Pai K S, Bussiere D E, Wang F, White S W, Bastia D
Department of Microbiology, Duke University Medical Center, Durham, NC 27710, USA.
Proc Natl Acad Sci U S A. 1996 Oct 1;93(20):10647-52. doi: 10.1073/pnas.93.20.10647.
The replication terminator protein (RTP) of Bacillus subtilis is a homodimer that binds to each replication terminus and impedes replication fork movement in only one orientation with respect to the replication origin. The three-dimensional structure of the RTP-DNA complex needs to be determined to understand how structurally symmetrical dimers of RTP generate functional asymmetry. The functional unit of each replication terminus of Bacillus subtilis consists of four turns of DNA complexed with two interacting dimers of RTP. Although the crystal structure of the RTP apoprotein dimer has been determined at 2.6-A resolution, the functional unit of the terminus is probably too large and too flexible to lend itself to cocrystallization. We have therefore used an alternative strategy to delineate the three dimensional structure of the RTP-DNA complex by converting the protein into a site-directed chemical nuclease. From the pattern of base-specific cleavage of the terminus DNA by the chemical nuclease, we have mapped the amino acid to base contacts. Using these contacts as distance constraints, with the crystal structure of RTP, we have constructed a model of the DNA-protein complex. The biological implications of the model have been discussed.
枯草芽孢杆菌的复制终止蛋白(RTP)是一种同型二聚体,它与每个复制终止位点结合,并仅以相对于复制起点的一个方向阻碍复制叉的移动。需要确定RTP-DNA复合物的三维结构,以了解RTP结构对称的二聚体如何产生功能不对称性。枯草芽孢杆菌每个复制终止位点的功能单元由与两个相互作用的RTP二聚体复合的四圈DNA组成。尽管RTP脱辅基蛋白二聚体的晶体结构已在2.6埃分辨率下确定,但终止位点的功能单元可能太大且太灵活,难以进行共结晶。因此,我们采用了另一种策略,通过将该蛋白转化为位点特异性化学核酸酶来描绘RTP-DNA复合物的三维结构。根据化学核酸酶对终止位点DNA的碱基特异性切割模式,我们绘制了氨基酸与碱基的接触图。利用这些接触作为距离限制,并结合RTP的晶体结构,我们构建了DNA-蛋白质复合物的模型。已经讨论了该模型的生物学意义。