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探索嗜冷和嗜温碳酸酐酶中的局部柔韧性/刚性

Exploring local flexibility/rigidity in psychrophilic and mesophilic carbonic anhydrases.

作者信息

Chiuri R, Maiorano G, Rizzello A, del Mercato L L, Cingolani R, Rinaldi R, Maffia M, Pompa P P

机构信息

National Nanotechnology Laboratory of CNR-INFM, IIT Research Unit, Lecce, Italy.

出版信息

Biophys J. 2009 Feb 18;96(4):1586-96. doi: 10.1016/j.bpj.2008.11.017.

Abstract

Molecular flexibility and rigidity are required to determine the function and specificity of protein molecules. Some psychrophilic enzymes demonstrate a higher catalytic efficiency at low temperatures, compared to the efficiency demonstrated by their meso/thermophilic homologous. The emerging picture suggests that such enzymes have an improved flexibility of the structural catalytic components, whereas other protein regions far from functional sites may be even more rigid than those of their mesophilic counterparts. To gain a deeper insight in the analysis of the activity-flexibility/rigidity relationship in protein structure, psychrophilic carbonic anhydrase of the Antarctic teleost Chionodraco hamatus has been compared with carbonic anhydrase II of Bos taurus through fluorescence studies, three-dimensional modeling, and activity analyses. Data demonstrated that the cold-adapted enzyme exhibits an increased catalytic efficiency at low and moderate temperatures and, more interestingly, a local flexibility in the region that controls the correct folding of the catalytic architecture, as well as a rigidity in the hydrophobic core. The opposite result was observed in the mesophilic counterpart. These results suggest a clear relationship between the activity and the presence of flexible and rigid protein substructures that may be useful in rational molecular and drug design of a class of enzymes playing a key role in pathologic processes.

摘要

分子的柔韧性和刚性对于确定蛋白质分子的功能和特异性至关重要。与中温/嗜热同源酶相比,一些嗜冷酶在低温下表现出更高的催化效率。新出现的情况表明,此类酶的结构催化成分具有更高的柔韧性,而远离功能位点的其他蛋白质区域可能比嗜温对应物更加刚性。为了更深入地分析蛋白质结构中活性与柔韧性/刚性的关系,通过荧光研究、三维建模和活性分析,将南极硬骨鱼南极龙的嗜冷碳酸酐酶与牛的碳酸酐酶II进行了比较。数据表明,冷适应酶在低温和中温下表现出更高的催化效率,更有趣的是,在控制催化结构正确折叠的区域具有局部柔韧性,以及在疏水核心具有刚性。在嗜温对应物中观察到相反的结果。这些结果表明活性与蛋白质柔性和刚性亚结构的存在之间存在明确的关系,这可能有助于对在病理过程中起关键作用的一类酶进行合理的分子和药物设计。

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