Christensen Shawn M, Bibillo Arkadiusz, Eickbush Thomas H
Department of Biology, University of Rochester, Rochester, NY 14627-0211, USA.
Nucleic Acids Res. 2005 Nov 10;33(20):6461-8. doi: 10.1093/nar/gki957. Print 2005.
R2 is a site-specific non-long terminal repeat (non-LTR) retrotransposon encoding a single polypeptide with reverse transcriptase, DNA endonuclease and nucleic acid-binding domains. The current model of R2 retrotransposition involves an ordered series of cleavage and polymerization steps carried out by at least two R2 protein subunits, one bound upstream and one bound downstream of the integration site. The role in the retrotransposition reaction of two conserved DNA-binding motifs, a C2H2 zinc finger (ZF) and a Myb motif, located within the N-terminal domain of the protein are explored in this report. These motifs do not appear to play a role in RT or the ability of the protein to bind the R2 RNA transcript. Methylation and missing nucleoside interference-based DNA footprints using polypeptides to the N-terminal domain suggest the ZF and Myb motifs bind to regions -3 to -1 and +10 to +15 with reference to the insertion site. Mutations in these DNA sites or of the N-terminal protein domain blocked binding and the activity of the downstream subunit. Mutations of the protein domain also affected binding of the upstream subunit but not its function, suggesting the primary path to DNA target recognition by R2 involves both upstream and downstream subunits.
R2是一种位点特异性非长末端重复(non-LTR)逆转座子,编码一种具有逆转录酶、DNA内切核酸酶和核酸结合结构域的单一多肽。目前关于R2逆转座的模型涉及由至少两个R2蛋白亚基执行的一系列有序的切割和聚合步骤,一个亚基结合在整合位点上游,另一个结合在整合位点下游。本报告探讨了位于该蛋白N端结构域内的两个保守DNA结合基序,即C2H2锌指(ZF)和Myb基序在逆转座反应中的作用。这些基序似乎在逆转录酶或该蛋白结合R2 RNA转录本的能力方面不起作用。使用针对N端结构域的多肽进行的甲基化和基于缺失核苷干扰的DNA足迹分析表明,ZF和Myb基序结合在相对于插入位点的-3至-1和+10至+15区域。这些DNA位点或N端蛋白结构域的突变会阻止下游亚基的结合和活性。蛋白结构域的突变也会影响上游亚基的结合,但不影响其功能,这表明R2识别DNA靶标的主要途径涉及上游和下游亚基。