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Catecholaminergic polymorphic ventricular tachycardia-related mutations R33Q and L167H alter calcium sensitivity of human cardiac calsequestrin

机译:儿茶酚胺能性多形性室性心动过速相关突变R33Q和L167H改变人心脏钙螯合蛋白的钙敏感性

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摘要

Two missense mutations, R33Q and L167H, of hCASQ2 (human cardiac calsequestrin), a protein segregated to the lumen of the sarcoplasmic reticulum, are linked to the autosomal recessive form of CPVT (catecholaminergic polymorphic ventricular tachycardia). The effects of these mutations on the conformational, stability and Ca(2+) sensitivity properties of hCASQ2, were investigated. Recombinant WT (wild-type) and mutant CASQ2s were purified to homogeneity and characterized by spectroscopic (CD and fluorescence) and biochemical (size-exclusion chromatography and limited proteolysis) methods at 500 and 100 mM KCl, with or without Ca(2+) at a physiological intraluminal concentration of 1 mM; Ca(2+)-induced polymerization properties were studied by turbidimetry. In the absence of Ca(2+), mutations did not alter the conformation of monomeric CASQ2. For L167H only, at 100 mM KCl, emission fluorescence changes suggested tertiary structure alterations. Limited proteolysis showed that amino acid substitutions enhanced the conformational flexibility of CASQ2 mutants, which became more susceptible to tryptic cleavage, in the order L167H>R33Q>WT. Ca(2+) at a concentration of 1 mM amplified such differences: Ca(2+) stabilized WT CASQ2 against urea denaturation and tryptic cleavage, whereas this effect was reduced in R33Q and absent in L167H. Increasing [Ca(2+)] induced polymerization and precipitation of R33Q, but not that of L167H, which was insensitive to Ca(2+). Based on CASQ2 models, we propose that the Arg(33)-->Gln exchange made the Ca(2+)-dependent formation of front-to-front dimers more difficult, whereas the Leu(167)-->His replacement almost completely inhibited back-to-back dimer interactions. Initial molecular events of CPVT pathogenesis begin to unveil and appear to be different depending upon the specific CASQ2 mutation.
机译:hCASQ2(人心脏钙螯合蛋白)的两个错义突变(R33Q和L167H)是一种分离到肌浆网腔的蛋白,与常染色体隐性形式的CPVT(儿茶酚胺能性多形性室性心动过速)相关。这些突变对hCASQ2的构象,稳定性和Ca(2+)敏感性属性的影响进行了调查。重组WT(野生型)和突变CASQ2s纯化至均一并通过分光光度法(CD和荧光)和生化(尺寸排阻色谱法和有限的蛋白水解)方法在500和100 mM KCl的条件下(有或没有Ca(2+)在1 mM的腔内生理浓度下; Ca(2+)诱导的聚合性能通过比浊法进行了研究。在没有Ca(2+),突变不会改变单体CASQ2的构象。仅对于L167H,在100 mM KCl时,发射荧光变化表明三级结构发生了变化。有限的蛋白水解作用表明,氨基酸取代增强了CASQ2突变体的构象灵活性,从而使其更易于受到胰蛋白酶切割的影响,顺序为L167H> R33Q> WT。浓度为1 mM的Ca(2+)放大了这种差异:Ca(2+)稳定了WT CASQ2抵抗尿素变性和胰蛋白酶裂解,而R33Q中这种作用降低了,而L167H中则没有这种作用。增加[Ca(2+)]引起R33Q的聚合和沉淀,但不引起对Ca(2+)不敏感的L167H的聚合和沉淀。基于CASQ2模型,我们建议Arg(33)-> Gln交换使得从Ca(2+)依赖的前到前二聚体形成更加困难,而Leu(167)-> His置换几乎完全抑制了背对背的二聚体相互作用。 CPVT发病机制的初始分子事件开始揭示,并且似乎因特定的CASQ2突变而有所不同。

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