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Alterations in the α2 isoform of Na,K-ATPase associated with familial hemiplegic migraine type 2

机译:与家族性偏瘫性偏头痛2型相关的Na,K-ATP酶α2同工型的变化

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A number of missense mutations in the Na,K-ATPase α2 catalytic subunit have been identified in familial hemiplegic migraine with aura. Two alleles (L764P and W887R) showed loss-of-function, whereas a third (T345A) is fully functional but with altered Na,K-ATPase kinetics. This study describes two additional mutants, R689Q and M731T, originally identified by Vanmolkot et al. [Van-molkot, K. R., et al. (2003) Ann. Neurol. 54, 360-366], which we show here to also be functional and kinetically altered. Both mutants have reduced catalytic turnover and increased apparent affinity for extracellular K~+. For both R689Q and M731T, sensitivity to vanadate inhibition is decreased, suggesting that the steady-state E_1 reversible E_2 poise of the enzyme is shifted toward E_1. Whereas the K′_(ATP) is not affected by the R689Q replacement, the M731T mutant has an increase in apparent affinity for ATP. Analysis of the structural changes effected by T345A, R689Q, and M731T mutations, based on homologous replacements in the known crystal structure of the sarcoplasmic reticulum Ca-ATPase, provides insights into the molecular bases for the kinetic alterations. It is suggested that the disease phenotype is the consequence of lowered molecular activity of the α2 pump isoform due to either decreased K~+ affinity (T345A) or catalytic turnover (R689Q and M731T), thus causing a delay in extracellular K~+ clearance and/or altered localized Ca~(2+) handling/signaling secondary to reduced activity in colocalized Na~+/Ca~(2+) exchange.
机译:已在具有先兆的家族性偏瘫偏头痛中鉴定出Na,K-ATP酶α2催化亚基中的许多错义突变。两个等位基因(L764P和W887R)显示功能丧失,而第三个等位基因(T345A)具有完全功能,但Na,K-ATPase动力学改变。这项研究描述了另外两个突变体,R689Q和M731T,最初由Vanmolkot等人鉴定。 [Van-molkot,K.R。,等。 (2003)Ann。神经元。 54,360-366],我们在这里显示它在功能上和动力学上也有所改变。两种突变体均减少了催化转化并增加了对细胞外钾离子的表观亲和力。对于R689Q和M731T,对钒酸盐抑制的敏感性均降低,表明该酶的稳态E_1可逆E_2平衡移向E_1。 K'_(ATP)不受R689Q替代的影响,而M731T突变体对ATP的表观亲和力增加。根据肌浆网Ca-ATPase已知晶体结构中的同源置换,对T345A,R689Q和M731T突变影响的结构变化进行分析,可以洞悉动力学变化的分子基础。提示该疾病表型是由于K〜+亲和力降低(T345A)或催化转换(R689Q和M731T)导致α2泵同工型分子活性降低的结果,从而导致细胞外K〜+清除延迟和/或在共定位的Na〜+ / Ca〜(2+)交换中降低活性后,改变了本地的Ca〜(2+)处理/信号。

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