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新型侵袭性牙周炎罕见移码变异:外显子组和家系筛查分析。

Novel rare frameshift variation in aggressive periodontitis: Exomic and familial-screening analysis.

机构信息

Department of Prosthodontics and Periodontics, Periodontics Division, Piracicaba Dental School, University of Campinas, Piracicaba, SP, Brazil.

Department of Dentistry, University of Araras, Araras, SP, Brazil.

出版信息

J Periodontol. 2020 Feb;91(2):263-273. doi: 10.1002/JPER.19-0182. Epub 2019 Aug 26.

Abstract

BACKGROUND

Aggressive periodontitis (AgP), currently periodontitis grade C, presents early onset, rapid progression, and a poorly established genetic association. Thus, this study aimed to identify genetic variants associated with AgP via whole exome sequencing (WES) through a familial screening approach.

METHODS

WES was performed in two nuclear families, including a proband and a parent affected by AgP and an unaffected parent and sibling. Common variants among affected individuals, excluding those common to healthy people, from each family, composed the data set associated with AgP. In silico analysis evaluated the impact of each variant on protein structure and protein-protein interactions. Moreover, identified deleterious variants were validated in a populational analysis (n = 96).

RESULTS

The missense single nucleotide variations (SNVs) rs142548867 in EEFSEC (c.668C>T), rs574301770 in ZNF136 (c.466C>G), and rs72821893 in KRT25 (c.800G>A) and the frameshift indels rs37146475 in GPRC6A (c.2323-2324insT) and c.1366_1372insGGAGCAG in ELN were identified in AgP and have a predicted functional impact on proteins. In silico analysis indicated that the indel in GPRC6A generates a loss of the C-terminal tail of the Gprca protein. Furthermore, this SNV was significantly associated with AgP in a population-based investigation.

CONCLUSION

Novel frameshift variation in GPRC6A (c.2323-2324insT) was identified as a potential genetic alteration associated with AgP occurrence.

摘要

背景

侵袭性牙周炎(AgP),目前为牙周炎 C 级,具有发病早、进展快且遗传关联性尚未明确的特点。因此,本研究旨在通过家系筛查方法,通过全外显子组测序(WES)来鉴定与 AgP 相关的遗传变异。

方法

对两个核家系(包括患有 AgP 的先证者及其父母和未患病的兄弟姐妹)进行 WES。每个家系中,先证者及其父母均患有 AgP,且不存在与健康人群共有的常见变异,则这些常见变异被纳入与 AgP 相关的数据集。对每个变异对蛋白质结构和蛋白质-蛋白质相互作用的影响进行计算机分析。此外,在群体分析(n=96)中验证了已识别的有害变异。

结果

在 AgP 中发现了错义单核苷酸变异(SNVs),分别位于 EEFSEC(c.668C>T)的 rs142548867、ZNF136(c.466C>G)的 rs574301770、KRT25(c.800G>A)的 rs72821893 和 GPRC6A(c.2323-2324insT)的 rs37146475 以及 ELN 中的 c.1366_1372insGGAGCAG 插入缺失。这些变异具有预测的蛋白质功能影响。计算机分析表明,GPRC6A 中的插入缺失导致 Gprca 蛋白的 C 端尾部丢失。此外,该 SNV 在基于人群的研究中与 AgP 显著相关。

结论

在 GPRC6A(c.2323-2324insT)中发现了一种新的移码变异,它可能是与 AgP 发生相关的遗传改变。

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