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糖酵解醛缩酶活性位点的疏水口袋介导了与威斯科特-奥尔德里奇综合征蛋白的相互作用。

A hydrophobic pocket in the active site of glycolytic aldolase mediates interactions with Wiskott-Aldrich syndrome protein.

作者信息

St-Jean Miguel, Izard Tina, Sygusch Jurgen

机构信息

Department of Biochemistry, University of Montreal, Montreal, Quebec, Canada.

出版信息

J Biol Chem. 2007 May 11;282(19):14309-15. doi: 10.1074/jbc.M611505200. Epub 2007 Feb 27.

Abstract

Aldolase plays essential catalytic roles in glycolysis and gluconeogenesis. However, aldolase is a highly abundant protein that is remarkably promiscuous in its interactions with other cellular proteins. In particular, aldolase binds to highly acidic amino acid sequences, including the C terminus of the Wiskott-Aldrich syndrome protein, an actin nucleation-promoting factor. Here we report the crystal structure of tetrameric rabbit muscle aldolase in complex with a C-terminal peptide of Wiskott-Aldrich syndrome protein. Aldolase recognizes a short, four-residue DEWD motif (residues 498-501), which adopts a loose hairpin turn that folds around the central aromatic residue, enabling its tryptophan side chain to fit into a hydrophobic pocket in the active site of aldolase. The flanking acidic residues in this binding motif provide further interactions with conserved aldolase active site residues Arg-42 and Arg-303, aligning their side chains and forming the sides of the hydrophobic pocket. The binding of Wiskott-Aldrich syndrome protein to aldolase precludes intramolecular interactions of its C terminus with its active site and is competitive with substrate as well as with binding by actin and cortactin. Finally, based on this structure, a novel naphthol phosphate-based inhibitor of aldolase was identified, and its structure in complex with aldolase demonstrated mimicry of the Wiskott-Aldrich syndrome protein-aldolase interaction. The data support a model whereby aldolase exists in distinct forms that regulate glycolysis or actin dynamics.

摘要

醛缩酶在糖酵解和糖异生过程中发挥着至关重要的催化作用。然而,醛缩酶是一种高度丰富的蛋白质,它在与其他细胞蛋白质的相互作用中表现出显著的混杂性。特别是,醛缩酶能与高度酸性的氨基酸序列结合,包括维斯科特-奥尔德里奇综合征蛋白(一种肌动蛋白成核促进因子)的C末端。在此,我们报道了四聚体兔肌肉醛缩酶与维斯科特-奥尔德里奇综合征蛋白C末端肽复合物的晶体结构。醛缩酶识别一个短的四残基DEWD基序(第498 - 501位残基),该基序形成一个松散的发夹结构,围绕中心芳香族残基折叠,使其色氨酸侧链能够嵌入醛缩酶活性位点的疏水口袋中。该结合基序两侧的酸性残基与醛缩酶活性位点保守残基Arg - 42和Arg - 303进一步相互作用,使它们的侧链排列整齐并形成疏水口袋的两侧。维斯科特-奥尔德里奇综合征蛋白与醛缩酶的结合阻止了其C末端与活性位点的分子内相互作用,并且与底物以及肌动蛋白和皮质肌动蛋白的结合存在竞争。最后,基于此结构,鉴定出一种新型的基于萘酚磷酸的醛缩酶抑制剂,其与醛缩酶复合物的结构显示出对维斯科特-奥尔德里奇综合征蛋白 - 醛缩酶相互作用的模拟。这些数据支持了一种模型,即醛缩酶以不同形式存在,调节糖酵解或肌动蛋白动力学。

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