Desai P, Person S
Department of Molecular Genetics and Biochemistry, University of Pittsburgh, Pennsylvania 15261, USA.
Virology. 1996 Jun 15;220(2):516-21. doi: 10.1006/viro.1996.0341.
HSV-1 B capsids are composed of seven major proteins, designated VP5, VP19C, 21, 22a, VP23, VP24, and VP26. VP indicates that the capsid protein is also a component of the infectious virion. Capsid proteins 21, 22a, and VP24 are specified by a single open reading frame (UL26) that encodes 635 amino acids. An objective of the work in our laboratory is to identify and map interactions among and between capsid proteins. In the present studies we employed the yeast GAL4 two-hybrid system developed by Fields and his colleagues (Nature 240, 245-246 (1989)) for this purpose. DNA corresponding to the capsid open reading frames was derived as a PCR product and fused to sequences of the GAL4 activation and DNA binding domains. Using this system each of the capsid proteins has been tested for interactions with all of the other capsid proteins. Three interactions have been identified: a relatively strong self-interaction between 22a molecules (residues 307-635 of UL26), bimolecular interactions between 22a and VP5, and another between VP19C and VP23. The interactions were detected by the expression of beta-galactosidase enzyme activity, and yielded 289, 86, and 63 units of enzyme activity, respectively. For the 22a self-interaction, elimination of residues 611-635 resulted in an approximately twofold decrease in enzyme activity. The C-terminal 25 amino acids of 22a were also essential for the bimolecular interaction between 22a and VP5.
单纯疱疹病毒1型B衣壳由七种主要蛋白质组成,分别命名为VP5、VP19C、21、22a、VP23、VP24和VP26。VP表示衣壳蛋白也是感染性病毒粒子的一个组成部分。衣壳蛋白21、22a和VP24由一个编码635个氨基酸的单一开放阅读框(UL26)指定。我们实验室这项工作的一个目标是识别和描绘衣壳蛋白之间以及它们内部的相互作用。在本研究中,我们为此目的采用了由菲尔德斯及其同事开发的酵母GAL4双杂交系统(《自然》240, 245 - 246 (1989))。对应于衣壳开放阅读框的DNA作为PCR产物获得,并与GAL4激活域和DNA结合域的序列融合。使用这个系统,对每个衣壳蛋白与所有其他衣壳蛋白的相互作用进行了测试。已经确定了三种相互作用:22a分子之间相对较强的自身相互作用(UL26的307 - 635位残基)、22a与VP5之间的双分子相互作用以及VP19C与VP23之间的另一种相互作用。通过β - 半乳糖苷酶活性的表达检测到这些相互作用,分别产生了289、86和63个酶活性单位。对于22a自身相互作用,去除611 - 635位残基导致酶活性大约降低两倍。22a的C末端25个氨基酸对于22a与VP5之间的双分子相互作用也至关重要。