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影响离子通道介导的细胞反应的钙调蛋白缺陷的分子基础分析:位点特异性诱变和显微注射。

Analysis of the molecular basis of calmodulin defects that affect ion channel-mediated cellular responses: site-specific mutagenesis and microinjection.

作者信息

Hinrichsen R, Wilson E, Lukas T, Craig T, Schultz J, Watterson D M

机构信息

Fred Hutchinson Cancer Research Center, Seattle, Washington 98104.

出版信息

J Cell Biol. 1990 Dec;111(6 Pt 1):2537-42. doi: 10.1083/jcb.111.6.2537.

Abstract

The ability of microinjected calmodulin to temporarily restore an ion channel-mediated behavioral phenotype of a calmodulin mutant in Paramecium tetraurelia (cam1) is dependent on the amino acid side chain that is present at residue 101, even when there is extensive variation in the rest of the amino acid sequence. Analysis of conservation of serine-101 in calmodulin suggests that the ability of calmodulin to regulate this ion channel-associated cell function may be a biological role of calmodulin that is widely distributed phylogenetically. A series of mutant calmodulins that differ only at residue-101 were produced by in vitro site-specific mutagenesis and expression in Escherichia coli, purified to chemical homogeneity, and tested for their ability to temporarily restore a wild-type behavioral phenotype to cam1 (pantophobiacA1) Paramecium. Calmodulins with glycine-101 or tyrosine-101 had minimal activity; calmodulins with phenylalanine-101 or alanine-101 had no detectable activity. However, as a standard of comparison, all of the calmodulins were able to activate a calmodulin-regulated enzyme, myosin light chain kinase, that is sensitive to point mutations elsewhere in the calmodulin molecule. Overall, these results support the hypothesis that the structural features of calmodulin required for the transduction of calcium signals varies with the particular pathway that is being regulated and provide insight into why inherited mutations of calmodulin at residue 101 are nonlethal and selective in their phenotypic effects.

摘要

显微注射钙调蛋白能暂时恢复四膜虫(cam1)中钙调蛋白突变体的离子通道介导的行为表型,这一能力取决于第101位残基上存在的氨基酸侧链,即便氨基酸序列的其余部分存在广泛变异。对钙调蛋白中丝氨酸101的保守性分析表明,钙调蛋白调节这种与离子通道相关的细胞功能的能力可能是钙调蛋白在系统发育上广泛分布的一种生物学作用。通过体外定点诱变并在大肠杆菌中表达,产生了一系列仅在第101位残基不同的突变钙调蛋白,将其纯化至化学纯一性,并测试它们使cam1(泛恐惧型A1)四膜虫暂时恢复野生型行为表型的能力。第101位为甘氨酸或酪氨酸的钙调蛋白活性最低;第101位为苯丙氨酸或丙氨酸的钙调蛋白无检测到的活性。然而,作为比较标准,所有钙调蛋白都能够激活一种钙调蛋白调节的酶——肌球蛋白轻链激酶,该酶对钙调蛋白分子其他位置的点突变敏感。总体而言,这些结果支持了以下假说:钙信号转导所需的钙调蛋白结构特征因所调节的特定途径而异,并为钙调蛋白第101位残基的遗传性突变为何在表型效应上非致死且具有选择性提供了见解。

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