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α-岩藻糖苷酶与神经节苷脂的相互作用。普通章鱼肝胰腺中α-L-岩藻糖苷酶对含岩藻糖神经节苷脂(Fuc-GM1)的作用。

Alpha-fucosidase-ganglioside interactions. Action of alpha-L-fucosidase from the hepatopancreas of Octopus vulgaris on a fucose-containing ganglioside (Fuc-GM1).

作者信息

Masserini M, Giuliani A, Venerando B, Fiorilli A, D'Aniello A, Tettamanti G

出版信息

Biochem J. 1985 Aug 1;229(3):595-603. doi: 10.1042/bj2290595.

Abstract

alpha-L-Fucosidase, prepared in highly purified form (Mr 70 000-74 000) from Octopus hepatopancreas, was able to hydrolyse a fucose-containing ganglioside, namely Fuc-GM1 (II3NeuAc,IV2Fuc-GgOse4-Cer). The enzyme showed an irregular kinetic behaviour (v/[S] and v/[E] relationships following sigmoidal curves) when working on micellar Fuc-GM1 (Mr of the micelle 500 000), but obeyed regular hyperbolic kinetics when acting on low-Mr substances. It was observed that, on incubation with micellar Fuc-GM1 under the conditions used for the enzyme assay, Octopus alpha-L-fucosidase produced a ganglioside-enzyme complex that was catalytically inactive. This complex had an Mr exceeding 500 000 and a ganglioside/protein ratio of 4:1 (w/w), which is consistent with a stoichiometric combination of one ganglioside micelle with two enzyme molecules. Inactivation of alpha-L-fucosidase by formation of the corresponding complexes was also obtained with micellar gangliosides GM1 (II3NeuAc-GgOse4-Cer), GD1a (II3NeuAc,IV3NeuAc-GgOse4-Cer) and GT1b [II3(NeuAc)2,IV3-NeuAc-GgOse4-Cer], which are not substrates for the enzyme, indicating that the ganglioside micelles per se act as enzyme inhibitors. However, alpha-L-fucosidase easily forms a Fuc-GM1-alpha-L-fucosidase complex, displaying regular Michaelis-Menten kinetics. Therefore the anomalous behaviour exhibited by alpha-L-fucosidase on micellar Fuc-GM1 is likely due to formation of the complex, which separates the fucosyl linkage from the active site of the complexed enzyme, but makes it available to the enzyme in the free form.

摘要

从章鱼肝胰腺中制备的高纯度α-L-岩藻糖苷酶(分子量70000 - 74000)能够水解一种含岩藻糖的神经节苷脂,即Fuc-GM1(II3NeuAc,IV2Fuc-GgOse4-Cer)。该酶作用于胶束状Fuc-GM1(胶束分子量500000)时表现出不规则的动力学行为(v/[S]和v/[E]关系呈S形曲线),但作用于低分子量物质时遵循常规的双曲线动力学。据观察,在用于酶活性测定的条件下,将章鱼α-L-岩藻糖苷酶与胶束状Fuc-GM1一起孵育时,会产生一种无催化活性的神经节苷脂 - 酶复合物。该复合物的分子量超过500000,神经节苷脂/蛋白质比率为4:1(w/w),这与一个神经节苷脂胶束与两个酶分子的化学计量组合一致。用胶束状神经节苷脂GM1(II3NeuAc-GgOse4-Cer)、GD1a(II3NeuAc,IV3NeuAc-GgOse4-Cer)和GT1b [II3(NeuAc)2,IV3-NeuAc-GgOse4-Cer](它们不是该酶的底物)形成相应复合物也可使α-L-岩藻糖苷酶失活,这表明神经节苷脂胶束本身可作为酶抑制剂。然而,α-L-岩藻糖苷酶很容易形成Fuc-GM1-α-L-岩藻糖苷酶复合物,并表现出常规的米氏动力学。因此,α-L-岩藻糖苷酶在胶束状Fuc-GM1上表现出的异常行为可能是由于复合物的形成,该复合物将岩藻糖基连接从复合酶的活性位点分离,但使它以游离形式可供酶利用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/13d0/1145101/61540fb30207/biochemj00298-0046-a.jpg

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