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对除微管蛋白外与微管相关蛋白受影响的哺乳动物细胞突变体进行的遗传和生化研究:一种微管相关蛋白的线粒体定位

Genetic and biochemical studies with mutants of mammalian cells affected in microtubule-related proteins other than tubulin: mitochondrial localization of a microtubule-related protein.

作者信息

Gupta R S, Venner T J, Chopra A

出版信息

Can J Biochem Cell Biol. 1985 Jun;63(6):489-502. doi: 10.1139/o85-068.

Abstract

In Chinese hamster ovary cells, stable mutants exhibiting specific resistance or collateral sensitivity towards the various microtubule inhibitors podophyllotoxin, colchicine, griseofulvin, taxol, nocodazole, vinblastine, and maytansine have been isolated. A number of independent mutants selected for resistance to podophyllotoxin and colchicine contain electrophoretically altered forms of two proteins, P1 and P2, of relative molecular masses of approximately 63 000 and 69 000, respectively. The proteins P1 and P2 have been shown to be microtubule related by a number of different genetic and biochemical criteria and are among the major proteins of Chinese hamster ovary cells, being present in approximately equimolar amounts with tubulin. In addition, a griseofulvin-resistant mutant contains a novel mutation (presumably nonsense) which reduces the relative molecular mass of a protein, P5 (relative mass congruent to 200 000), by about 20 000. Specific antibodies to protein P1 have been raised and cross-reactivity studies show that a similar protein is also present in cells from all vertebrate species examined, viz. man, monkey, mouse, Chinese hamster, Syrian hamster, and chicken. Immunofluorescence studies with anti-P1 and anti-tubulin antibodies show that, in interphase cells from various species, the P1 antibody reacts specifically with mitochondria whose overall cellular distribution is strikingly similar to the distribution of microtubules. The mitochondrial localization of the microtubule-related protein P1 provides strong suggestive evidence regarding the existence of a chemical and functional linkage between these two structures, with protein P1 playing an important role in this linkage. Some implication of these results are discussed and it is suggested that mitochondria play an important role in the dynamics of microtubules.

摘要

在中国仓鼠卵巢细胞中,已分离出对各种微管抑制剂鬼臼毒素、秋水仙碱、灰黄霉素、紫杉醇、诺考达唑、长春碱和美登木素表现出特异性抗性或协同敏感性的稳定突变体。许多为抗鬼臼毒素和秋水仙碱而选择的独立突变体含有两种蛋白质P1和P2的电泳改变形式,其相对分子质量分别约为63000和69000。通过多种不同的遗传和生化标准已表明蛋白质P1和P2与微管相关,并且它们是中国仓鼠卵巢细胞的主要蛋白质之一,与微管蛋白的含量大致相等。此外,一个抗灰黄霉素的突变体含有一个新的突变(可能是无义突变),该突变使一种蛋白质P5(相对质量相当于200000)的相对分子质量降低了约20000。已制备了针对蛋白质P1的特异性抗体,交叉反应研究表明,在所检测的所有脊椎动物物种的细胞中也存在类似的蛋白质,即人、猴、小鼠、中国仓鼠、叙利亚仓鼠和鸡。用抗P1和抗微管蛋白抗体进行的免疫荧光研究表明,在来自不同物种的间期细胞中,P1抗体与线粒体特异性反应,其在细胞中的总体分布与微管的分布惊人地相似。微管相关蛋白P1的线粒体定位为这两种结构之间存在化学和功能联系提供了有力的暗示性证据,蛋白质P1在这种联系中起重要作用。讨论了这些结果的一些含义,并提出线粒体在微管动力学中起重要作用。

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