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利用寡脱氧核苷酸定向位点特异性诱变研究肌动蛋白的Nτ-甲基组氨酸的作用。

Studies on the role of actin's N tau-methylhistidine using oligodeoxynucleotide-directed site-specific mutagenesis.

作者信息

Solomon L R, Rubenstein P A

出版信息

J Biol Chem. 1987 Aug 15;262(23):11382-8.

PMID:3301854
Abstract

The primary structure of all actins except that isolated from Naegleria gruberi contains a unique N tau-methylhistidine (MeHis) at position 73. This modified residue has been implicated as possibly being important for the post-translational processing of actin's amino terminus, the binding of actin to DNase I, and in the polymerization of G-actin. We have investigated the potential role of MeHis in each of these processes by utilizing site-directed mutagenesis to change His-73 of skeletal muscle actin to Arg and Tyr. Wild type and mutant actins were synthesized in vivo, using non-muscle cells transfected with mutant cDNAs, and in vitro by translating mutant RNAs synthesized using SP6 RNA polymerase in a rabbit reticulocyte lysate. We have found that actins containing Arg or Tyr at position 73 undergo amino-terminal processing, bind to DNase I-agarose, and become incorporated into the cytoskeleton of a nonmuscle cell as efficiently as wild type actin. Furthermore, using an in vitro copolymerization assay we have found that although there is no difference between the Arg mutant and the wild type actins, the Tyr mutant has a slightly greater critical concentration for polymerization. These results show that MeHis is not absolutely required for any of these processes.

摘要

除了从格氏变形虫中分离出的肌动蛋白外,所有肌动蛋白的一级结构在第73位都含有一个独特的Nτ-甲基组氨酸(MeHis)。这个修饰的残基可能对肌动蛋白氨基末端的翻译后加工、肌动蛋白与脱氧核糖核酸酶I的结合以及G-肌动蛋白的聚合很重要。我们通过定点诱变将骨骼肌肌动蛋白的第73位组氨酸替换为精氨酸和酪氨酸,研究了MeHis在这些过程中的潜在作用。野生型和突变型肌动蛋白在体内通过用突变型cDNA转染的非肌肉细胞合成,在体外通过在兔网织红细胞裂解物中翻译用SP6 RNA聚合酶合成的突变型RNA来合成。我们发现,第73位含有精氨酸或酪氨酸的肌动蛋白能进行氨基末端加工,能与脱氧核糖核酸酶I-琼脂糖结合,并能像野生型肌动蛋白一样有效地整合到非肌肉细胞的细胞骨架中。此外,通过体外共聚合分析,我们发现虽然精氨酸突变体和野生型肌动蛋白之间没有差异,但酪氨酸突变体的聚合临界浓度略高。这些结果表明,这些过程中的任何一个都不是绝对需要MeHis的。

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