Hall M R, Gibson W
Department of Pharmacology and Molecular Sciences, The Johns Hopkins University School of Medicine, 725 North Wolfe Street, Baltimore, Maryland, 21205, USA.
Virology. 1997 Jan 6;227(1):160-7. doi: 10.1006/viro.1996.8335.
The herpes simplex virus type 1 (HSV) maturational proteinase is synthesized as a precursor that undergoes two autoproteolytic cleavages; one at its (M)aturational site, which eliminates its carboxyl "tail," and a second at its (R)elease site, which separates the amino proteolytic half of the precursor from its nonproteolytic carboxyl half. In cytomegalovirus (CMV) the proteolytic half of the precursor, called assemblin, undergoes a third cleavage at an (I)nternal site that converts it from a single-chain to a two-chain enzyme that retains activity. The HSV assemblin homolog has no I site and therefore does not form a counterpart two-chain enzyme. In the work reported here we have cloned and expressed HSV sequences that encode mimics of the An and Ac subunits of two-chain CMV assemblin. We show that when these HSV sequences are coexpressed in eukaryotic cells, the resulting subunits associate spontaneously to form an active two-chain enzyme. We also show that the two-chain HSV enzyme, like the natural one-chain form, retains its marked preference for HSV over CMV substrates, and that intertypic recombinant two-chain assemblin (e.g., HSV An/CMV Ac) does not form because the cross-species subunits do not interact. We conclude from these results that (i) there are not intrinsic structural differences in the HSV assemblin homolog that preclude its functioning as a CMV-like two-chain enzyme, (ii) the substrate selectivity shown by the single-chain HSV enzyme was not noticeably relaxed in the HSV two-chain mimic, and (iii) the interactive domains, through which the An and Ac portions of the single-chain enzymes associate, differ between HSV and CMV.
单纯疱疹病毒1型(HSV)成熟蛋白酶以一种前体形式合成,该前体经历两次自催化切割;一次在其(M)成熟位点,这会去除其羧基“尾”,另一次在其(R)释放位点,这会将前体的氨基蛋白水解半部分与其非蛋白水解羧基半部分分开。在巨细胞病毒(CMV)中,前体的蛋白水解半部分,称为装配蛋白,在一个(I)内部位点经历第三次切割,将其从单链转化为具有活性的双链酶。HSV装配蛋白同源物没有I位点,因此不会形成对应的双链酶。在本文报道的工作中,我们克隆并表达了编码双链CMV装配蛋白的An和Ac亚基模拟物的HSV序列。我们表明,当这些HSV序列在真核细胞中共表达时,产生的亚基会自发结合形成一种活性双链酶。我们还表明,双链HSV酶与天然单链形式一样,对HSV底物的偏好明显高于CMV底物,并且不会形成异型重组双链装配蛋白(例如,HSV An/CMV Ac),因为跨物种亚基不会相互作用。我们从这些结果得出结论:(i)HSV装配蛋白同源物不存在内在结构差异,阻止其作为CMV样双链酶发挥作用;(ii)单链HSV酶显示的底物选择性在HSV双链模拟物中没有明显放松;(iii)单链酶的An和Ac部分通过其相互作用的结构域在HSV和CMV之间存在差异。