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人类心脏Cavβ2亚基的新型短剪接变体:重新定义在调节Cav1.2通道中发挥作用的主要功能基序。

New short splice variants of the human cardiac Cavbeta2 subunit: redefining the major functional motifs implemented in modulation of the Cav1.2 channel.

作者信息

Harry Jo Beth, Kobrinsky Evgeny, Abernethy Darrell R, Soldatov Nikolai M

机构信息

NIA, National Institutes of Health, Baltimore, Maryland 21224, USA.

出版信息

J Biol Chem. 2004 Nov 5;279(45):46367-72. doi: 10.1074/jbc.M409523200. Epub 2004 Aug 31.

Abstract

Two new short splice variants of the Ca2+ channel beta2 subunit were cloned from human heart poly(A)(+) mRNA. The 410-amino acid beta2f subunit is encoded by exons 1A, 2A, 3, 4, 12, 13, and 14 of the human Cavbeta2 gene and lacks the protein kinase A phosphorylation site, the beta-interaction domain (De Waard, M., Pragnell, M., and Campbell, K. P. (1994) Neuron 13, 495-503), 40% of the beta-SH3 domain, and 73% of the guanylate kinase domain of the putative membrane-associated guanylate kinases module (McGee, A. W., Nunziato, D. A., Maltez, J. M., Prehoda, K. E., Pitt, G. S., and Bredt, D. S. (2004) Neuron 42, 89-99), and helix alpha3 of the alpha1-subunit binding pocket (Van Petegem F., Clark, K. A., Chatelain, F. C., and Minor, D. L., Jr. (2004) Nature 429, 671-675). The beta2g transcript has two potential initiation codons. With the second ATG codon, it generates the 164-amino acid beta2Deltag subunit encoded essentially by the distal part of exon 14, and thus beta2Deltag completely lacks any of the above motifs. Immunoprecipitation analysis confirmed stable association of beta2f and beta2Deltag with the alpha1C subunit. The plasma membrane localization of beta2f and beta2Deltag was substantially increased by co-expression of the alpha1C,77 and alpha2delta subunits. In COS1 cells, beta2f and beta2Deltag increased plasma membrane targeting of the pore-forming alpha1C subunit and differentially facilitated (beta2f > beta2Deltag) the voltage gating of otherwise silent Cav1.2 channels. We conclude that it is unlikely that the beta-interaction domain, membrane-associated guanylate kinases module, and the alpha1-subunit binding pocket helix alpha3 are essential for the interaction of the alpha1C and beta2 subunits and suggest that in addition to the alpha1-subunit binding pocket helices alpha5 and alpha8, a yet unresolved C-terminal beta2 region plays a crucial role.

摘要

从人心脏多聚腺苷酸(poly(A))mRNA中克隆出了钙离子通道β2亚基的两种新的短剪接变体。410个氨基酸的β2f亚基由人Cavβ2基因的外显子1A、2A、3、4、12、13和14编码,缺少蛋白激酶A磷酸化位点、β相互作用结构域(德瓦尔德,M.,普拉格内尔,M.,和坎贝尔,K.P.(1994年)《神经元》13卷,495 - 503页)、β-SH3结构域的40%以及假定的膜相关鸟苷酸激酶模块(麦吉,A.W.,努齐亚托,D.A.,马尔泰兹,J.M.,普雷霍达,K.E.,皮特,G.S.,和布雷德特,D.S.(2004年)《神经元》42卷,89 - 99页)中鸟苷酸激酶结构域的73%,以及α1亚基结合口袋的α3螺旋(范·佩特根,F.,克拉克,K.A.,沙泰兰,F.C.,和米诺,D.L.,Jr.(2004年)《自然》429卷,671 - 675页)。β2g转录本有两个潜在的起始密码子。以第二个ATG密码子起始,它产生了164个氨基酸的β2Δg亚基,基本上由外显子14的远端部分编码,因此β2Δg完全缺少上述任何基序。免疫沉淀分析证实β2f和β2Δg与α1C亚基稳定结合。α1C和α2δ亚基的共表达显著增加了β2f和β2Δg在质膜上的定位。在COS1细胞中,β2f和β2Δg增加了形成孔道的α1C亚基在质膜上的定位,并以不同方式促进(β2f > β2Δg)原本沉默的Cav1.2通道的电压门控。我们得出结论,β相互作用结构域、膜相关鸟苷酸激酶模块以及α1亚基结合口袋螺旋α3对于α1C和β2亚基的相互作用不太可能是必需的,并表明除了α1亚基结合口袋螺旋α5和α8外,一个尚未解析的β2 C末端区域起着关键作用。

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