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确定介导与14-3-3相互作用的外切酶S残基及其生物学活性。

Delineation of exoenzyme S residues that mediate the interaction with 14-3-3 and its biological activity.

作者信息

Yasmin Lubna, Jansson Anna L, Panahandeh Tooba, Palmer Ruth H, Francis Matthew S, Hallberg Bengt

机构信息

Department of Medical Biosciences/Pathology, Umeå University, Sweden.

出版信息

FEBS J. 2006 Feb;273(3):638-46. doi: 10.1111/j.1742-4658.2005.05100.x.

Abstract

14-3-3 proteins belong to a family of conserved molecules expressed in all eukaryotic cells, which play an important role in a multitude of signaling pathways. 14-3-3 proteins bind to phosphoserine/phosphothreonine motifs in a sequence-specific manner. More than 200 14-3-3 binding partners have been found that are involved in cell cycle regulation, apoptosis, stress responses, cell metabolism and malignant transformation. A phosphorylation-independent interaction has been reported to occur between 14-3-3 and a C-terminal domain within exoenzyme S (ExoS), a bacterial ADP-ribosyltransferase toxin from Pseudomonas aeruginosa. In this study, we have investigated the effect of amino acid mutations in this C-terminal domain of ExoS on ADP-ribosyltransferase activity and the 14-3-3 interaction. Our results suggest that leucine-428 of ExoS is the most critical residue for ExoS enzymatic activity, as cytotoxicity analysis reveals that substitution of this leucine significantly weakens the ability of ExoS to mediate cell death. Leucine-428 is also required for the ability of ExoS to modify the eukaryotic endogenous target Ras. Finally, single amino acid substitutions of positions 426-428 reduce the interaction potential of 14-3-3 with ExoS in vitro.

摘要

14-3-3蛋白属于一类在所有真核细胞中都有表达的保守分子家族,它们在众多信号通路中发挥着重要作用。14-3-3蛋白以序列特异性方式与磷酸丝氨酸/磷酸苏氨酸基序结合。现已发现200多种与14-3-3结合的蛋白伴侣,它们参与细胞周期调控、细胞凋亡、应激反应、细胞代谢和恶性转化。据报道,14-3-3与外毒素S(ExoS)(一种来自铜绿假单胞菌的细菌ADP核糖基转移酶毒素)的C末端结构域之间存在不依赖磷酸化的相互作用。在本研究中,我们研究了ExoS这个C末端结构域中的氨基酸突变对ADP核糖基转移酶活性和与14-3-3相互作用的影响。我们的结果表明,ExoS的亮氨酸-428是ExoS酶活性最关键的残基,因为细胞毒性分析显示,该亮氨酸的取代显著削弱了ExoS介导细胞死亡的能力。亮氨酸-428也是ExoS修饰真核内源性靶标Ras所必需的。最后,426-428位的单氨基酸取代降低了14-3-3与ExoS在体外的相互作用潜力。

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