Tan Yih Wan, Yu Hong Bing, Leung Ka Yin, Sivaraman J, Mok Yu-Keung
Department of Biological Sciences, National University of Singapore, Singapore 117543.
Protein Sci. 2008 Oct;17(10):1748-60. doi: 10.1110/ps.036798.108. Epub 2008 Jul 28.
In the type III secretion system (T3SS) of Aeromonas hydrophila, the putative needle complex subunit AscF requires both putative chaperones AscE and AscG for formation of a ternary complex to avoid premature assembly. Here we report the crystal structure of AscE at 2.7 A resolution and the mapping of buried regions of AscE, AscG, and AscF in the AscEG and AscEFG complexes using limited protease digestion. The dimeric AscE is comprised of two helix-turn-helix monomers packed in an antiparallel fashion. The N-terminal 13 residues of AscE are buried only upon binding with AscG, but this region is found to be nonessential for the interaction. AscE functions as a monomer and can be coexpressed with AscG or with both AscG and AscF to form soluble complexes. The AscE binding region of AscG in the AscEG complex is identified to be within the N-terminal 61 residues of AscG. The exposed C-terminal substrate-binding region of AscG in the AscEG complex is induced to be buried only upon binding to AscF. However, the N-terminal 52 residues of AscF remain exposed even in the ternary AscEFG complex. On the other hand, the 35-residue C-terminal region of AscF in the complex is resistant to protease digestion in the AscEFG complex. Site-directed mutagenesis showed that two C-terminal hydrophobic residues, Ile83 and Leu84, of AscF are essential for chaperone binding.
在嗜水气单胞菌的III型分泌系统(T3SS)中,假定的针状复合体亚基AscF需要假定的伴侣蛋白AscE和AscG才能形成三元复合体,以避免过早组装。在此,我们报告了分辨率为2.7 Å的AscE晶体结构,并使用有限蛋白酶消化法对AscEG和AscEFG复合体中AscE、AscG和AscF的埋藏区域进行了定位。二聚体AscE由两个以反平行方式堆积的螺旋-转角-螺旋单体组成。AscE的N端13个残基仅在与AscG结合时才被埋藏,但该区域被发现对相互作用并非必需。AscE作为单体发挥作用,可与AscG或与AscG和AscF共同表达以形成可溶性复合体。在AscEG复合体中,AscG的AscE结合区域被确定在AscG的N端61个残基内。在AscEG复合体中,AscG暴露的C端底物结合区域仅在与AscF结合时才被诱导埋藏。然而,即使在三元AscEFG复合体中,AscF的N端52个残基仍保持暴露。另一方面,复合体中AscF的35个残基C端区域在AscEFG复合体中对蛋白酶消化具有抗性。定点诱变表明,AscF的两个C端疏水残基Ile83和Leu84对于伴侣蛋白结合至关重要。