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人碳酸酐酶II中工程化His3Cys锌结合位点的结构

Structure of an engineered His3Cys zinc binding site in human carbonic anhydrase II.

作者信息

Ippolito J A, Christianson D W

机构信息

Department of Chemistry, University of Pennsylvania, Philadelphia 19104-6323.

出版信息

Biochemistry. 1993 Sep 28;32(38):9901-5. doi: 10.1021/bi00089a005.

Abstract

X-ray crystallographic analysis of the Thr-199-->Cys (T199C) variant of human carbonic anhydrase II reveals the first high-resolution structure of an engineered zinc coordination polyhedron in a metalloenzyme. In the wild-type enzyme, Thr-199 accepts a hydrogen bond from zinc-bound hydroxide; in the variant, the polypeptide backbone is sufficiently plastic to permit Cys-199 to displace hydroxide ion and coordinate to zinc with nearly perfect coordination stereochemistry. Importantly, the resulting His3-Cys-Zn2+ motif binds zinc more tightly than the wild-type enzyme [Kiefer, L. L., Krebs, J. F., Paterno, S. A., & Fierke C. A. (1993) Biochemistry (preceding paper in this issue)]. This novel zinc coordination polyhedron is analogous to that postulated for matrix metalloproteinase zymogens such as prostromelysin, where a cysteine-zinc interaction is responsible for the inactivity of the zymogen. Intriguingly, Cys-199 of T199C CAII is displaced from zinc coordination by soaking crystals in high concentrations of acetazolamide. Hence, residual catalytic activity measured for this variant probably arises from an alternate conformer of Cys-199 which allows the catalytic nucleophile, hydroxide ion, to be activated by zinc coordination.

摘要

人碳酸酐酶II的苏氨酸-199突变为半胱氨酸(T199C)变体的X射线晶体学分析揭示了金属酶中工程化锌配位多面体的首个高分辨率结构。在野生型酶中,苏氨酸-199接受来自锌结合氢氧化物的氢键;在变体中,多肽主链具有足够的可塑性,使得半胱氨酸-199能够取代氢氧根离子,并以近乎完美的配位立体化学与锌配位。重要的是,由此产生的His3-Cys-Zn2+基序比野生型酶更紧密地结合锌[Kiefer, L. L., Krebs, J. F., Paterno, S. A., & Fierke C. A.(1993年)《生物化学》(本期之前的论文)]。这种新型的锌配位多面体类似于基质金属蛋白酶酶原(如前基质溶解素)中假定的结构,其中半胱氨酸-锌相互作用导致酶原无活性。有趣的是,通过将晶体浸泡在高浓度的乙酰唑胺中,T199C CAII的半胱氨酸-199从锌配位中被取代。因此,该变体测得的残余催化活性可能源于半胱氨酸-199的另一种构象,该构象允许催化亲核试剂氢氧根离子通过锌配位被激活。

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