Owens R A, Weitzman M D, Kyöstiö S R, Carter B J
Laboratory of Molecular and Cellular Biology, National Institute of Diabetes and Digestive and Kidney Diseases, Bethesda, Maryland 20892.
J Virol. 1993 Feb;67(2):997-1005. doi: 10.1128/JVI.67.2.997-1005.1993.
The Rep78 and Rep68 proteins of adeno-associated virus (AAV) bind to the AAV terminal repeat hairpin DNA and are required for viral replication. We have expressed a series of mutant rep genes from the human immunodeficiency virus type 1 long terminal repeat promoter in human 293 cells and in an in vitro transcription-translation system. Mutant proteins were analyzed for AAV hairpin DNA binding and AAV terminal resolution functions. Deletion of amino acid residues 523 through 621 of Rep 78 had no effect on these functions. Amber mutant Rep proteins truncated at either amino acid 237 or amino acid 243 showed no detectable hairpin DNA binding or terminal resolution activity. A frameshift mutant Rep protein which contained Rep78 amino acids 1 through 241 lacked terminal resolution functions but bound specifically to the AAV hairpin DNA. The carboxyl-terminal missense sequence in this mutant appeared to have complemented an AAV-specific DNA-binding domain within the amino terminus of the Rep protein. mutant Rep protein in which methionine 225 of Rep78 was deleted (M225dl) was reduced threefold in AAV hairpin binding and had no terminal resolution functions. A mutant Rep protein in which a glycine was substituted at position 225 (M225G) was fully functional in these assays. When M225dl extract was mixed with wild-type Rep78 extract, AAV terminal resolution by Rep78 was inhibited. These results suggest that the amino-terminal portion of Rep78 and Rep68 contains a domain which can direct binding to AAV terminal hairpin DNA and that elements within the central region of the protein stabilize binding.
腺相关病毒(AAV)的Rep78和Rep68蛋白与AAV末端重复发夹DNA结合,是病毒复制所必需的。我们已经在人293细胞和体外转录-翻译系统中从人免疫缺陷病毒1型长末端重复启动子表达了一系列突变rep基因。对突变蛋白进行了AAV发夹DNA结合和AAV末端切割功能分析。Rep 78的氨基酸残基523至621的缺失对这些功能没有影响。在氨基酸237或氨基酸243处截短的琥珀突变Rep蛋白未显示出可检测到的发夹DNA结合或末端切割活性。包含Rep78氨基酸1至241的移码突变Rep蛋白缺乏末端切割功能,但能特异性结合AAV发夹DNA。该突变体中的羧基末端错义序列似乎补充了Rep蛋白氨基末端内的AAV特异性DNA结合结构域。Rep78的甲硫氨酸225缺失的突变Rep蛋白(M225dl)与AAV发夹的结合减少了三倍,并且没有末端切割功能。在第225位被甘氨酸取代的突变Rep蛋白(M225G)在这些测定中具有完全功能。当M225dl提取物与野生型Rep78提取物混合时,Rep78对AAV末端的切割受到抑制。这些结果表明,Rep78和Rep68的氨基末端部分包含一个可以直接与AAV末端发夹DNA结合的结构域,并且蛋白质中央区域内的元件稳定了这种结合。