Larkin Christopher, Haft Rembrandt J F, Harley Matthew J, Traxler Beth, Schildbach Joel F
Department of Biology, The Johns Hopkins University, Baltimore, Maryland 21218.
Department of Microbiology, University of Washington, Seattle, Washington 98195.
J Biol Chem. 2007 Nov 16;282(46):33707-33713. doi: 10.1074/jbc.M703210200. Epub 2007 Sep 20.
Bacterial conjugation, transfer of a single strand of a conjugative plasmid between bacteria, requires sequence-specific single-stranded DNA endonucleases called relaxases or nickases. Relaxases contain an HUH (His-hydrophobe-His) motif, part of a three-His cluster that binds a divalent cation required for the cleavage reaction. Crystal structures of the F plasmid TraI relaxase domain, with and without bound single-stranded DNA, revealed an extensive network of interactions involving HUH and other residues. Here we study the roles of these residues in TraI function. Whereas substitutions for the three His residues alter metal-binding properties of the protein, the same substitution at each position elicits different effects, indicating that the residues contribute asymmetrically to metal binding. Substitutions for a conserved Asp that interacts with one HUH His demonstrate that the Asp modulates metal affinity despite its distance from the metal. The bound metal enhances binding of ssDNA to the protein, consistent with a role for the metal in positioning the scissile phosphate for cleavage. Most substitutions tested caused significantly reduced in vitro cleavage activities and in vivo transfer efficiencies. In summary, the results suggest that the metal-binding His cluster in TraI is a finely tuned structure that achieves a sufficient affinity for metal while avoiding the unfavorable electrostatics that would result from placing an acidic residue near the scissile phosphate of the bound ssDNA.
细菌接合,即细菌之间接合性质粒单链的转移,需要称为松弛酶或切口酶的序列特异性单链DNA内切酶。松弛酶含有一个HUH(组氨酸-疏水氨基酸-组氨酸)基序,这是三His簇的一部分,该簇结合切割反应所需的二价阳离子。F质粒TraI松弛酶结构域结合和未结合单链DNA时的晶体结构揭示了一个涉及HUH和其他残基的广泛相互作用网络。在这里,我们研究这些残基在TraI功能中的作用。虽然三个组氨酸残基的替换改变了蛋白质的金属结合特性,但每个位置相同的替换会引发不同的效应,这表明这些残基对金属结合的贡献是不对称的。与一个HUH组氨酸相互作用的保守天冬氨酸的替换表明,尽管天冬氨酸与金属有一定距离,但它仍能调节金属亲和力。结合的金属增强了单链DNA与蛋白质的结合,这与金属在定位可切割磷酸基团以进行切割中的作用一致。大多数测试的替换导致体外切割活性和体内转移效率显著降低。总之,结果表明TraI中的金属结合His簇是一个精细调节的结构,它对金属具有足够的亲和力,同时避免了由于在结合的单链DNA的可切割磷酸基团附近放置酸性残基而产生的不利静电作用。