首页> 美国卫生研究院文献>Biochemical Journal >Reconstitution of the folding pathway of collagen in a cell-free system: formation of correctly aligned and hydroxylated triple helices.
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Reconstitution of the folding pathway of collagen in a cell-free system: formation of correctly aligned and hydroxylated triple helices.

机译:在无细胞系统中重建胶原蛋白的折叠途径:形成正确排列和羟基化的三重螺旋。

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摘要

We describe here a cell-free system which will carry out the initial stages in the synthesis, post-translational modification and assembly of type-X collagen. The mRNA coding for bovine type-X collagen was synthesized in vitro and translated in a rabbit reticulocyte lysate to yield a protein that was collagenase sensitive and could be immunoprecipitated with antibodies raised to purified avian type-X collagen. When type-X collagen was synthesized in the absence of added microsomes or in the presence of canine pancreas microsomes, the translation products showed partial resistance to digestion with pepsin but were completely degraded with a mixture of chymotrypsin and trypsin, suggesting that only incorrectly aligned non-native collagen molecules were synthesized under these conditions. When the protein was synthesized in the presence of microsomes derived from avian fibroblasts or a human fibrosarcoma cell line, the translocated product migrated as a diffuse band characteristic of hydroxylated collagen. The synthesized polypeptides were also resistant to both pepsin and trypsin/chymotrypsin digestion, demonstrating the formation of correctly aligned native collagen. Furthermore, the collagen polypeptides assembled into higher-order structures, possibly trimers, which were stabilized by interchain disulphide bonds. The collagen helix synthesized in vitro had a melting temperature of 41 degrees C which is comparable with the protein synthesized in vivo, further demonstrating that the polypeptides were hydroxylated and that the triple helix formed was correctly aligned.
机译:我们在这里描述了一种无细胞系统,该系统将在X型胶原蛋白的合成,翻译后修饰和组装中进行初始阶段。体外编码合成编码X型牛胶原蛋白的mRNA,并在兔网织红细胞裂解液中翻译,以产生对胶原酶敏感的蛋白,并且可以用针对纯化的X型禽胶原的抗体免疫沉淀。当在不添加微粒体或犬胰腺微粒体的情况下合成X型胶原蛋白时,翻译产物显示出对胃蛋白酶消化的部分抵抗力,但被胰凝乳蛋白酶和胰蛋白酶的混合物完全降解,这表明只有错误排列的非在这些条件下合成天然胶原蛋白分子。当在存在源自禽成纤维细胞或人纤维肉瘤细胞系的微粒体的情况下合成蛋白质时,易位产物迁移为具有羟基化胶原蛋白特征的扩散带。合成的多肽还对胃蛋白酶和胰蛋白酶/胰凝乳蛋白酶消化均具有抗性,表明形成了正确排列的天然胶原。此外,胶原蛋白多肽通过链间二硫键组装成高阶结构,可能是三聚体。体外合成的胶原蛋白螺旋的熔化温度为41摄氏度,与体内合成的蛋白质相当,进一步表明多肽被羟基化,形成的三螺旋被正确排列。

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