in the protein structure of rs9616915, which indicates this mutant structure could affect the proteins' stability. The findings of the meta-analysis revealed that four genetic association models were associated with ASD susceptibility.

CONCLUSIONS

Our study suggested that targeted SHANK3 SNP of interest rs9616915 might not be associated with ASD in the southern part of the Bangladeshi population.

摘要

背景

SHANK3 基因编码兴奋性突触后密度的主要突触支架蛋白,主要负责构建突触、维持突触结构和功能。最近,来自罕见突变和拷贝数变异的证据表明,SHANK3 作为自闭症谱系障碍 (ASD) 发病机制的一个强有力候选基因。

材料和方法

为了研究 SHANK3 基因(rs9616915)的潜在等位基因变异作为遗传风险因素,我们对 90 名 ASD 患者和 90 名健康对照者进行了 PCR-RFLP 分析和 Sanger 测序。此外,为了了解我们选择的非 synonymous SHANK3 SNP rs9616915 的功能和结构影响,我们进行了计算机分析。随后,通过全面的在线数据库搜索,对 rs9616915 进行了一项荟萃分析,共包括 6 项符合条件的研究(包括本研究),共包含 795 例病例和 12947 例对照,以评估与 ASD 的总体关联。

结果

我们的检索数据,如 Pearson 卡方检验(p=0.081)以及共显性(p=0.1131)、显性(p=0.3656)和隐性模型(p=0.0569)的逻辑回归分析表明,rs9616915 与我们的研究样本之间没有显著关联。有趣的是,通过计算机分析,我们观察到 rs9616915 蛋白质结构中两个氨基酸之间存在两个氢键,而不是一个氢键,这表明这种突变结构可能会影响蛋白质的稳定性。荟萃分析的结果表明,四种遗传关联模型与 ASD 易感性相关。

结论

我们的研究表明,在孟加拉南部人群中,靶向 SHANK3 基因的 rs9616915 可能与 ASD 无关。

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