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在两个无细胞蛋白质合成系统中对鸡胚胎肌腱前胶原信使核糖核酸的翻译

Translation of embryonic-chick tendon procollagen messenger ribonucleic acid in two cell-free protein-synthesizing systems.

作者信息

Cheah K S, Grant M E, Jackson D S

出版信息

Biochem J. 1979 Jul 15;182(1):81-93. doi: 10.1042/bj1820081.

Abstract

Embryonic-chick tendon poly(A)-containing RNA was translated in the wheat-germ and mRNA-dependent rabbit reticulocyte-lysate systems. The ability of each system to synthesize polypeptides similar to pro-alpha chains of collagen was tested on the bases of electrophoretic mobility and susceptibility to highly purified bacterial collagenase. Very small amounts of polypeptides in the size range of pro-alpha chains were synthesized in the wheat-germ system, whereas efficient synthesis of two polypeptides similar to pro-alpha1 and pro-alpha2 chains was achieved in the reticulocyte lysate. The collagenous nature of the major high-molecular-weight products synthesized was demonstrated by their susceptibility to collagenase and ability to act as a substrate for purified collagen proline hydroxylase. Determinations of the relative amounts of these translation products suggest that the 2:1 ratio of pro-alpha1 and pro-alpha2 chains found in type I procollagen is reflected in proportional amounts of translatable mRNA for pro-alpha1 and pro-alpha2 chains. Comparisons of the electrophoretic mobilities of hydroxylated and unhydroxylated reticulocyte-lysate translation products were made with appropriate standards of hydroxylated and unhydroxylated procollagen polypeptides. The results suggest that, in common with a number of secreted proteins, procollagen is synthesized as pre-pro molecules consistent with the ;Signal Hypothesis'.

摘要

鸡胚肌腱含多聚腺苷酸的RNA在麦胚和依赖mRNA的兔网织红细胞裂解物系统中进行翻译。根据电泳迁移率和对高度纯化的细菌胶原酶的敏感性,测试了每个系统合成类似于胶原蛋白前α链的多肽的能力。在麦胚系统中合成了极少量处于前α链大小范围内的多肽,而在网织红细胞裂解物中高效合成了两种类似于前α1和前α2链的多肽。合成的主要高分子量产物的胶原性质通过它们对胶原酶的敏感性以及作为纯化的胶原脯氨酸羟化酶底物的能力得以证明。对这些翻译产物相对量的测定表明,I型前胶原中发现的前α1和前α2链的2:1比例反映在可翻译的前α1和前α2链mRNA的相应量中。用羟基化和未羟基化的前胶原多肽的适当标准品对羟基化和未羟基化的网织红细胞裂解物翻译产物的电泳迁移率进行了比较。结果表明,与许多分泌蛋白一样,前胶原作为与“信号假说”一致的前原分子进行合成。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0815/1161236/e323dd76b7e4/biochemj00456-0090-a.jpg

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