Treier M, Staszewski L M, Bohmann D
European Molecular Biology Laboratory, Differentiation Programme, Heidelberg, Federal Republic of Germany.
Cell. 1994 Sep 9;78(5):787-98. doi: 10.1016/s0092-8674(94)90502-9.
The role of the ubiquitin-dependent proteolysis system in c-Jun breakdown was investigated. Using in vitro experiments and a novel in vivo assay that utilizes molecularly-tagged ubiquitin and c-Jun proteins, it was shown that c-Jun, but not its transforming counterpart, retroviral v-Jun, can be efficiently multiubiquitinated. Consistently, v-Jun has a longer half-life than c-Jun. Mutagenesis experiments indicate that the reason for the escape of v-Jun from multiubiquitination and its resulting stabilization is the deletion of the delta domain, a stretch of 27 amino acids that is present in c-Jun but not in v-Jun. c-Jun sequences containing the delta domain, when transferred to the bacterial beta-galactosidase protein, function as a cis-acting ubiquitination and degradation signal. The correlation between transforming ability and the escape from ubiquitin-dependent degradation described here suggests a novel route to oncogenesis.
研究了泛素依赖性蛋白水解系统在c-Jun降解中的作用。通过体外实验以及一种利用分子标记的泛素和c-Jun蛋白的新型体内检测方法,结果表明c-Jun可被高效地多聚泛素化,但其转化对应物逆转录病毒v-Jun则不能。一致的是,v-Jun的半衰期比c-Jun长。诱变实验表明,v-Jun逃避多聚泛素化并因此稳定化的原因是缺失了δ结构域,这是一段27个氨基酸的序列,存在于c-Jun中但不存在于v-Jun中。当含有δ结构域的c-Jun序列转移至细菌β-半乳糖苷酶蛋白时,其作为顺式作用的泛素化和降解信号发挥作用。此处描述的转化能力与逃避泛素依赖性降解之间的相关性提示了一种新的肿瘤发生途径。