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在GH101家族的内切α-乙酰半乳糖胺酶中催化亲核体激活网络的鉴定

Identification of a Catalytic Nucleophile-Activating Network in the endoαAcetylgalactosaminidase of Family GH101.

作者信息

Hansen Anders Lønstrup, Koivisto Johanna M, Simonsen Signe, Dong Zehui, Crehuet Ramon, Hansen Dennis K, Willemoës Martin

机构信息

Linderstrøm-Lang Centre, Section for Biomolecular Sciences, Department of Biology, University of Copenhagen, Ole Maaløes Vej 5, DK-2200 Copenhagen, Denmark.

CSIC-Institute for Advanced Chemistry of Catalonia (IQAC), c/ Jordi Girona 18-26, 08034 Barcelona, Spain.

出版信息

Biochemistry. 2021 Nov 16;60(45):3398-3407. doi: 10.1021/acs.biochem.1c00596. Epub 2021 Oct 25.

Abstract

endo-α--acetylgalactosaminidase (GH101), EngBF, is highly specific toward the mucin Core 1 glycan, Galβ1-3GalNAc. Apart from the side chains involved in the retaining mechanism of EngBF, Asp-682 is important for the activity. In the crystal structures of both EngBF and EngSP (from ), we identified a conserved water molecule in proximity to Asp-682 and the homologue residue in EngSP. The water molecule also coordinates the catalytic nucleophile and three other residues conserved in GH101 enzymes; in EngBF, these residues are His-685, His-718, and Asn-720. With casein-glycomacropeptide as the substrate, the importance of Asp-682 was confirmed by the lack of a detectable activity for the D682N enzyme. The enzyme variants, H685A, H718A, H685Q, and H718Q, all displayed only a modestly reduction in of up to 15 fold for the H718A variant. However, the double-substituted variants, H685A/H718A and H685Q/H718Q, had a greatly reduced value by about 200 fold compared to that of wild-type EngBF. With the synthetic substrate, Galβ(1-3)GalNAcα1nitrophenol, of the double-substituted variants was only up to 30-fold reduced and was found to increase with pH. Compared to the pre-steady-state kinetics of wild-type EngBF, a burst of about the size of the enzyme concentration was absent with the double-substituted EngBF variants, indicating that the nucleophilic attack had become at least as slow as the hydrolysis of the enzyme intermediate. Together, the results indicate that not only Asp-682 but also the entire conserved network of His-685, His-718, and what we suggest is a catalytic water molecule is important in the activation of the catalytic nucleophile.

摘要

内切α-N-乙酰半乳糖胺酶(GH101),即EngBF,对粘蛋白核心1聚糖Galβ1-3GalNAc具有高度特异性。除了参与EngBF保留机制的侧链外,Asp-682对其活性也很重要。在EngBF和EngSP(来自)的晶体结构中,我们在靠近Asp-682和EngSP中同源残基的位置发现了一个保守水分子。该水分子还与催化亲核试剂以及GH101酶中保守的其他三个残基配位;在EngBF中,这些残基是His-685、His-718和Asn-720。以酪蛋白糖巨肽为底物,D682N酶缺乏可检测到的活性,证实了Asp-682的重要性。酶变体H685A、H718A、H685Q和H718Q,所有变体的活性仅适度降低,H718A变体的活性最多降低15倍。然而,双取代变体H685A/H718A和H685Q/H718Q的活性值与野生型EngBF相比大幅降低了约200倍。对于合成底物Galβ(1-3)GalNAcα1-硝基苯酚,双取代变体的活性仅降低至30倍,并且发现其随pH值增加。与野生型EngBF的预稳态动力学相比,双取代EngBF变体没有出现约为酶浓度大小的爆发,这表明亲核攻击至少变得与酶中间体的水解一样缓慢。总之,结果表明不仅Asp-682,而且His-685、His-718的整个保守网络以及我们认为的催化水分子在催化亲核试剂的激活中都很重要。

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