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通过在蛋白质模板上的动态片段组装对预底物进行催化激活。

Catalytic activation of pre-substrates via dynamic fragment assembly on protein templates.

机构信息

Institute of Pharmacy, Medicinal Chemistry, University of Leipzig, Brüderstraße 34, 04103 Leipzig, Germany.

1] Institute of Pharmacy, Medicinal Chemistry, University of Leipzig, Brüderstraße 34, 04103 Leipzig, Germany [2] Institute of Pharmacy, Medicinal Chemistry, Freie Universität Berlin, Königin-Luise-Straße 2+4, 14195 Berlin, Germany.

出版信息

Nat Commun. 2014 Nov 18;5:5170. doi: 10.1038/ncomms6170.

Abstract

Sensitive detection of small molecule fragments binding to defined sites of biomacromolecules is still a considerable challenge. Here we demonstrate that protein-binding fragments are able to induce enzymatic reactions on the protein surface via dynamic fragment ligation. Fragments binding to the S1 pocket of serine proteases containing a nitrogen, oxygen or sulphur nucleophile are found to activate electrophilic pre-substrates through a reversible, covalent ligation reaction. The dynamic ligation reaction positions the pre-substrate molecule at the active site of the protein thereby inducing its enzymatic cleavage. Catalytic activation of pre-substrates is confirmed by fluorescence spectroscopy and by high-performance liquid chromatography. The approach is investigated with 3 pre-substrates and 14 protein-binding fragments and the specific activation and the templating effect exerted by the enzyme is quantified for each protease-fragment-pre-substrate combination. The described approach enables the site-specific identification of protein-binding fragments, the functional characterization of enzymatic sites and the quantitative analysis of protein template-assisted ligation reactions.

摘要

对生物大分子特定部位结合的小分子片段进行灵敏检测仍然是一个巨大的挑战。在这里,我们证明了通过动态片段连接,结合到包含氮、氧或硫亲核基团的丝氨酸蛋白酶 S1 口袋的蛋白质结合片段能够在蛋白质表面诱导酶促反应。研究发现,结合到含有氮、氧或硫亲核基团的丝氨酸蛋白酶 S1 口袋的片段能够通过可逆的共价连接反应激活亲电的预底物分子。动态连接反应将预底物分子定位在蛋白质的活性部位,从而诱导其酶切。荧光光谱法和高效液相色谱法证实了前底物的催化激活。该方法用 3 个前底物和 14 个蛋白结合片段进行了研究,并对每种蛋白酶-片段-前底物组合的特异性激活和酶施加的模板效应进行了定量分析。所描述的方法能够实现蛋白质结合片段的特异性鉴定、酶活性部位的功能表征以及蛋白质模板辅助连接反应的定量分析。

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