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与致心律失常性右室心肌病相关的兰尼碱受体2基因复合多态性

Composite polymorphisms in the ryanodine receptor 2 gene associated with arrhythmogenic right ventricular cardiomyopathy.

作者信息

Milting Hendrik, Lukas Nina, Klauke Bärbel, Körfer Reiner, Perrot Andreas, Osterziel Karl-Josef, Vogt Jürgen, Peters Stefan, Thieleczek Rolf, Varsányi Magdolna

机构信息

Herz- und Diabeteszentrum NRW, Klinik der Ruhr-Universität Bochum, Erich und Hanna Klessmann-Institut für Kardiovaskuläre Forschung und Entwicklung, Georgstr. 11, 32545 Bad Oeynhausen, Germany.

出版信息

Cardiovasc Res. 2006 Aug 1;71(3):496-505. doi: 10.1016/j.cardiores.2006.04.004. Epub 2006 Apr 18.

Abstract

OBJECTIVE

Mutations in the cardiac ryanodine receptor (RYR2) gene have been reported to cause arrhythmogenic right ventricular cardiomyopathy (ARVC). The molecular mechanisms by which genetic modifications lead to ARVC are still not well understood.

METHODS

ARVC patients were screened for mutations in the RYR2 gene by denaturing HPLC and DNA sequencing. Single channel measurements were carried out with RyR2 channels purified from explanted hearts of ARVC patients.

RESULTS

None of the published RYR2 mutations were found in our ARVC-cohort. However, we identified two single nucleotide polymorphisms (SNPs) in exon 37 of the human RYR2 gene which lead to the amino acid exchanges G1885E and G1886S, respectively. Both SNPs together were found exclusively in 3 out of 85 ARVC patients in a composite heterozygous fashion (genotype T4). This genotype was associated with ARVC (p<0.05) but not with dilated cardiomyopathy (DCM, 79 patients) or none-failing controls (463 blood donors). However, either one of the two SNPs were identified in further 7 ARVC patients, in 11 DCM patients, and in 64 blood donors. The SNP leading to G1886S may create a protein kinase C phosphorylation site in the human RyR2. Single channel recordings at pCa4.3 revealed four conductance states for the RyR2 of genotype T4 and a single open state for the wild type RyR2. At pCa7.7, the lowest subconductance state of the RyR2 channel of genotype T4 persisted with a greatly enhanced open probability indicating a leaky channel.

CONCLUSION

The RyR2 channel leak under diastolic conditions could cause SR-Ca2+ depletion, concomitantly arrhythmogenesis and heart failure in a subgroup of ARVC patients of genotype T4. A change in the RyR2 subunit composition due to the combined expression of both SNPs alters the behaviour of the tetrameric channel complex.

摘要

目的

据报道,心脏兰尼碱受体(RYR2)基因突变可导致致心律失常性右室心肌病(ARVC)。基因修饰导致ARVC的分子机制仍未完全明确。

方法

通过变性高效液相色谱法和DNA测序对ARVC患者进行RYR2基因突变筛查。使用从ARVC患者移植心脏中纯化的RyR2通道进行单通道测量。

结果

在我们的ARVC队列中未发现已报道的RYR2突变。然而,我们在人类RYR2基因的第37外显子中鉴定出两个单核苷酸多态性(SNP),分别导致氨基酸交换G1885E和G1886S。这两个SNP共同仅在85例ARVC患者中的3例中以复合杂合形式(基因型T4)被发现。该基因型与ARVC相关(p<0.05),但与扩张型心肌病(DCM,79例患者)或无心力衰竭的对照组(463名献血者)无关。然而,在另外7例ARVC患者、11例DCM患者和64名献血者中发现了这两个SNP中的任意一个。导致G1886S的SNP可能在人类RyR2中产生一个蛋白激酶C磷酸化位点。在pCa4.3下的单通道记录显示,基因型T4的RyR2有四种电导状态,而野生型RyR2只有一种开放状态。在pCa7.7时,基因型T4的RyR2通道的最低亚电导状态持续存在,开放概率大大增加,表明通道存在泄漏。

结论

舒张期条件下的RyR2通道泄漏可能导致基因型T4的ARVC患者亚组出现肌浆网Ca2+耗竭,进而引发心律失常和心力衰竭。由于两个SNP的联合表达导致的RyR2亚基组成变化改变了四聚体通道复合物的行为。

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