Koop Andrea, Goldmann Petra, Chen S R Wayne, Thieleczek Rolf, Varsányi Magdolna
Institut für Physiologische Chemie, Abteilung Biochemie Supramolekularer Systeme, Ruhr-Universität Bochum, 44780 Bochum, Germany.
Biophys J. 2008 Jun;94(12):4668-77. doi: 10.1529/biophysj.107.122382. Epub 2008 Mar 7.
Two single-nucleotide polymorphisms in the type 2 ryanodine receptor (RyR2) leading to the nonsynonymous amino acid replacements G1885E and G1886S are associated with arrhythmogenic right ventricular cardiomyopathy in patients who are carrying both of the corresponding RyR2 alleles. The functional properties of HEK293 cell lines isogenically expressing RyR2 mutants associated with arrhythmogenic right ventricular cardiomyopathy, RyR2-G1885E, RyR2-G1886S, RyR2-G1886D (mimicking a constitutively phosphorylated Ser(1886)), and the double mutant RyR2-G1885E/G1886S were investigated by analyzing the intracellular Ca(2+) release activity resulting from store-overload-induced calcium release. The substitution of serine for Gly(1886) caused a significant increase in the cellular Ca(2+) oscillation activity compared with RyR2 wild-type-expressing HEK293 cells. It was even more pronounced if glycine 1885 or 1886 was replaced by the acidic amino acids glutamate (G1885E) or aspartate (G1886D). Surprisingly, when both substitutions were introduced in the same RyR2 subunit (RyR2-G1885E/G1886S), the store-overload-induced calcium release activity was nearly completely abolished, although the Ca(2+) loading of the intracellular stores was markedly enhanced, and the channel still displayed substantial Ca(2+) release on stimulation by 5 mM caffeine. These results suggest that the adjacent glycines 1885 and 1886, located in the divergent region 3, are critical for the function and regulation of RyR2.
2型兰尼碱受体(RyR2)中的两个单核苷酸多态性导致非同义氨基酸替换G1885E和G1886S,在携带相应两个RyR2等位基因的患者中,这些多态性与致心律失常性右室心肌病相关。通过分析由储存过载诱导的钙释放所产生的细胞内Ca(2+)释放活性,研究了等基因表达与致心律失常性右室心肌病相关的RyR2突变体(RyR2-G1885E、RyR2-G1886S、RyR2-G1886D(模拟组成型磷酸化的Ser(1886)))以及双突变体RyR2-G1885E/G1886S的HEK293细胞系的功能特性。与表达RyR2野生型的HEK293细胞相比,用丝氨酸取代Gly(1886)导致细胞Ca(2+)振荡活性显著增加。如果将甘氨酸1885或1886替换为酸性氨基酸谷氨酸(G1885E)或天冬氨酸(G1886D),这种增加会更加明显。令人惊讶的是,当在同一个RyR2亚基中引入这两种替换(RyR2-G1885E/G1886S)时,尽管细胞内储存的Ca(2+)负载显著增强,并且该通道在5 mM咖啡因刺激下仍显示出大量的Ca(2+)释放,但储存过载诱导的钙释放活性几乎完全丧失。这些结果表明,位于差异区域3中的相邻甘氨酸残基1885和1886对RyR2的功能和调节至关重要。