Hershko A, Leshinsky E, Ganoth D, Heller H
Proc Natl Acad Sci U S A. 1984 Mar;81(6):1619-23. doi: 10.1073/pnas.81.6.1619.
Previous studies have indicated that the ATP-requiring conjugation of ubiquitin with proteins plays a role in the energy-dependent degradation of intracellular proteins. To examine whether such conjugates are indeed intermediates in protein breakdown, conjugates of 125I-labeled lysozyme with ubiquitin were isolated and incubated with a fraction of reticulocyte extract that lacks the enzymes that carry out ubiquitin-protein conjugation. ATP markedly stimulated degradation of the lysozyme moiety of ubiquitin conjugates to products soluble in trichloroacetic acid. By contrast, free 125I-labeled lysozyme was not degraded under these conditions, unless ubiquitin and the three enzymes required for ubiquitin conjugation were supplemented. Mg2+ was absolutely required for conjugate breakdown. Of various nucleotides, only CTP replaced ATP. Nonhydrolyzable analogs of ATP were not effective. In the absence of ATP, free lysozyme is released from ubiquitin-lysozyme conjugates by isopeptidases present in the extract. Thus, ATP is involved in both the formation and the breakdown of ubiquitin-protein conjugates.
先前的研究表明,泛素与蛋白质的需ATP的缀合作用在细胞内蛋白质的能量依赖性降解中发挥作用。为了检验此类缀合物是否确实是蛋白质分解的中间体,将125I标记的溶菌酶与泛素的缀合物分离,并与缺乏进行泛素 - 蛋白质缀合的酶的网织红细胞提取物的一部分一起孵育。ATP显著刺激泛素缀合物的溶菌酶部分降解为可溶于三氯乙酸的产物。相比之下,游离的125I标记的溶菌酶在这些条件下不会降解,除非补充泛素和泛素缀合所需的三种酶。Mg2+是缀合物分解绝对必需的。在各种核苷酸中,只有CTP可以替代ATP。ATP的不可水解类似物无效。在没有ATP的情况下,提取物中存在的异肽酶会从泛素 - 溶菌酶缀合物中释放出游离溶菌酶。因此,ATP参与泛素 - 蛋白质缀合物的形成和分解。