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利用人巨细胞病毒支架蛋白组装单纯疱疹病毒衣壳:C末端的关键作用

Assembly of herpes simplex virus capsids using the human cytomegalovirus scaffold protein: critical role of the C terminus.

作者信息

Oien N L, Thomsen D R, Wathen M W, Newcomb W W, Brown J C, Homa F L

机构信息

Pharmacia & Upjohn, Inc., Kalamazoo, Michigan 49007, USA.

出版信息

J Virol. 1997 Feb;71(2):1281-91. doi: 10.1128/JVI.71.2.1281-1291.1997.

Abstract

An essential step in assembly of herpes simplex virus (HSV) type 1 capsids involves interaction of the major capsid protein (VP5) with the C terminus of the scaffolding protein (encoded by the UL26.5 gene). The final 12 residues of the HSV scaffolding protein contains an A-X-X-F-V/A-X-Q-M-M-X-X-R motif which is conserved between scaffolding proteins found in other alphaherpesviruses but not in members of the beta- or gamma-herpesviruses. Previous studies have shown that the bovine herpesvirus 1 (alphaherpesvirus) UL26.5 homolog will functionally substitute for the HSV UL26.5 gene (E. J. Haanes et al., J. Virol. 69:7375-7379, 1995). The homolog of the UL26.5 gene in the human cytomegalovirus (HCMV) genome is the UL80.5 gene. In these studies, we tested whether the HCMV UL80.5 gene would substitute for the HSV UL26.5 gene in a baculovirus capsid assembly system that we have previously described (D. R. Thomsen et al., J. Virol. 68:2442-2457, 1994). The results demonstrate that (i) no intact capsids were assembled when the full-length or a truncated (missing the C-terminal 65 amino acids) UL80.5 protein was tested; (ii) when the C-terminal 65 amino acids of the UL80.5 protein were replaced with the C-terminal 25 amino acids of the UL26.5 protein, intact capsids were made and direct interaction of the UL80.5 protein with VP5 was detected; (iii) assembly of intact capsids was demonstrated when the sequence of the last 12 amino acids of the UL80.5 protein was changed from RRIFVA ALNKLE to RRIFVAAMMKLE; (iv) self-interaction of the scaffold proteins is mediated by sequences N terminal to the maturation cleavage site; and (v) the UL26.5 and UL80.5 proteins will not coassemble into scaffold structures. The results suggest that the UL26.5 and UL80.5 proteins form a scaffold by self-interaction via sequences in the N termini of the proteins and emphasize the importance of the C terminus for interaction of scaffold with the proteins that form the capsid shell.

摘要

单纯疱疹病毒1型(HSV-1)衣壳组装的一个关键步骤涉及主要衣壳蛋白(VP5)与支架蛋白C末端(由UL26.5基因编码)的相互作用。HSV支架蛋白的最后12个残基包含一个A-X-X-F-V/A-X-Q-M-M-X-X-R基序,该基序在其他α疱疹病毒的支架蛋白中保守,但在β或γ疱疹病毒成员中不保守。先前的研究表明,牛疱疹病毒1型(α疱疹病毒)UL26.5同源物在功能上可替代HSV UL26.5基因(E. J. Haanes等人,《病毒学杂志》69:7375 - 7379,1995)。人巨细胞病毒(HCMV)基因组中UL26.5基因的同源物是UL80.5基因。在这些研究中,我们测试了HCMV UL80.5基因是否能在我们先前描述的杆状病毒衣壳组装系统中替代HSV UL26.5基因(D. R. Thomsen等人,《病毒学杂志》68:2442 - 2457,1994)。结果表明:(i)当测试全长或截短的(缺失C末端65个氨基酸)UL80.5蛋白时,没有组装出完整的衣壳;(ii)当UL80.5蛋白的C末端65个氨基酸被UL26.5蛋白的C末端25个氨基酸取代时,组装出了完整的衣壳,并且检测到UL80.5蛋白与VP5之间的直接相互作用;(iii)当UL80.5蛋白最后12个氨基酸的序列从RRIFVA ALNKLE变为RRIFVAAMMKLE时,证明组装出了完整的衣壳;(iv)支架蛋白的自我相互作用由成熟切割位点N端的序列介导;(v)UL26.5和UL80.5蛋白不会共同组装成支架结构。结果表明,UL26.5和UL80.5蛋白通过蛋白质N端的序列进行自我相互作用形成支架,并强调了C末端对于支架与形成衣壳外壳的蛋白质相互作用的重要性。

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