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Diversity and developmental expression of L-type calcium channel beta2 proteins and their influence on calcium current in murine heart.小鼠心脏中L型钙通道β2蛋白的多样性、发育表达及其对钙电流的影响。
J Biol Chem. 2009 Oct 30;284(44):30129-37. doi: 10.1074/jbc.M109.045583. Epub 2009 Sep 1.
2
Calcium channel diversity: multiple roles of calcium channel subunits.钙通道多样性:钙通道亚基的多种作用
Curr Opin Neurobiol. 2009 Jun;19(3):237-44. doi: 10.1016/j.conb.2009.06.006. Epub 2009 Jun 24.
3
Akt regulates L-type Ca2+ channel activity by modulating Cavalpha1 protein stability.Akt通过调节Cavα1蛋白稳定性来调控L型钙通道活性。
J Cell Biol. 2009 Mar 23;184(6):923-33. doi: 10.1083/jcb.200805063.
4
Ca2+ influx through T- and L-type Ca2+ channels have different effects on myocyte contractility and induce unique cardiac phenotypes.通过T型和L型钙离子通道的钙离子内流对心肌细胞收缩性有不同影响,并诱导独特的心脏表型。
Circ Res. 2008 Nov 7;103(10):1109-19. doi: 10.1161/CIRCRESAHA.108.185611. Epub 2008 Oct 2.
5
Exploring the function and pharmacotherapeutic potential of voltage-gated Ca2+ channels with gene knockout models.利用基因敲除模型探索电压门控Ca2+通道的功能及药物治疗潜力。
Channels (Austin). 2008 Jul-Aug;2(4):233-51. doi: 10.4161/chan.2.4.5847. Epub 2008 Jul 11.
6
Auxiliary Ca(2+) channel subunits: lessons learned from muscle.辅助性钙离子通道亚基:从肌肉中获得的经验教训。
Curr Opin Pharmacol. 2008 Jun;8(3):311-8. doi: 10.1016/j.coph.2008.01.008. Epub 2008 Mar 7.
7
Ca2+- and mitochondrial-dependent cardiomyocyte necrosis as a primary mediator of heart failure.钙离子和线粒体依赖性心肌细胞坏死作为心力衰竭的主要介导因素。
J Clin Invest. 2007 Sep;117(9):2431-44. doi: 10.1172/JCI31060.
8
Determination of cell types and numbers during cardiac development in the neonatal and adult rat and mouse.新生及成年大鼠和小鼠心脏发育过程中细胞类型和数量的测定。
Am J Physiol Heart Circ Physiol. 2007 Sep;293(3):H1883-91. doi: 10.1152/ajpheart.00514.2007. Epub 2007 Jun 29.
9
Gene therapy to inhibit the calcium channel beta subunit: physiological consequences and pathophysiological effects in models of cardiac hypertrophy.抑制钙通道β亚基的基因治疗:心脏肥大模型中的生理后果和病理生理效应
Circ Res. 2007 Jul 20;101(2):166-75. doi: 10.1161/CIRCRESAHA.107.155721. Epub 2007 Jun 7.
10
Critical role for the beta regulatory subunits of Cav channels in T lymphocyte function.Cav通道的β调节亚基在T淋巴细胞功能中起关键作用。
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成年小鼠心肌细胞特异性敲除 cacnb2 基因导致钙通道功能中度障碍。

Moderate calcium channel dysfunction in adult mice with inducible cardiomyocyte-specific excision of the cacnb2 gene.

机构信息

Experimentelle und Klinische Pharmakologie und Toxikologie, Universität des Saarlandes, Homburg, Germany.

出版信息

J Biol Chem. 2011 May 6;286(18):15875-82. doi: 10.1074/jbc.M111.227819. Epub 2011 Feb 28.

DOI:10.1074/jbc.M111.227819
PMID:21357697
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3091197/
Abstract

The major L-type voltage-gated calcium channels in heart consist of an α1C (Ca(V)1.2) subunit usually associated with an auxiliary β subunit (Ca(V)β2). In embryonic cardiomyocytes, both the complete and the cardiac myocyte-specific null mutant of Ca(V)β2 resulted in reduction of L-type calcium currents by up to 75%, compromising heart function and causing defective remodeling of intra- and extra-embryonic blood vessels followed by embryonic death. Here we conditionally excised the Ca(V)β2 gene (cacnb2) specifically in cardiac myocytes of adult mice (KO). Upon gene deletion, Ca(V)β2 protein expression declined by >96% in isolated cardiac myocytes and by >74% in protein fractions from heart. These latter protein fractions include Ca(V)β2 proteins expressed in cardiac fibroblasts. Surprisingly, mice did not show any obvious impairment, although cacnb2 excision was not compensated by expression of other Ca(V)β proteins or changes of Ca(V)1.2 protein levels. Calcium currents were still dihydropyridine-sensitive, but current density at 0 mV was reduced by <29%. The voltage for half-maximal activation was slightly shifted to more depolarized potentials in KO cardiomyocytes when compared with control cells, but the difference was not significant. In summary, Ca(V)β2 appears to be a much stronger modulator of L-type calcium currents in embryonic than in adult cardiomyocytes. Although essential for embryonic survival, Ca(V)β2 down-regulation in cardiomyocytes is well tolerated by the adult mice.

摘要

心脏中的主要 L 型电压门控钙通道由一个 α1C(Ca(V)1.2)亚基组成,通常与辅助β亚基(Ca(V)β2)相关联。在胚胎心肌细胞中,完整的和心肌细胞特异性的 Ca(V)β2 缺失突变体都导致 L 型钙电流减少多达 75%,损害心脏功能并导致胚胎内外血管重塑缺陷,随后导致胚胎死亡。在这里,我们在成年小鼠的心肌细胞中条件性切除 Ca(V)β2 基因(cacnb2)(KO)。基因缺失后,分离的心肌细胞中 Ca(V)β2 蛋白表达下降了 >96%,心脏蛋白组分中下降了 >74%。这些蛋白组分包括在心肌成纤维细胞中表达的 Ca(V)β2 蛋白。令人惊讶的是,尽管 cacnb2 缺失没有通过其他 Ca(V)β 蛋白的表达或 Ca(V)1.2 蛋白水平的变化得到补偿,但小鼠并没有表现出任何明显的损伤。钙电流仍然对二氢吡啶敏感,但 0 mV 时的电流密度减少了<29%。与对照细胞相比,KO 心肌细胞中钙电流的半数激活电压略微向更去极化的电位偏移,但差异不显著。总之,Ca(V)β2 似乎在胚胎心肌细胞中比在成年心肌细胞中对 L 型钙电流的调节作用更强。尽管 Ca(V)β2 对胚胎存活至关重要,但在成年小鼠中,Ca(V)β2 的下调是可以耐受的。