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角质酶,一种具有预先形成的氧阴离子洞的脂解酶。

Cutinase, a lipolytic enzyme with a preformed oxyanion hole.

作者信息

Martinez C, Nicolas A, van Tilbeurgh H, Egloff M P, Cudrey C, Verger R, Cambillau C

机构信息

Laboratoire de Cristallisation et Cristallographie des Macromolécules Biologiques, URA 1296-CNRS, Faculté de Médecine Nord, Marseille, France.

出版信息

Biochemistry. 1994 Jan 11;33(1):83-9. doi: 10.1021/bi00167a011.

Abstract

Cutinases, a group of cutin degrading enzymes with molecular masses of around 22-25 kDa (Kolattukudy, 1984), are also able to efficiently hydrolyse triglycerides (De Geus et al., 1989; Lauwereys et al., 1991), but without exhibiting the interfacial activation phenomenom (Sarda et al., 1958). They belong to a class of proteins with a common structural framework, called the alpha/beta hydrolase fold (Martinez et al., 1992; Ollis et al., 1992). We describe herein the structure of cutinase covalently inhibited by diethyl-p-nitrophenyl phosphate (E600) and refined at 1.9-A resolution. Contrary to what has previously been reported with lipases (Brzozowski et al., 1991; Derewenda et al., 1992; Van Tilbeurgh et al., 1993), no significant structural rearrangement was observed here in cutinase upon the inhibitor binding. Moreover, the structure of the active site machinery, consisting of a catalytic triad (S120, H188, D175) and an oxyanion hole (Q121 and S42), was found to be identical to that of the native enzyme, whereas the oxyanion hole of Rhizomucor lipase (Brzozowski et al., 1991; Derewenda et al., 1992), like that of pancreatic lipase (van Tilbeurgh et al., 1993), is formed only upon enzyme-ligand complex formation. The fact that cutinase does not display interfacial activation cannot therefore only be due to the absence of a lid but might also be attributable to the presence of a preformed oxyanion hole.

摘要

角质酶是一组分子量约为22 - 25 kDa的角质降解酶(科拉图库迪,1984年),它们也能够高效水解甘油三酯(德格斯等人,1989年;劳韦雷斯等人,1991年),但不会表现出界面激活现象(萨尔达等人,1958年)。它们属于一类具有共同结构框架的蛋白质,称为α/β水解酶折叠(马丁内斯等人,1992年;奥利等人,1992年)。我们在此描述了被对硝基苯磷酸二乙酯(E600)共价抑制并在1.9埃分辨率下精修的角质酶的结构。与之前关于脂肪酶的报道(布佐夫斯基等人,1991年;德雷文达等人,1992年;范蒂尔伯格等人,1993年)相反,在此观察到角质酶在抑制剂结合后没有明显的结构重排。此外,发现由催化三联体(S120、H188、D175)和氧阴离子洞(Q121和S42)组成的活性位点机制与天然酶的相同,而根霉脂肪酶(布佐夫斯基等人,1991年;德雷文达等人,1992年)的氧阴离子洞,与胰脂肪酶(范蒂尔伯格等人,1993年)的一样,仅在酶 - 配体复合物形成时才形成。因此,角质酶不显示界面激活这一事实不能仅归因于没有盖子,还可能归因于预先形成的氧阴离子洞的存在。

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