心脏肌钙蛋白C的遗传变异和翻译后修饰的综合指南。

IF 1.8 3区 生物学 Q4 CELL BIOLOGY
Tyler R Reinoso, Maicon Landim-Vieira, Yun Shi, Jamie R Johnston, P Bryant Chase, Michelle S Parvatiyar, Andrew P Landstrom, Jose R Pinto, Hanna J Tadros
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引用次数: 12

摘要

家族性心肌病是一种影响心肌结构和功能的遗传性疾病,具有非常广泛的表型。在数百万受影响的个体中,肥厚性(HCM)、扩张性(DCM)或左室非压实性(LVNC)心肌病患者可经历心脏形态学改变,在最有害的情况下导致猝死。编码心肌肌钙蛋白C (cTnC)的基因TNNC1是一种与心肌病相关的肌瘤基因,在心肌病中,与TNNT2和TNNI3先证者相比,先证者表现出较早出现、高死亡率、移植或心室颤动事件。利用GnomAD、ClinVar、UniProt和PhosphoSitePlus数据库和已发表的文献,编制了迄今为止已确定的TNNC1遗传变异和cTnC翻译后修饰(PTMs)的广泛列表。此外,最近心脏细丝调控单元的冷冻电镜结构被用于定位每个功能性研究的氨基酸变体和cTnC结构中的每个PTM(乙酰化,糖基化,s-亚硝基化,磷酸化)。与相同转录物大小的其他基因相比,TNNC1具有大量的变异(> 100)。令人惊讶的是,映射的变异氨基酸和PTMs分布在整个cTnC结构中。虽然许多心肌病相关变异定位于cTnC的α-螺旋区,但这没有统计学意义(p = 0.72)。在心肌病关联、生理调节和潜在的非规范作用的背景下,探索cTnC的TNNC1和PTMs变异,可以深入了解cTnC的正常功能以及作为心肌病基因的TNNC1的许多方面。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A comprehensive guide to genetic variants and post-translational modifications of cardiac troponin C.

Familial cardiomyopathy is an inherited disease that affects the structure and function of heart muscle and has an extreme range of phenotypes. Among the millions of affected individuals, patients with hypertrophic (HCM), dilated (DCM), or left ventricular non-compaction (LVNC) cardiomyopathy can experience morphologic changes of the heart which lead to sudden death in the most detrimental cases. TNNC1, the gene that codes for cardiac troponin C (cTnC), is a sarcomere gene associated with cardiomyopathies in which probands exhibit young age of presentation and high death, transplant or ventricular fibrillation events relative to TNNT2 and TNNI3 probands. Using GnomAD, ClinVar, UniProt and PhosphoSitePlus databases and published literature, an extensive list to date of identified genetic variants in TNNC1 and post-translational modifications (PTMs) in cTnC was compiled. Additionally, a recent cryo-EM structure of the cardiac thin filament regulatory unit was used to localize each functionally studied amino acid variant and each PTM (acetylation, glycation, s-nitrosylation, phosphorylation) in the structure of cTnC. TNNC1 has a large number of variants (> 100) relative to other genes of the same transcript size. Surprisingly, the mapped variant amino acids and PTMs are distributed throughout the cTnC structure. While many cardiomyopathy-associated variants are localized in α-helical regions of cTnC, this was not statistically significant χ2 (p = 0.72). Exploring the variants in TNNC1 and PTMs of cTnC in the contexts of cardiomyopathy association, physiological modulation and potential non-canonical roles provides insights into the normal function of cTnC along with the many facets of TNNC1 as a cardiomyopathic gene.

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来源期刊
CiteScore
6.20
自引率
0.00%
发文量
21
审稿时长
>12 weeks
期刊介绍: The Journal of Muscle Research and Cell Motility has as its main aim the publication of original research which bears on either the excitation and contraction of muscle, the analysis of any one of the processes involved therein, the processes underlying contractility and motility of animal and plant cells, the toxicology and pharmacology related to contractility, or the formation, dynamics and turnover of contractile structures in muscle and non-muscle cells. Studies describing the impact of pathogenic mutations in genes encoding components of contractile structures in humans or animals are welcome, provided they offer mechanistic insight into the disease process or the underlying gene function. The policy of the Journal is to encourage any form of novel practical study whatever its specialist interest, as long as it falls within this broad field. Theoretical essays are welcome provided that they are concise and suggest practical ways in which they may be tested. Manuscripts reporting new mutations in known disease genes without validation and mechanistic insight will not be considered. It is the policy of the journal that cells lines, hybridomas and DNA clones should be made available by the developers to any qualified investigator. Submission of a manuscript for publication constitutes an agreement of the authors to abide by this principle.
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