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带有可切割连接物的膜蛋白通道,用于在纳米隔室内诱导催化反应。

Membrane protein channels equipped with a cleavable linker for inducing catalysis inside nanocompartments.

机构信息

Department of Chemistry, University of Basel, BPR1096, Mattenstrasse 24a, 4058 Basel, Switzerland.

NCCR-Molecular Systems Engineering, BPR1095, Mattenstrasse 24a, 4058 Basel, Switzerland.

出版信息

J Mater Chem B. 2021 Nov 10;9(43):9012-9022. doi: 10.1039/d1tb01463c.

Abstract

Precisely timed initiation of reactions and stability of the catalysts are fundamental in catalysis. We introduce here an efficient closing-opening method for nanocompartments that contain sensitive catalysts and so achieve a controlled and extended catalytic activity. We developed a chemistry-oriented approach for modifying a pore-forming membrane protein which allows for a stimuli-responsive pore opening within the membrane of polymeric nanocompartments. We synthesized a diol-containing linker that selectively binds to the pores, blocking them completely. In the presence of an external stimulus (periodate), the linker is cleaved allowing the diffusion of substrate through the pores to the nanocompartment interior where it sets off the enzymatic reaction. Besides the precise initiation of catalytic activity by opening of the pores, oxidation by periodate guarantees the cleavage of the linker under mild conditions. Accordingly, this kind of responsive nanocompartment lends itself to harboring a large variety of sensitive catalysts such as proteins and enzymes.

摘要

精确控制反应的起始时间和催化剂的稳定性是催化反应的基础。在这里,我们引入了一种有效的纳米隔间封闭-开启方法,其中包含敏感的催化剂,从而实现了可控的、扩展的催化活性。我们开发了一种面向化学的方法来修饰形成孔的膜蛋白,该方法允许在聚合物纳米隔间的膜中进行响应性孔的开启。我们合成了一种含有二醇的连接物,它可以选择性地结合到孔上,从而完全堵塞孔。在外部刺激(高碘酸盐)存在的情况下,连接物被切断,允许底物通过孔扩散到纳米隔间内部,在那里引发酶反应。除了通过打开孔精确启动催化活性外,高碘酸盐的氧化还能保证在温和条件下切断连接物。因此,这种响应性纳米隔间适合容纳各种敏感的催化剂,如蛋白质和酶。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b79c/8580015/4ff1208f0eba/d1tb01463c-f1.jpg

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