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铜绿假单胞菌外毒素S可在多个位点对Ras进行ADP核糖基化修饰。

Pseudomonas aeruginosa exoenzyme S ADP-ribosylates Ras at multiple sites.

作者信息

Ganesan A K, Frank D W, Misra R P, Schmidt G, Barbieri J T

机构信息

Department of Microbiology, Medical College of Wisconsin, Milwaukee, Wisconsin 53226, USA.

出版信息

J Biol Chem. 1998 Mar 27;273(13):7332-7. doi: 10.1074/jbc.273.13.7332.

Abstract

Pseudomonas aeruginosa exoenzyme S (ExoS) ADP-ribosylated Ras to a stoichiometry of approximately 2 molecules of ADP-ribose incorporated per molecule of Ras, which suggested that ExoS could ADP-ribosylate Ras at more than one arginine residue. SDS-polyacrylamide gel electrophoresis analysis showed that ADP-ribosylated Ras possessed a slower mobility than non-ADP-ribosylated Ras. Analysis of the ADP-ribosylation of in vitro transcribed/translated Ras by ExoS identified two electrophoretically shifted forms of Ras, which was consistent with the ADP-ribosylation of Ras at two distinct arginine residues. Analysis of ADP-ribosylated in vitro transcribed/translated Ras mutants possessing individual Arg-to-Ala substitutions showed that Arg-41 was the preferred site of ADP-ribosylation and that the second ADP-ribosylation event occurred at a slower rate than the ADP-ribosylation at Arg-41, but did not occur at a specific arginine residue. Analysis of bacterially expressed wild-type RasDeltaCAAX and RasDeltaCAAXR41K supported the conclusion that Arg-41 was the preferred site of ADP-ribosylation. Arg-41 is located adjacent to the switch 1 region of Ras, which is involved in effector interactions. Introduction of ExoS into eukaryotic cells inhibited Ras-mediated eukaryotic signal transduction since infection of PC-12 cells with an ExoS-producing strain of P. aeruginosa inhibited nerve growth factor-stimulated neurite formation. This is the first demonstration that ExoS disrupts a Ras-mediated signal transduction pathway.

摘要

铜绿假单胞菌外毒素S(ExoS)将Ras进行ADP核糖基化,化学计量比约为每分子Ras掺入2分子ADP核糖,这表明ExoS可在多个精氨酸残基上对Ras进行ADP核糖基化。SDS聚丙烯酰胺凝胶电泳分析表明,ADP核糖基化的Ras迁移率比未ADP核糖基化的Ras慢。对ExoS体外转录/翻译的Ras的ADP核糖基化分析确定了两种电泳迁移形式的Ras,这与Ras在两个不同精氨酸残基上的ADP核糖基化一致。对具有单个精氨酸到丙氨酸替代的ADP核糖基化体外转录/翻译的Ras突变体的分析表明,Arg-41是ADP核糖基化的首选位点,第二次ADP核糖基化事件的发生速率比Arg-41处的ADP核糖基化慢,但并非发生在特定的精氨酸残基上。对细菌表达的野生型RasDeltaCAAX和RasDeltaCAAXR41K的分析支持了Arg-41是ADP核糖基化首选位点的结论。Arg-41位于Ras的开关1区域附近,该区域参与效应器相互作用。将ExoS引入真核细胞会抑制Ras介导的真核信号转导,因为用产ExoS的铜绿假单胞菌菌株感染PC-12细胞会抑制神经生长因子刺激的神经突形成。这是首次证明ExoS破坏了Ras介导的信号转导途径。

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