Institute of Molecular Biosciences, University of Graz, Humboldtstrasse 50, 8010 Graz, Austria.
Mol Microbiol. 2010 Dec;78(6):1539-55. doi: 10.1111/j.1365-2958.2010.07423.x. Epub 2010 Oct 15.
In preparation for transfer conjugative type IV secretion systems (T4SS) produce a nucleoprotein adduct containing a relaxase enzyme covalently linked to the 5' end of single-stranded plasmid DNA. The bound relaxase is expected to present features necessary for selective recognition by the type IV coupling protein (T4CP), which controls substrate entry to the envelope spanning secretion machinery. We prove that the IncF plasmid R1 relaxase TraI is translocated to the recipient cells. Using a Cre recombinase assay (CRAfT) we mapped two internally positioned translocation signals (TS) on F-like TraI proteins that independently mediate efficient recognition and secretion. Tertiary structure predictions for the TS matched best helicase RecD2 from Deinococcus radiodurans. The TS is widely conserved in MOB(F) and MOB(Q) families of relaxases. Structure/function relationships within the TS were identified by mutation. A key residue in specific recognition by T4CP TraD was revealed by a fidelity switch phenotype for an F to plasmid R1 exchange L626H mutation. Finally, we show that physical linkage of the relaxase catalytic domain to a TraI TS is necessary for efficient conjugative transfer.
在准备转移时,共轭 IV 型分泌系统 (T4SS) 会产生一种核蛋白加合物,其中包含与单链质粒 DNA 5'端共价连接的松弛酶。结合的松弛酶预计会呈现出对 IV 型偶联蛋白 (T4CP) 进行选择性识别所必需的特征,T4CP 控制着底物进入跨越包膜的分泌机制。我们证明了 IncF 质粒 R1 松弛酶 TraI 被转运到受体细胞中。使用 Cre 重组酶测定法 (CRAfT),我们在 F 样 TraI 蛋白上定位了两个内部定位的易位信号 (TS),它们独立地介导有效的识别和分泌。TS 的三级结构预测与 Deinococcus radiodurans 的解旋酶 RecD2 匹配最佳。TS 在 MOB(F)和 MOB(Q)松弛酶家族中广泛保守。通过突变确定了 TS 内的结构/功能关系。通过 F 到质粒 R1 交换 L626H 突变的保真度开关表型,揭示了 T4CP TraD 特异性识别中的关键残基。最后,我们表明松弛酶催化结构域与 TraI TS 的物理连接对于有效的共轭转移是必要的。