Anderson R, Wong F
Department of Microbiology and Infectious Diseases, Faculty of Medicine, University of Calgary, Alberta, Canada.
Virology. 1993 May;194(1):224-32. doi: 10.1006/viro.1993.1253.
Evidence is presented which indicates that membrane binding of the murine coronavirus, mouse hepatitis virus (MHV) nucleocapsid (N) protein is mediated by certain lipids. Binding of N protein to membranes of mouse fibroblast L-2 cells is very specific and occurs under conditions in which no other viral or cellular proteins show detectable binding. Binding occurs with both free and nucleocapsid-associated N protein, arguing for membrane-binding sites on the N protein itself, rather than on RNA. Binding of N protein also occurs to membranes in the absence of MHV matrix (M) protein which is known to interact with the N protein. Both non-viral, single-stranded RNA and DNA inhibit membranes. Of various phospholipids tested, cardiolipin was the most effective in inhibiting membrane binding. The N protein was also shown to bind directly to phospholipid liposomes containing cardiolipin as well as to liposomes containing total lipids extracted from mouse L-2 cells. Because of certain structural similarities between phospholipids and nucleic acids, we speculate that membrane lipid association of the N protein may compete for RNA binding sites on the N protein. Such a mechanism may be important for processes such as nucleocapsid uncoating and nucleocapsid assembly. Most interestingly the properties of phospholipid and nucleic acid binding are markedly similar to those recently described for the bacterial DNA-binding proteins DnaA and recA.
有证据表明,鼠冠状病毒——小鼠肝炎病毒(MHV)核衣壳(N)蛋白与膜的结合是由某些脂质介导的。N蛋白与小鼠成纤维细胞L-2细胞膜的结合非常特异,且发生在其他病毒或细胞蛋白均未显示出可检测到的结合的条件下。游离的N蛋白和与核衣壳相关的N蛋白均可发生结合,这表明N蛋白自身存在膜结合位点,而非RNA上存在膜结合位点。在不存在已知与N蛋白相互作用的MHV基质(M)蛋白的情况下,N蛋白也可与膜发生结合。非病毒的单链RNA和DNA均可抑制膜结合。在测试的各种磷脂中,心磷脂对抑制膜结合最为有效。N蛋白还被证明可直接结合含有心磷脂的磷脂脂质体,以及含有从小鼠L-2细胞中提取的总脂质的脂质体。由于磷脂和核酸之间存在某些结构相似性,我们推测N蛋白与膜脂质的结合可能会竞争N蛋白上的RNA结合位点。这样一种机制对于核衣壳解聚和核衣壳组装等过程可能很重要。最有趣的是,磷脂和核酸结合的特性与最近描述的细菌DNA结合蛋白DnaA和recA的特性明显相似。