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神经元丰富型 2 型 PMCA 泵中的 V1143F 突变与共济失调有关。

A V1143F mutation in the neuronal-enriched isoform 2 of the PMCA pump is linked with ataxia.

机构信息

Department of Biomedical Sciences, University of Padova, 35131 Padova, Italy.

Department of Neurosciences, Bambino Gesù Children's Hospital, IRCCS, Rome, Italy.

出版信息

Neurobiol Dis. 2018 Jul;115:157-166. doi: 10.1016/j.nbd.2018.04.009. Epub 2018 Apr 12.

Abstract

The fine regulation of intracellular calcium is fundamental for all eukaryotic cells. In neurons, Ca oscillations govern the synaptic development, the release of neurotransmitters and the expression of several genes. Alterations of Ca homeostasis were found to play a pivotal role in neurodegenerative progression. The maintenance of proper Ca signaling in neurons demands the continuous activity of Ca pumps and exchangers to guarantee physiological cytosolic concentration of the cation. The plasma membrane CaATPases (PMCA pumps) play a key role in the regulation of Ca handling in selected sub-plasma membrane microdomains. Among the four basic PMCA pump isoforms existing in mammals, isoforms 2 and 3 are particularly enriched in the nervous system. In humans, genetic mutations in the PMCA2 gene in association with cadherin 23 mutations have been linked to hearing loss phenotypes, while those occurring in the PMCA3 gene were associated with X-linked congenital cerebellar ataxias. Here we describe a novel missense mutation (V1143F) in the calmodulin binding domain (CaM-BD) of the PMCA2 protein. The mutant pump was present in a patient showing congenital cerebellar ataxia but no overt signs of deafness, in line with the absence of mutations in the cadherin 23 gene. Biochemical and molecular dynamics studies on the mutated PMCA2 have revealed that the V1143F substitution alters the binding of calmodulin to the CaM-BD leading to impaired Ca ejection.

摘要

细胞内钙离子的精细调节对所有真核细胞都至关重要。在神经元中,Ca 震荡控制着突触的发育、神经递质的释放和几种基因的表达。钙稳态的改变被发现在神经退行性进展中起着关键作用。为了保证阳离子的生理细胞内浓度,神经元中适当的 Ca 信号的维持需要 Ca 泵和交换器的持续活动。质膜 CaATP 酶(PMCA 泵)在调节选定的亚质膜微区中的 Ca 处理中起着关键作用。在哺乳动物中存在的四种基本 PMCA 泵同工型中,同工型 2 和 3 在神经系统中特别丰富。在人类中,与钙粘蛋白 23 突变相关的 PMCA2 基因突变与听力损失表型有关,而发生在 PMCA3 基因中的突变与 X 连锁先天性小脑共济失调有关。在这里,我们描述了 PMCA2 蛋白钙调蛋白结合域(CaM-BD)中的一种新的错义突变(V1143F)。突变泵存在于一个表现出先天性小脑共济失调但没有明显耳聋迹象的患者中,与钙粘蛋白 23 基因没有突变一致。对突变的 PMCA2 的生化和分子动力学研究表明,V1143F 取代改变了钙调蛋白与 CaM-BD 的结合,导致 Ca 排出受损。

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