沙特家族性高胆固醇血症患者2种罕见LDLR停止增加变异(p.C231*和p.R744*)的鉴定和功能特征

IF 1.8 4区 物理与天体物理 Q2 SPECTROSCOPY
Zuhier Awan, Alhanuf Batran, Faisal A Al-Allaf, Raneem S Alharbi, Gehan A Hegazy, Bassam Jamalalail, Majid Almansouri, Abdulhadi I Bima, Haifa Almukadi, Hussam I Kutbi, Ahmed E Altayar, Babajan Banaganapalli, Noor A Shaik
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引用次数: 3

摘要

家族性高胆固醇血症(FH)是一种全球范围内未被充分诊断的遗传性代谢疾病。由于阿拉伯世界发表的数据有限,本研究的目的是确定高度近亲沙特人群中FH的遗传和分子基础。方法对2个沙特FH家族进行临床筛选、生化分析、全外显子组测序和变异分离分析。此外,还筛选了500名正常人群,以确保在一般沙特人群中不存在FH变异。利用不同的生物信息学建模方法,对FH变异在RNA和蛋白质分子二级结构特征上的功能进行了表征。结果通过swes分析,鉴定出两个独立的罕见LDLR基因停止增益变异(p.C231*和p.R744*),与两个不同家族的FH患者的临床表现一致。RNAfold分析表明,这两种变体都干扰了LDLR mRNA分子的自由能动力学,使其折叠模式和功能不稳定。基于PSIPRED的结构建模分析表明,这两种变体都引起了LDLR分子二级结构元素的剧烈变化。p.C231*和p.R744*变异只产生部分蛋白质产物或不产生蛋白质产物,因此它们是导致功能丧失(LoF)的LDLR变异的1类变异。本研究强调了WES、sanger测序和计算分析在沙特阿拉伯等文化差异人群中扩展FH变异谱的有效性。FH患者的基因检测对于更好的临床诊断、筛查、治疗以及管理和预防社会心血管疾病负担至关重要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Identification and functional characterization of two rare LDLR stop gain variants (p.C231* and p.R744*) in Saudi familial hypercholesterolemia patients.

Background: Familial hypercholesterolemia (FH) is a globally underdiagnosed inherited metabolic disorder. Owing to limited published data from Arab world, this study was conducted with the aim of identifying the genetic and molecular basis of FH in highly consanguineous Saudi population.

Methods: We performed clinical screening, biochemical profiling, whole exome sequencing and variant segregation analysis of two Saudi FH families. Additionally, 500 normolipic individuals were screened to ensure the absence of FH variant in general Saudi population. Functional characterization of FH variants on secondary structure characteristics of RNA and protein molecules was performed using different bioinformatics modelling approaches.

Results: WES analysis identified two independent rare LDLR gene stop gain variants (p.C231* and p.R744*) consistent to the clinical presentation of FH patients from two different families. RNAfold analysis has shown that both variants were predicted to disturb the free energy dynamics of LDLR mRNA molecule and destabilize its folding pattern and function. PSIPRED based structural modelling analysis has suggested that both variants bring drastic changes disturbing the secondary structural elements of LDLR molecule. The p.C231* and p.R744* variants are responsible for partial or no protein product, thus they are class 1 variants causing loss of function (LoF) LDLR variants.

Conclusions: This study highlights the effectiveness of the WES, sanger sequencing, and computational analysis in expanding FH variant spectrum in culturally distinct populations like Saudi Arabia. Genetic testing of FH patients is very essential in better clinical diagnosis, screening, treatment, and management and prevention of cardiovascular disease burden in the society.

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来源期刊
CiteScore
3.30
自引率
5.30%
发文量
64
审稿时长
60 days
期刊介绍: The Journal of Electron Spectroscopy and Related Phenomena publishes experimental, theoretical and applied work in the field of electron spectroscopy and electronic structure, involving techniques which use high energy photons (>10 eV) or electrons as probes or detected particles in the investigation.
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