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Griseofulvin resistance mutation of Chinese hamster ovary cells that affects the apparent molecular weight of a congruent to 200000-dalton protein.

机译:中国仓鼠卵巢细胞对灰黄霉素的抗性突变影响与20万道尔顿蛋白质一致的表观分子量。

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摘要

A single-step griseofulvin-resistant mutant (GrsR-4) of CHO cells which exhibit very specific cross-resistance towards certain microtubule inhibitors showed the absence of a protein of molecular weight congruent to 200,000 (designated P5) and the concomitant presence of a new protein spot, M5, of lower molecular weight (Mr congruent to 180,000) which is not present in other cell lines. Peptide mapping studies showed that proteins P5 and M5 are related to each other and that M5 may be missing a peptide fragment present in P5. In GrsR-4 X GrsS cell hybrids, both P5 and M5 were present in equal amounts, which provided evidence against post-translation mechanisms in the origin of M5 and indicated that the GrsR-4 mutant most likely contains a nonsense mutation in the structural gene for protein P5, which causes its premature termination and leads to the formation of M5. Our studies also showed that in different Chinese hamster cell lines the two alleles of the protein P5 are nonidentical and make protein products which differ from each other in isoelectric points. It is suggested that protein P5 and its isoelectric variant P6 may constitute microtubule-associated proteins.
机译:对某些微管抑制剂表现出非常特异性的交叉耐药性的CHO细胞单步灰黄霉素抗性突变体(GrsR-4)显示不存在分子量为200,000的蛋白质(称为P5),并且同时存在新的分子量较低的蛋白质斑点M5(Mr等于180,000),在其他细胞系中不存在。肽图研究表明,蛋白P5和M5彼此相关,并且M5可能缺少P5中存在的肽片段。在GrsR-4 X GrsS细胞杂种中,P5和M5的存在量相等,这提供了针对M5起源后翻译机制的证据,表明GrsR-4突变体很可能在结构基因中包含无义突变对于蛋白质P5而言,会导致其过早终止并导致M5的形成。我们的研究还表明,在不同的中国仓鼠细胞系中,蛋白质P5的两个等位基因是不同的,它们的蛋白质产物在等电点上彼此不同。建议蛋白P5及其等电变异体P6可能构成微管相关蛋白。

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