Skiba M C, Knight K L
Department of Biochemistry and Molecular Biology, University of Massachusetts Medical Center, Worcester 01655.
J Biol Chem. 1994 Feb 4;269(5):3823-8.
Assembly of RecA subunits into long, helical oligomers is required for its roles in recombinational DNA repair and homologous genetic recombination. The crystal structure of RecA reveals an extensive network of amino acid residues that lie at the subunit boundaries. We have introduced a large set of substitutions at 5 clustered residues, which are shown in the crystal structure to make specific contacts with positions in the neighboring monomer. We find that 3 of the 5 residues are important for RecA function (Lys216, Phe217, and Arg222), whereas the other 2 (Asn213 and Tyr218) are not. The patterns of functionally allowed substitutions provide insight into the chemical and steric constraints required at these positions.
RecA亚基组装成长的螺旋状寡聚体是其在重组DNA修复和同源基因重组中发挥作用所必需的。RecA的晶体结构揭示了位于亚基边界的广泛氨基酸残基网络。我们在5个成簇的残基处引入了大量取代,晶体结构显示这些残基与相邻单体中的位置进行特定接触。我们发现5个残基中的3个对RecA功能很重要(赖氨酸216、苯丙氨酸217和精氨酸222),而另外2个(天冬酰胺213和酪氨酸218)则不然。功能上允许的取代模式为这些位置所需的化学和空间限制提供了见解。