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IV 类腺苷酸环化酶的活性部位结构和跨生物种机制。

Active-site structure of class IV adenylyl cyclase and transphyletic mechanism.

机构信息

Biochemical Science Division, Chemical Science and Technology Laboratory, National Institute of Standards and Technology, Gaithersburg, MD 20899, USA.

出版信息

J Mol Biol. 2011 Jan 21;405(3):787-803. doi: 10.1016/j.jmb.2010.11.026. Epub 2010 Nov 20.

Abstract

Adenylyl cyclases (ACs) belonging to three nonhomologous classes (II, III, and IV) have been structurally characterized, enabling a comparison of the mechanisms of cyclic adenosine 3',5'-monophosphate biosynthesis. We report the crystal structures of three active-site complexes for Yersinia pestis class IV AC (AC-IV)-two with substrate analogs and one with product. Mn(2+) binds to all three phosphates, and to Glu12 and Glu136. Electropositive residues Lys14, Arg63, Lys76, Lys111, and Arg113 also form hydrogen bonds to phosphates. The conformation of the analogs is suitable for in-line nucleophilic attack by the ribose O3' on α-phosphate (distance ∼4 Å). In the product complex, a second Mn ion is observed to be coordinated to both ribose 2' oxygen and ribose 3' oxygen. Observation of both metal sites, together with kinetic measurements, provides strong support for a two-cation mechanism. Eleven active-site mutants were also made and kinetically characterized. These findings and comparisons with class II and class III enzymes enable a detailed transphyletic analysis of the AC mechanism. Consistent with its lack of coordination to purine, Y. pestis AC-IV cyclizes both ATP and GTP. As in other classes of AC, the ribose is loosely bound, and as in class III, no base appears to ionize the O3' nucleophile. Different syn/anti conformations suggest that the mechanism involves a conformational transition, and further evidence suggests a role for ribosyl pseudorotation. With resolutions of 1.6-1.7 Å, these are the most detailed active-site ligand complexes for any class of this ubiquitous signaling enzyme.

摘要

腺苷酸环化酶(ACs)属于三个非同源类(II、III 和 IV),其结构已被表征,这使得比较环腺苷酸 3',5'-单磷酸生物合成的机制成为可能。我们报告了三种黄热病菌 IV 类 AC(AC-IV)活性位点复合物的晶体结构 - 两种带有底物类似物,一种带有产物。Mn(2+)结合到所有三个磷酸基团,以及 Glu12 和 Glu136。正电荷残基 Lys14、Arg63、Lys76、Lys111 和 Arg113 也与磷酸基团形成氢键。类似物的构象适合于核糖 O3'对α-磷酸的直线亲核攻击(距离约为 4Å)。在产物复合物中,观察到第二个 Mn 离子与核糖 2'氧和核糖 3'氧配位。观察到两个金属位点,以及动力学测量,为双阳离子机制提供了强有力的支持。还构建了 11 种活性位点突变体并进行了动力学表征。这些发现以及与 II 类和 III 类酶的比较,使 AC 机制的跨种系分析成为可能。与缺乏嘌呤配位一致,鼠疫耶尔森氏菌 AC-IV 环化 ATP 和 GTP。与其他 AC 类一样,核糖结合松散,与 III 类一样,似乎没有碱基使 O3'亲核试剂离子化。不同的 syn/anti 构象表明该机制涉及构象转变,进一步的证据表明核糖假旋转的作用。分辨率为 1.6-1.7Å,这是最详细的活性位点配体复合物,适用于该普遍存在的信号酶的任何一类。

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