Zhang Yue, Barbieri Joseph T
Medical College of Wisconsin, Microbiology and Molecular Genetics, 8701 Watertown Plank Rd., Milwaukee, WI 53226, USA.
Infect Immun. 2005 Dec;73(12):7938-45. doi: 10.1128/IAI.73.12.7938-7945.2005.
Type III cytotoxins contribute to the ability of bacterial pathogens to subvert the host innate immune system. ExoS (453 amino acids) is a bifunctional type III cytotoxin produced by Pseudomonas aeruginosa. Residues 96 to 232 comprise a Rho GTPase activating protein domain, while residues 233 to 453 comprise a 14-3-3-dependent ADP-ribosyltransferase domain. An N-terminal domain (termed the membrane localization domain [MLD]) targets ExoS to the Golgi-endoplasmic reticulum (Golgi-ER) of mammalian cells. This study identifies an amino acid motif that is responsible for the membrane binding properties of the MLD. Deletion mapping showed that the MLD included a symmetrical leucine-rich motif within residues 51 to 77 of ExoS. The terminal dileucines and internal leucines and an isoleucine within the MLD, but not charged or other hydrophobic residues, targeted a reporter protein to the Golgi-ER region of HeLa cells. Mutations of the leucines within the MLD did not affect type III secretion or translocation into HeLa cells but limited the ability of ExoS to ADP-ribosylate Ras GTPases. Mutations of charged residues within the MLD did not affect type III secretion, delivery into HeLa cells, or the ability of ExoS to ADP-ribosylate Ras GTPases. The organization of the leucines within the MLD of ExoS is different from that of previously described leucine-rich motifs but is present in several other bacterial proteins. This implies a role for intracellular targeting in the efficient targeting of mammalian cells by type III cytotoxins.
III型细胞毒素有助于细菌病原体破坏宿主先天免疫系统的能力。外毒素S(453个氨基酸)是由铜绿假单胞菌产生的一种双功能III型细胞毒素。第96至232位残基构成一个Rho GTP酶激活蛋白结构域,而第233至453位残基构成一个依赖14-3-3的ADP核糖基转移酶结构域。一个N端结构域(称为膜定位结构域[MLD])将外毒素S靶向哺乳动物细胞的高尔基体-内质网(高尔基体-内质网)。本研究鉴定出一个负责MLD膜结合特性的氨基酸基序。缺失图谱显示,MLD在ExoS的第51至77位残基内包含一个对称的富含亮氨酸基序。MLD内的末端双亮氨酸、内部亮氨酸和一个异亮氨酸,而不是带电荷或其他疏水残基,将一种报告蛋白靶向到HeLa细胞的高尔基体-内质网区域。MLD内亮氨酸的突变不影响III型分泌或转运到HeLa细胞中,但限制了外毒素S对Ras GTP酶进行ADP核糖基化的能力。MLD内带电荷残基的突变不影响III型分泌、递送至HeLa细胞或外毒素S对Ras GTP酶进行ADP核糖基化的能力。ExoS的MLD内亮氨酸的排列与先前描述的富含亮氨酸基序不同,但存在于其他几种细菌蛋白中。这意味着细胞内靶向在III型细胞毒素有效靶向哺乳动物细胞中发挥作用。