Prabu J Rajan, Thamotharan S, Khanduja Jasbeer Singh, Chandra Nagasuma R, Muniyappa K, Vijayan M
Molecular Biophysics Unit, Indian Institute of Science, Bangalore 560 012, India.
Biochim Biophys Acta. 2009 Jul;1794(7):1001-9. doi: 10.1016/j.bbapap.2009.04.003. Epub 2009 Apr 15.
RuvA, along with RuvB, is involved in branch migration of heteroduplex DNA in homologous recombination. The structures of three new crystal forms of RuvA from Mycobacterium tuberculosis (MtRuvA) have been determined. The RuvB-binding domain is cleaved off in one of them. Detailed models of the complexes of octameric RuvA from different species with the Holliday junction have also been constructed. A thorough examination of the structures presented here and those reported earlier brings to light the hitherto unappreciated role of the RuvB-binding domain in determining inter-domain orientation and oligomerization. These structures also permit an exploration of the interspecies variability of structural features such as oligomerization and the conformation of the loop that carries the acidic pin, in terms of amino acid substitutions. These models emphasize the additional role of the RuvB-binding domain in Holliday junction binding. This role along with its role in oligomerization could have important biological implications.
RuvA与RuvB一起参与同源重组中异源双链DNA的分支迁移。已确定来自结核分枝杆菌的三种新晶体形式的RuvA(MtRuvA)的结构。其中一种晶体形式的RuvB结合结构域被切割掉。还构建了来自不同物种的八聚体RuvA与霍利迪连接体复合物的详细模型。对这里呈现的结构和先前报道的结构进行全面检查,揭示了RuvB结合结构域在确定结构域间方向和寡聚化方面迄今未被重视的作用。这些结构还允许从氨基酸取代的角度探索结构特征(如寡聚化和携带酸性针的环的构象)的种间变异性。这些模型强调了RuvB结合结构域在霍利迪连接体结合中的额外作用。这一作用及其在寡聚化中的作用可能具有重要的生物学意义。