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Crystallography and Its Impact on Carbonic Anhydrase Research

机译:晶体学及其对碳酸酐酶研究的影响

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摘要

X-ray and neutron crystallography are powerful techniques utilized to study the structures of biomolecules. Visualization of enzymes in complex with substrate/product and the capture of intermediate states can be related to activity to facilitate understanding of the catalytic mechanism. Subsequent analysis of small molecule binding within the enzyme active site provides insight into mechanisms of inhibition, supporting the design of novel inhibitors using a structure-guided approach. The first X-ray crystal structures were determined for small, ubiquitous enzymes such as carbonic anhydrase (CA). CAs are a family of zinc metalloenzymes that catalyze the hydration of CO_2, producing HCO_3~- and a proton. The CA structure and ping-pong mechanism have been extensively studied and are well understood. Though the function of CA plays an important role in a variety of physiological functions, CA has also been associated with diseases such as glaucoma, edema, epilepsy, obesity, and cancer and is therefore recognized as a drug target. In this review, a brief history of crystallography and its impact on CA research is discussed.
机译:X射线和中子晶体术是利用生物分子结构的强大技术。与底物/产品复合物中酶的可视化和中间状态的捕获可能与活性有关,以便于理解催化机制。随后分析酶活性位点内的小分子结合提供了洞察抑制机制,使用结构引导方法支持新型抑制剂的设计。第一种X射线晶体结构用于小,普遍的酶,例如碳酸酐酶(CA)。 CA是一种锌金属脲系列,催化CO_2的水合,生产HCO_3〜 - 和质子。广泛研究了CA结构和平板机制并得到了很好的理解。虽然CA的功能在各种生理功能中起重要作用,但CA也与诸如青光眼,水肿,癫痫,肥胖症和癌症等疾病相关,因此被认为是药物目标。在本次审查中,讨论了晶体学的简要历史及其对CA研究的影响。

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