Robertson B J, McCann P J, Matusick-Kumar L, Preston V G, Gao M
Department of Virology, Bristol-Myers Squibb Pharmaceutical Research Institute, Wallingford, Connecticut 06492-7660, USA.
J Virol. 1997 Feb;71(2):1683-7. doi: 10.1128/JVI.71.2.1683-1687.1997.
The herpes simplex virus type 1 (HSV-1) protease and its substrate, the assembly protein ICP35, are involved in virion maturation. Both proteins are encoded by a single open reading frame but are translated independently from 3'-coterminal mRNAs of different sizes and are in frame. The herpesvirus shell assembles around an internal scaffold which is subsequently lost during packaging of the viral genome. The scaffold is composed of ICP35, which is the major component, and autoproteolytically processed forms of the viral protease containing sequences common to ICP35 (Nb). In the baculovirus system, HSV-1 intact capsids can be formed in the presence of the protease or ICP35, indicating that the protease may substitute for ICP35 (Thomsen et al., J. Virol. 68:2442-2457, 1994). This is further supported by the fact that ICP35, in contrast to the protease, is not absolutely essential for viral growth. The processed intermediate of the protease analogous to ICP35 is the 388-amino-acid (aa) protein, Na, which is an N-terminal 59-aa extension of the 329-aa ICP35. To directly examine whether Na can functionally substitute for ICP35 during viral replication, we first constructed a mutant virus, Na delta35, in which 35 aa from the N terminus of Na were deleted. Phenotypic analysis of the mutant showed that this deletion had no effect on protease function. The function of Na was further examined by construction of a plasmid expressing Na alone and testing its ability to complement the growth of the mutant Prb virus in the absence of ICP35. Our results demonstrate that Na can functionally substitute for ICP35 during viral replication.
单纯疱疹病毒1型(HSV-1)蛋白酶及其底物装配蛋白ICP35参与病毒体成熟过程。这两种蛋白由单一开放阅读框编码,但从不同大小且读框相同的3'-共末端mRNA独立翻译而来。疱疹病毒衣壳围绕内部支架组装,该支架在病毒基因组包装过程中随后丢失。该支架由主要成分ICP35以及含有与ICP35(Nb)共有的序列的病毒蛋白酶自蛋白水解加工形式组成。在杆状病毒系统中,在蛋白酶或ICP35存在的情况下可形成HSV-1完整衣壳,这表明蛋白酶可能替代ICP35(汤姆森等人,《病毒学杂志》68:2442 - 2457,1994)。与蛋白酶不同,ICP35对病毒生长并非绝对必需这一事实进一步支持了这一点。类似于ICP35的蛋白酶加工中间体是388个氨基酸(aa)的蛋白Na,它是329个氨基酸的ICP35的N端59个氨基酸的延伸。为了直接检测Na在病毒复制过程中是否能在功能上替代ICP35,我们首先构建了一种突变病毒Na delta35,其中Na的N端35个氨基酸被删除。对该突变体的表型分析表明,这种缺失对蛋白酶功能没有影响。通过构建仅表达Na的质粒并测试其在无ICP35时补充突变体Prb病毒生长的能力,进一步检测了Na的功能。我们的结果表明,Na在病毒复制过程中能在功能上替代ICP35。