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注入HeLa细胞的结构特征明确的蛋白质的降解。基础测量。

Degradation of structurally characterized proteins injected into HeLa cells. Basic measurements.

作者信息

Rogers S W, Rechsteiner M

机构信息

Department of Biology, University of Utah, Salt Lake City 84132.

出版信息

J Biol Chem. 1988 Dec 25;263(36):19833-42.

PMID:3058706
Abstract

Thirty-five proteins of known x-ray structure were labeled by chloramine-T radioiodination or by reaction with 125I-Bolton-Hunter reagent and introduced into HeLa cells using red cell-mediated microinjection. Degradation rates of the injected proteins were then determined over the next 50 h by measuring the release of soluble isotope to the culture medium. Control experiments demonstrated that the measured rates were not compromised by proteolysis within RBCs, the presence of unfused RBCs, or degradation of protein released from RBCs to the medium. Degradation of some injected proteins was faster during the first 12 h after fusion than at later times, apparently a response of HeLa cells to trypsinization. However, all proteins exhibited first-order degradation rates between 24 and 48 h post injection. Except for seven proteins, stabilities measured during this interval were unaffected by the labeling procedure. Reductive methylation was used to choose among the seven discordant values, and half-lives for the 35 proteins ranged from 16 h for lysozyme to 214 h for yeast alcohol dehydrogenase. Since half-lives for six of the injected proteins closely match values obtained by in vivo measurements, we consider our estimates of the metabolic stabilities of the injected proteins to be generally accurate. Therefore, the half-lives obtained by microinjection should prove useful in the search for relationships between protein structure and intracellular stability.

摘要

35种已知X射线结构的蛋白质通过氯胺-T放射性碘化或与¹²⁵I-博尔顿-亨特试剂反应进行标记,并使用红细胞介导的显微注射法导入HeLa细胞。然后,在接下来的50小时内,通过测量培养基中可溶性同位素的释放量来确定注入蛋白质的降解速率。对照实验表明,所测得的速率不受红细胞内的蛋白水解、未融合红细胞的存在或从红细胞释放到培养基中的蛋白质降解的影响。融合后的最初12小时内,一些注入蛋白质的降解速度比之后更快,这显然是HeLa细胞对胰蛋白酶消化的一种反应。然而,所有蛋白质在注射后24至48小时之间均呈现一级降解速率。除了7种蛋白质外,在此时间段内测得的稳定性不受标记程序的影响。使用还原甲基化法在7个不一致的值中进行选择,35种蛋白质的半衰期从溶菌酶的16小时到酵母乙醇脱氢酶的214小时不等。由于6种注入蛋白质的半衰期与体内测量获得的值非常匹配,我们认为我们对注入蛋白质代谢稳定性的估计总体上是准确的。因此,通过显微注射获得的半衰期在寻找蛋白质结构与细胞内稳定性之间的关系方面应该会被证明是有用的。

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