质膜钙泵:膜靶向、钙结合位点、组织特异性异构体表达。

D Guerini, E Garcia-Martin, A Zecca, F Guidi, E Carafoli
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引用次数: 0

摘要

高等真核生物的两个Ca2+泵严格针对不同的膜系统:质膜(PMCA)和sarco(endo)质网(SERCA)。在COS-7细胞中表达的两个泵的嵌合结构揭示了SERCA泵的n端胞质部分内质网保留的强烈信号:该信号包含在n端之后的28个氨基酸中。第二个内质网保留信号被掩盖,它包含在钙调素泵的钙调素结合域之前的细胞质c端序列中。SERCA泵上的选择性突变导致5个保守残基膜结构域(TM)4、5和6通过泵蛋白形成Ca2+通道。比较序列检查未能在PMCA泵的TM5中发现任何这些残留物。TM4中保守残基的突变和TM6中两个残基的突变破坏了泵形成Ca(2+)依赖性磷酸酶的能力。然而,其中一个突变(N979, TM6)也引起了网状PMCA泵的保留,提示结构改变。在泵的四种基本同工异构体中,两种(1,4)普遍表达,两种(2,3)基本上是脑特异性的。异构体2具有最高的钙调素亲和力。新生大鼠的小脑颗粒细胞原代培养在电镀时不表达同种异构体2和3。在去极化浓度的KCl中培养细胞,促进Ca2+内流,促进异构体2和3的表达,以及异构体1的脑特异性剪接变体。在l型Ca2+通道阻滞剂中培养细胞可消除泵基因的上调。
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The calcium pump of the plasma membrane: membrane targeting, calcium binding sites, tissue-specific isoform expression.

The two Ca2+ pumps of higher eucaryotes are strictly targeted to different membrane systems: the plasma membrane (PMCA) and the sarco(endo)plasmic reticulum (SERCA). Chimeric constructs of the two pumps expressed in COS-7 cells have revealed a strong signal for endoplasmic reticulum retention in the N-terminal cytosolic portion of the SERCA pump: the signal is contained in a stretch of 28 amino acids that follows the N-terminus. A second, but masked, endoplasmic reticulum retention signal is contained in a cytosolic C-terminal sequence immediately preceding the calmodulin-binding domain of the Ca2+ pump. Selective mutations on the SERCA pump have led to the conclusion that 5 conserved residue membrane domains (TM)4, 5, and 6 form the Ca2+ channel through the pump protein. A comparative sequence inspection has failed to reveal any of these residues in TM5 of the PMCA pump. Mutation of the conserved residue in TM4 and of two in TM6 abolished the ability of the pump to form the Ca(2+)-dependent phosphoenzyme. However, one of the mutations (N979, TM6) also caused retention of the PMCA pump in the reticulum, suggesting structural alterations. Of the four basic isoforms of the pump, two (1, 4) are ubiquitously expressed, two (2, 3) are essentially brain specific. Isoform 2 has the highest calmodulin affinity. Primary cultures of cerebellar granule cells from newborn rats did not express isoforms 2 and 3 at plating time. Incubation of the cells in depolarizing concentrations of KCl, which promote Ca2+ influx, promoted the expression of isoforms 2 and 3, and of a brain specific spliced variant of isoform 1. Incubation of the cells in L-type Ca2+ channel blockers abolished the upregulation of the pump genes.

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