首页> 美国卫生研究院文献>Acta Crystallographica Section F: Structural Biology and Crystallization Communications >A sucrose-binding site provides a lead towards an isoform-specific inhibitor of the cancer-associated enzyme carbonic anhydrase IX
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A sucrose-binding site provides a lead towards an isoform-specific inhibitor of the cancer-associated enzyme carbonic anhydrase IX

机译:蔗糖结合位点可导致癌症相关酶碳酸酐酶IX的同工型特异性抑制剂

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摘要

Human carbonic anhydrase (CA; EC 4.2.1.1) isoform IX (CA IX) is an extracellular zinc metalloenzyme that catalyzes the reversible hydration of CO2 to HCO3 , thereby playing a role in pH regulation. The majority of normal functioning cells exhibit low-level expression of CA IX. However, in cancer cells CA IX is upregulated as a consequence of a metabolic transition known as the Warburg effect. The upregulation of CA IX for cancer progression has drawn interest in it being a potential therapeutic target. CA IX is a transmembrane protein, and its purification, yield and crystallization have proven challenging to structure-based drug design, whereas the closely related cytosolic soluble isoform CA II can be expressed and crystallized with ease. Therefore, we have utilized structural alignments and site-directed mutagenesis to engineer a CA II that mimics the active site of CA IX. In this paper, the X-ray crystal structure of this CA IX mimic in complex with sucrose is presented and has been refined to a resolution of 1.5 Å, an R cryst of 18.0% and an R free of 21.2%. The binding of sucrose at the entrance to the active site of the CA IX mimic, and not CA II, in a non-inhibitory mechanism provides a novel carbohydrate moiety binding site that could be further exploited to design isoform-specific inhibitors of CA IX.
机译:人碳酸酐酶(CA; EC 4.2.1.1)IX(CA IX)是一种细胞外锌金属酶,它催化CO2可逆水合为HCO3 -,从而在pH调节中起作用。大多数正常功能细胞表现出CA IX的低水平表达。但是,在癌细胞中,由于称为Warburg效应的新陈代谢转变,CA IX被上调。 CA IX对癌症进展的上调引起了人们对其潜在治疗靶点的兴趣。 CA IX是跨膜蛋白,其纯化,产率和结晶已证明对基于结构的药物设计具有挑战性,而紧密相关的胞浆可溶性同工型CA II可以轻松表达和结晶。因此,我们已经利用结构比对和定点诱变来设计模仿CA IX活性位点的CA II。本文介绍了该CA IX模拟物与蔗糖的复合物的X射线晶体结构,并已精制至1.5Å的分辨率,R cryst为18.0%和R free为21.2%。在非抑制机制中,蔗糖在CA IX模拟物的活性位点而不是CA II的入口处的结合提供了一种新的碳水化合物部分结合位点,可进一步用于设计CA IX的同工型特异性抑制剂。

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