Medical College of Wisconsin, Microbiology and Molecular Genetics, Milwaukee, Wisconsin, USA.
Infect Immun. 2014 Jan;82(1):21-8. doi: 10.1128/IAI.01059-13. Epub 2013 Oct 7.
Pseudomonas aeruginosa exoenzyme S (ExoS) ADP-ribosylates multiple eukaryotic targets to promote cytopathology and bacterial colonization. ADP-ribosylation of the small GTPase Rab5 has previously been shown to block fluid-phase endocytosis and trafficking of plasma membrane receptors to the early endosomes as well as inhibit phagocytosis of the bacterium. In this study, ExoS is shown to be capable of ADP-ribosylating 6 candidate arginine residues that are located in the effector binding region or in the C terminus of Rab5. Two Rab5 derivatives were engineered, which contained Arg→Ala mutations at four Arg residues within the effector binding region (EF) or two Arg residues within the C-terminal tail (TL). Expression of Rab5(TL) does not affect the ability of ExoS to modify intracellular trafficking, while expression of Rab5(EF) rescued the ability of ExoS to inhibit intracellular trafficking. ADP-ribosylation of effector arginines likely uncouples Rab5 signaling to downstream effectors. This is a different mechanism for inhibition than observed for the ADP-ribosylation of Ras by ExoS, where ADP-ribosylated Ras loses the ability to bind guanine nucleotide exchange factor (GEF). Other experiments showed that expression of dominant negative Rab5(Ser34Asn) does not inhibit ExoS trafficking to the perinuclear region of intoxicated cells. This study provides insight into a mechanism for how ExoS ADP-ribosylation of Rab5 inhibits Rab5 function.
铜绿假单胞菌外毒素 S(ExoS)将 ADP-ribosyl 多种真核靶标,以促进细胞病变和细菌定植。先前已经表明,ADP-ribosylation 的小 GTPase Rab5 可以阻止液相反噬作用和质膜受体到早期内涵体的运输,以及抑制细菌的吞噬作用。在这项研究中,ExoS 被证明能够 ADP-ribosyl 6 个候选精氨酸残基,这些残基位于效应子结合区域或 Rab5 的 C 末端。设计了两种 Rab5 衍生物,它们在效应子结合区域(EF)内的四个 Arg 残基或 C 末端尾部(TL)内的两个 Arg 残基内包含 Arg→Ala 突变。Rab5(TL) 的表达不影响 ExoS 修饰细胞内运输的能力,而 Rab5(EF) 的表达挽救了 ExoS 抑制细胞内运输的能力。效应子精氨酸的 ADP-ribosylation 可能使 Rab5 信号与下游效应物解偶联。这是与 ExoS 对 Ras 的 ADP-ribosylation 观察到的抑制机制不同,其中 ADP-ribosylated Ras 失去与鸟嘌呤核苷酸交换因子(GEF)结合的能力。其他实验表明,表达显性负性 Rab5(Ser34Asn) 不会抑制 ExoS 向中毒细胞的核周区域运输。这项研究提供了对 ExoS ADP-ribosylation 抑制 Rab5 功能的机制的深入了解。