Unit of Molecular Medicine for Neuromuscular and Neurodegenerative Disorders, Department of Neurosciences, Bambino Gesù Children's Hospital, Istituti di Ricovero e Cura a Carattere Scientifico, 00165 Rome, Italy.
Proc Natl Acad Sci U S A. 2012 Sep 4;109(36):14514-9. doi: 10.1073/pnas.1207488109. Epub 2012 Aug 21.
Ca(2+) in neurons is vital to processes such as neurotransmission, neurotoxicity, synaptic development, and gene expression. Disruption of Ca(2+) homeostasis occurs in brain aging and in neurodegenerative disorders. Membrane transporters, among them the calmodulin (CaM)-activated plasma membrane Ca(2+) ATPases (PMCAs) that extrude Ca(2+) from the cell, play a key role in neuronal Ca(2+) homeostasis. Using X-exome sequencing we have identified a missense mutation (G1107D) in the CaM-binding domain of isoform 3 of the PMCAs in a family with X-linked congenital cerebellar ataxia. PMCA3 is highly expressed in the cerebellum, particularly in the presynaptic terminals of parallel fibers-Purkinje neurons. To study the effects of the mutation on Ca(2+) extrusion by the pump, model cells (HeLa) were cotransfected with expression plasmids encoding its mutant or wild-type (wt) variants and with the Ca(2+)-sensing probe aequorin. The mutation reduced the ability of the PMCA3 pump to control the cellular homeostasis of Ca(2+). It significantly slowed the return to baseline of the Ca(2+) transient induced by an inositol-trisphosphate (InsP(3))-linked plasma membrane agonist. It also compromised the ability of the pump to oppose the influx of Ca(2+) through the plasma membrane capacitative channels.
钙离子对于神经元的多种过程非常重要,如神经递质传递、神经毒性、突触发育和基因表达等。在大脑衰老和神经退行性疾病中,钙离子稳态会被打破。细胞膜转运蛋白在钙离子稳态中起着关键作用,其中包括钙调蛋白(CaM)激活的质膜 Ca2+-ATP 酶(PMCA),它可以将 Ca2+从细胞内泵出。我们使用 X 外显子组测序在一个伴 X 连锁先天性小脑共济失调的家系中发现了 PMCA 的亚型 3 中 CaM 结合域的错义突变(G1107D)。PMCA3 在小脑中有高度表达,特别是在平行纤维-浦肯野神经元的突触前末端。为了研究该突变对泵的 Ca2+外排的影响,我们将表达质粒与编码其突变型或野生型(wt)变体以及 Ca2+敏感探针 aequorin 的模型细胞(HeLa)共转染。该突变降低了 PMCA3 泵控制细胞内 Ca2+稳态的能力。它显著减缓了由肌醇三磷酸(InsP3)结合的质膜激动剂诱导的 Ca2+瞬变恢复到基线的速度。它还损害了泵对抗质膜电容性通道中 Ca2+内流的能力。