Knejzlík Zdenek, Smékalová Zdena, Ruml Tomás, Sakalian Michael
Department of Biochemistry and Microbiology and Center for Integrated Genomics, Institute of Chemical Technology, Prague 166 28, Czech Republic.
Virology. 2007 Sep 1;365(2):260-70. doi: 10.1016/j.virol.2007.03.053. Epub 2007 May 9.
Mason-Pfizer monkey virus (M-PMV) Gag protein contains a domain p12 that is unique to this virus (simian retrovirus-3) and its close relatives. The alpha-helical N-terminal half of p12, which contains a leucine zipper-like region, forms ordered structures in E. coli and the C-terminal half can form SDS-resistant oligomers in vitro. Together these properties suggest that p12 is a strong protein-protein interaction domain that facilitates Gag-Gag oligomerization. We have analyzed the oligomerization potential of a panel of p12 mutants, including versions containing substituted dimer, trimer, and tetramer leucine zippers, expressed in bacteria and in the context of the Gag precursor expressed in vitro and in cells. Purified recombinant p12 and its mutants could form various oligomers as shown by chemical cross-linking experiments. Within Gag these same mutants could assemble when overexpressed in cells. In contrast, all the mutants, including the leucine zipper mutants, were assembly defective in a cell-free system. These data highlight the importance of a region containing alternating leucines and isoleucines within p12, but also indicate that this domain's scaffold-like function is more complex than small number oligomerization.
梅森-辉瑞猴病毒(M-PMV)的Gag蛋白包含一个p12结构域,该结构域是这种病毒(猿猴逆转录病毒-3)及其近亲所特有的。p12的α螺旋N端一半包含一个类似亮氨酸拉链的区域,在大肠杆菌中形成有序结构,C端一半在体外可形成抗SDS的寡聚体。这些特性共同表明p12是一个强大的蛋白质-蛋白质相互作用结构域,有助于Gag-Gag寡聚化。我们分析了一组p12突变体的寡聚化潜力,包括含有替代二聚体、三聚体和四聚体亮氨酸拉链的变体,这些变体在细菌中以及在体外和细胞中表达的Gag前体背景下表达。化学交联实验表明,纯化的重组p12及其突变体可以形成各种寡聚体。在Gag中,这些相同的突变体在细胞中过表达时可以组装。相比之下,所有突变体,包括亮氨酸拉链突变体,在无细胞系统中都是组装缺陷型的。这些数据突出了p12中包含交替亮氨酸和异亮氨酸的区域的重要性,但也表明该结构域的支架样功能比少数寡聚化更为复杂。