Carrió M M, Corchero J L, Villaverde A
Institut de Biologia Fonamental and Departament de Genètica and Microbiologia, Universitat Autònoma de Barcelona, Bellaterra, 08193, Barcelona, Spain.
Biochim Biophys Acta. 1999 Sep 14;1434(1):170-6. doi: 10.1016/s0167-4838(99)00177-6.
Inclusion bodies formed by two closely related hybrid proteins, namely VP1LAC and LACVP1, have been compared during their building in Escherichia coli. Features of these proteins are determinant of aggregation rates and protein composition of the bodies, generating insoluble particles with distinguishable volume evolution. Interestingly, in LACVP1 and less perceptibly in VP1LAC bodies, an important fraction of the aggregated polypeptide is lost at a given stage of body construction. Stable degradation intermediates of the more fragile LACVP1 are concomitantly found embedded in the bodies. When recombinant protein synthesis is arrested in growing cells, the amount of aggregated protein drops while the amount of soluble protein undergoes a sudden rise before proteolysis. This indicates an architectural plasticity during the in vivo building of the studied inclusion bodies by a dynamic transition between soluble and insoluble forms of the recombinant proteins involved. During this transition, protease-sensitive polypeptides can suffer an efficient proteolytic attack and the resulting fragments further aggregate as inclusion body components.
在大肠杆菌中构建两种密切相关的杂合蛋白(即VP1LAC和LACVP1)所形成的包涵体时,对它们进行了比较。这些蛋白质的特性决定了包涵体的聚集速率和蛋白质组成,产生具有可区分体积变化的不溶性颗粒。有趣的是,在LACVP1中以及在VP1LAC包涵体中不太明显的是,在包涵体构建的特定阶段,聚集多肽的一大部分会丢失。同时发现,更脆弱的LACVP1的稳定降解中间体嵌入在包涵体中。当生长细胞中的重组蛋白合成停止时,聚集蛋白的量下降,而可溶性蛋白的量在蛋白水解之前突然增加。这表明在体内构建所研究的包涵体过程中,通过所涉及的重组蛋白的可溶性和不溶性形式之间的动态转变,存在结构可塑性。在这个转变过程中,蛋白酶敏感的多肽可能会受到有效的蛋白水解攻击,产生的片段会进一步聚集成为包涵体成分。