Lingappa V R, Shields D, Woo S L, Blobel G
J Cell Biol. 1978 Nov;79(2 Pt 1):567-72. doi: 10.1083/jcb.79.2.567.
Highly purified mRNA for chicken ovalbumin has been translated in a cell-free protein synthesizing system from rabbit reticulocytes in the presence or absence of EDTA-stripped microsomal membranes from dog pancreas. Nascent--but not completed--ovalbumin was transferred across the microsomal membrane, as demonstrated by cotranslational core glycosylation of ovalbumin nascent chains, by resistance to posttranslational proteolysis of only the glycosylated ovalbumin chains, and by cosedimentation with the membrane of exclusively the glycosylated form. Furthermore, nascent chains of bovine prolactin were observed to compete with nascent ovalbumin for transfer across the microsomal membrane. However, no competition for membrane sites was observed between nascent chains of rabbit globin and either nascent ovalbumin or prolactin. We interpret these results to suggest that nascent ovalbumin contains the functional equivalent of a signal sequence for transfer across membranes, and that membrane components involved in the segregation of secretory proteins with cleaved signal sequences also function in the segregation of ovalbumin.
在有无来自狗胰腺的经乙二胺四乙酸(EDTA)处理的微粒体膜存在的情况下,已在兔网织红细胞的无细胞蛋白质合成系统中翻译了高度纯化的鸡卵清蛋白信使核糖核酸(mRNA)。新生的而非完整的卵清蛋白穿过了微粒体膜,这通过卵清蛋白新生链的共翻译核心糖基化、仅糖基化的卵清蛋白链对翻译后蛋白水解的抗性以及仅糖基化形式与膜的共沉降得以证明。此外,观察到牛催乳素的新生链与新生卵清蛋白竞争穿过微粒体膜进行转运。然而,未观察到兔珠蛋白新生链与新生卵清蛋白或催乳素之间对膜位点的竞争。我们对这些结果的解释是,新生卵清蛋白含有与跨膜转运信号序列功能相当的序列,并且参与具有切割信号序列的分泌蛋白分选的膜成分在卵清蛋白的分选中也发挥作用。