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烯醇酶的抑制作用:分辨率为2.2埃的烯醇酶 - Ca2(+) - 2 - 磷酸甘油酸和烯醇酶 - Zn2(+) - 磷酸乙醇酸复合物的晶体结构。

Inhibition of enolase: the crystal structures of enolase-Ca2(+)- 2-phosphoglycerate and enolase-Zn2(+)-phosphoglycolate complexes at 2.2-A resolution.

作者信息

Lebioda L, Stec B, Brewer J M, Tykarska E

机构信息

Department of Chemistry, University of South Carolina, Columbia 29208.

出版信息

Biochemistry. 1991 Mar 19;30(11):2823-7. doi: 10.1021/bi00225a013.

Abstract

Enolase is a metalloenzyme which catalyzes the elimination of H2O from 2-phosphoglyceric acid (PGA) to form phosphoenolpyruvate (PEP). Mg2+ and Zn2+ are cofactors which strongly bind and activate the enzyme. Ca2+ also binds strongly but does not produce activity. Phosphoglycolate (PG) is a competitive inhibitor of enolase. The structures of two inhibitory ternary complexes: yeast enolase-Ca2(+)-PGA and yeast enolase-Zn2(+)-PG, were determined by X-ray diffraction to 2.2-A resolution and were refined by crystallographic least-squares to R = 14.8% and 15.7%, respectively, with good geometries of the models. These structures are compared with the structure of the precatalytic ternary complex enolase-Mg2(+)-PGA/PEP (Lebioda & Stec, 1991). In the complex enolase-Ca2(+)-PGA, the PGA molecule coordinates to the Ca2+ ion with the hydroxyl group, as in the precatalytic complex. The conformation of the PGA molecule is however different. In the active complex, the organic part of the PGA molecule is planar, similar to the product. In the inhibitory complex, the carboxylic group is in an orthonormal conformation. In the inhibitory complex enolase-Zn2(+)-PG, the PG molecule coordinates with the carboxylic group in a monodentate mode. In both inhibitory complexes, the conformational changes in flexible loops, which were observed in the precatalytic complex, do not take place. The lack of catalytic metal ion binding suggests that these conformational changes are necessary for the formation of the catalytic metal ion binding site.

摘要

烯醇化酶是一种金属酶,它催化2-磷酸甘油酸(PGA)脱去H2O形成磷酸烯醇式丙酮酸(PEP)。Mg2+和Zn2+是能紧密结合并激活该酶的辅因子。Ca2+也能紧密结合,但不产生活性。磷酸乙醇酸(PG)是烯醇化酶的竞争性抑制剂。通过X射线衍射测定了两种抑制性三元复合物的结构:酵母烯醇化酶-Ca2(+)-PGA和酵母烯醇化酶-Zn2(+)-PG,分辨率达到2.2 Å,并通过晶体学最小二乘法进行精修,R值分别为14.8%和15.7%,模型具有良好的几何结构。将这些结构与预催化三元复合物烯醇化酶-Mg2(+)-PGA/PEP的结构(Lebioda & Stec,1991)进行了比较。在烯醇化酶-Ca2(+)-PGA复合物中,PGA分子与Ca2+离子通过羟基配位,与预催化复合物中的情况相同。然而,PGA分子的构象不同。在活性复合物中,PGA分子的有机部分是平面的,类似于产物。在抑制性复合物中,羧基处于正交构象。在抑制性复合物烯醇化酶-Zn2(+)-PG中,PG分子以单齿模式与羧基配位。在两种抑制性复合物中,在预催化复合物中观察到的柔性环的构象变化并未发生。缺乏催化金属离子结合表明这些构象变化对于催化金属离子结合位点的形成是必要的。

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