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内切唾液酸酶:用于多唾液酸研究的多功能工具。

Endosialidases: Versatile Tools for the Study of Polysialic Acid.

作者信息

Jakobsson Elina, Schwarzer David, Jokilammi Anne, Finne Jukka

机构信息

Department of Medical Biochemistry and Genetics, University of Turku, Kiinamyllynkatu 10, 20520, Turku, Finland.

出版信息

Top Curr Chem. 2015;367:29-73. doi: 10.1007/128_2012_349.

Abstract

Polysialic acid is an α2,8-linked N-acetylneuraminic acid polymer found on the surface of both bacterial and eukaryotic cells. Endosialidases are bacteriophage-borne glycosyl hydrolases that specifically cleave polysialic acid. The crystal structure of an endosialidase reveals a trimeric mushroom-shaped molecule which, in addition to the active site, harbors two additional polysialic acid binding sites. Folding of the protein crucially depends on an intramolecular C-terminal chaperone domain that is proteolytically released in an intramolecular reaction. Based on structural data and previous considerations, an updated catalytic mechanism is discussed. Endosialidases degrade polysialic acid in a processive mode of action, and a model for its mechanism is suggested. The review summarizes the structural and biochemical elucidations of the last decade and the importance of endosialidases in biochemical and medical applications. Active endosialidases are important tools in studies on the biological roles of polysialic acid, such as the pathogenesis of septicemia and meningitis by polysialic acid-encapsulated bacteria, or its role as a modulator of the adhesion and interactions of neural and other cells. Endosialidase mutants that have lost their polysialic acid cleaving activity while retaining their polysialic acid binding capability have been fused to green fluorescent protein to provide an efficient tool for the specific detection of polysialic acid.

摘要

多聚唾液酸是一种α2,8-连接的N-乙酰神经氨酸聚合物,存在于细菌和真核细胞表面。内切唾液酸酶是噬菌体携带的糖基水解酶,可特异性切割多聚唾液酸。一种内切唾液酸酶的晶体结构显示为三聚体蘑菇状分子,除活性位点外,还含有另外两个多聚唾液酸结合位点。蛋白质的折叠关键取决于分子内C端伴侣结构域,该结构域在分子内反应中被蛋白水解释放。基于结构数据和先前的考虑,讨论了一种更新的催化机制。内切唾液酸酶以连续作用模式降解多聚唾液酸,并提出了其作用机制模型。该综述总结了过去十年的结构和生化研究成果以及内切唾液酸酶在生化和医学应用中的重要性。活性内切唾液酸酶是研究多聚唾液酸生物学作用的重要工具,例如多聚唾液酸包被细菌引起败血症和脑膜炎的发病机制,或其作为神经细胞和其他细胞黏附及相互作用调节剂的作用。已将失去多聚唾液酸切割活性但保留多聚唾液酸结合能力的内切唾液酸酶突变体与绿色荧光蛋白融合,以提供一种特异性检测多聚唾液酸的有效工具。

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