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Large cosolutes small cosolutes and dihydrofolate reductase activity

机译:大溶质小溶质和二氢叶酸还原酶活性

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摘要

Protein enzymes are the main catalysts in the crowded and complex cellular interior, but their activity is almost always studied in dilute buffered solutions. Studies that attempt to recreate the cellular interior in vitro often utilize synthetic polymers as crowding agents. Here, we report the effects of the synthetic polymer cosolutes Ficoll, dextran, and polyvinylpyrrolidone, and their respective monomers, sucrose, glucose, and 1‐ethyl‐2‐pyrrolidone, on the activity of the 18‐kDa monomeric enzyme, Escherichia coli dihydrofolate reductase. At low concentrations, reductase activity increases relative to buffer and monomers, suggesting a macromolecular effect. However, the effect decreases at higher concentrations, approaching, and, in some cases, falling below buffer values. We also assessed activity in terms of volume occupancy, viscosity, and the overlap concentration (where polymers form an interwoven mesh). The trends vary with polymer family, but changes in activity are within threefold of buffer values. We also compiled and analyzed results from previous studies and conclude that alterations of steady‐state enzyme kinetics in solutions crowded with synthetic polymers are idiosyncratic with respect to the crowding agent and enzyme.
机译:蛋白质酶是拥挤而复杂的细胞内部的主要催化剂,但几乎总是在稀缓冲液中研究其活性。试图在体外重建细胞内部的研究通常利用合成聚合物作为拥挤剂。在这里,我们报告了合成聚合物固溶体Ficoll,右旋糖酐和聚乙烯吡咯烷酮及其各自的单体蔗糖,葡萄糖和1-乙基-2-吡咯烷酮对18kDa单体酶二氢叶酸大叶酸大肠杆菌活性的影响还原酶。在低浓度下,还原酶活性相对于缓冲液和单体增加,表明具有大分子作用。但是,在较高浓度下(接近并在某些情况下低于缓冲值),效果会降低。我们还根据体积占用率,粘度和重叠浓度(其中聚合物形成交织的网孔)评估了活性。趋势随聚合物系列的不同而变化,但活性的变化在缓冲液值的三倍之内。我们还汇编和分析了先前研究的结果,并得出结论,在拥挤有合成聚合物的溶液中稳态酶动力学的变化与拥挤剂和酶有关。

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