Ishmael F T, Alley S C, Benkovic S J
Department of Chemistry, The Pennsylvania State University, 414 Wartik Laboratory, University Park, PA 16802, USA.
J Biol Chem. 2001 Jul 6;276(27):25236-42. doi: 10.1074/jbc.M100783200. Epub 2001 Apr 17.
The bacteriophage T4 59 protein (gp59) plays a vital role in recombination and replication by promoting the assembly of the gene 41 helicase (gp41) onto DNA, thus enabling replication as well as strand exchange in recombination. Loading of the helicase onto gp32 (the T4 single strand binding protein)-coated single-stranded DNA requires gp59 to remove gp32 and replace it with gp41. Cross-linking studies between gp32 and gp59 reveal an interaction between Cys-166 of gp32 and Cys-42 of gp59. Since Cys-166 lies in the DNA binding core domain of gp32, this interaction may affect the association of gp32 with DNA. In the presence of gp32 or DNA, gp59 is capable of forming a multimer consisting of at least five gp59 subunits. Kinetics studies suggest that gp59 and gp41 exist in a one-to-one ratio, predicting that gp59 is capable of forming a hexamer (Raney, K. D., Carver, T. E., and Benkovic, S. J. (1996) J. Biol. Chem. 271, 14074-14081). The C-terminal A-domain of gp32 is needed for gp59 oligomer formation. Cross-linking has established that gp59 can interact with gp32-A (a truncated form of gp32 lacking the A-domain) but cannot form higher species. The results support a model in which gp59 binds to gp32 on a replication fork, destabilizing the gp32-single-stranded DNA interaction concomitant with the oligomerization of gp59 that results in a switching of gp41 for gp32 at the replication fork.
噬菌体T4 59蛋白(gp59)通过促进基因41解旋酶(gp41)组装到DNA上,在重组和复制过程中发挥着至关重要的作用,从而实现复制以及重组中的链交换。将解旋酶加载到gp32(T4单链结合蛋白)包被的单链DNA上需要gp59去除gp32并用gp41取而代之。gp32与gp59之间的交联研究揭示了gp32的Cys-166与gp59的Cys-42之间存在相互作用。由于Cys-166位于gp32的DNA结合核心结构域中,这种相互作用可能会影响gp32与DNA的结合。在存在gp32或DNA的情况下,gp59能够形成由至少五个gp59亚基组成的多聚体。动力学研究表明,gp59和gp41以一对一的比例存在,预测gp59能够形成六聚体(雷尼,K.D.,卡弗,T.E.,和本科维奇,S.J.(1996年)《生物化学杂志》271,14074 - 14081)。gp59寡聚体形成需要gp32的C末端A结构域。交联已证实gp59可以与gp32 - A(一种缺少A结构域的gp32截短形式)相互作用,但不能形成更高聚体。这些结果支持了一个模型,即gp59在复制叉上与gp32结合,使gp32 - 单链DNA相互作用不稳定,同时伴随着gp59的寡聚化,导致在复制叉处gp41取代gp32。