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有证据表明动力蛋白和微管蛋白之间存在共同抗原决定簇。

Evidence suggesting the presence of common antigenic determinant between dynein and tubulin.

作者信息

Nishino Y, Watanabe Y

出版信息

Biochim Biophys Acta. 1977 Jul 22;493(1):104-14. doi: 10.1016/0005-2795(77)90263-x.

Abstract

The present experiments showed that the guinea pig antiserum prepared against the main polypeptides of 14 S dynein from Tetrahymena cilia reacted with sea urchin sperm flagellar dynein and with bovine brain high molecular weight protein to give rise to a precipitin line confluent with that formed between the antiserum and Tetrahymena dynein. Furthermore, it was found that this antiserum also reacted with tubulins from Tetrahymena cilia, sea urchin sperm flagella and bovine brain to give rise to the confluent precipitin line. Among muscle proteins, only actin preparation from rabbit skeletal muscle reacted with the anti-Tetrahymena dynein serum, whereas neither rabbit skeletal muscle myosin, chicken skeletal muscle tropomyosin nor chicken skeletal muscle troponin reacted with the antiserum. These results suggest that dynein and tubulin and probably actin share an antigenic determinant regardless of different protein species and of different animal species. The common antigenic determinant was detected only when the proteins denatured with urea/sodium dodecyl sulfate/beta-mercaptoethanol/N-ethylmaleimide were used, but it was not detected at all when the native proteins were used. This implies that a certain common antigenic determinant which is involved in the precipitin line formation exists in the primary structures of dyneins and tubulins and probably actin, and is hidden inside the tertiary structures of the native protein molecules.

摘要

目前的实验表明,针对来自四膜虫纤毛的14S动力蛋白主要多肽制备的豚鼠抗血清,能与海胆精子鞭毛动力蛋白以及牛脑高分子量蛋白发生反应,产生一条沉淀线,该沉淀线与抗血清和四膜虫动力蛋白之间形成的沉淀线融合。此外,还发现这种抗血清也能与来自四膜虫纤毛、海胆精子鞭毛和牛脑的微管蛋白发生反应,产生融合沉淀线。在肌肉蛋白中,只有兔骨骼肌肌动蛋白制剂能与抗四膜虫动力蛋白血清发生反应,而兔骨骼肌肌球蛋白、鸡骨骼肌原肌球蛋白和鸡骨骼肌肌钙蛋白均不与该抗血清发生反应。这些结果表明,无论蛋白质种类和动物种类如何不同,动力蛋白、微管蛋白以及可能的肌动蛋白都共享一个抗原决定簇。只有当使用经尿素/十二烷基硫酸钠/β-巯基乙醇/N-乙基马来酰亚胺变性的蛋白质时,才能检测到这种共同的抗原决定簇,而使用天然蛋白质时则完全检测不到。这意味着在动力蛋白、微管蛋白以及可能的肌动蛋白的一级结构中存在某种与沉淀线形成有关的共同抗原决定簇,并且该抗原决定簇隐藏在天然蛋白质分子的三级结构内部。

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