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Structure and Catalytic Properties of an Engineered Heterodimer of Enolase Composed of One Active and One Inactive Subunit

机译:一种由一种活性和一种非活性亚基组成的烯醇化酶工程异二聚体的结构和催化性能

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摘要

Enolase is a dimeric enzyme that catalyzes the interconversion of 2-phospho-D-glycerate and phosphoenolpyruvate. This reversible dehydration is effected by general acid-base catalysis that involves, principally, Lys345 and Glu211 (numbering system of enolase 1 from yeast). The crystal structure of the inactive E211Q enolase shows that the protein is properly folded. However, K345 variants have, thus far, failed to crystallize. This problem was solved by crystallization of an engineered heterodimer of enolase. The heterodimer was composed of an inactive subunit that has a K345A mutation and an active subunit that has N80D and N126D surface mutations to facilitate ion-exchange chromatographic separation of the three dimeric species. The structure of this heterodimeric variant, in complex with substrate/product, was obtained at 1.85 Å resolution. The structure was compared to a new structure of wild-type enolase obtained from crystals belonging to the same space group. Asymmetric dimers having one subunit exhibiting two of the three active site loops in an open conformation and the other in a conformation having all three loops closed appear in both structures. The K345A subunit of the heterodimer is in the loop-closed conformation; its Cα carbon atoms closely match those of the corresponding subunit of wild-type enolase (root-mean-squared deviation of 0.23 Å). The kcat and kcat/Km values of the heterodimer are approximately half those of the N80D/N126D homodimer, which suggests that the subunits in solution are kinetically independent. A comparison of enolase structures obtained from crystals belonging to different space groups suggests that asymmetric dimers can be a consequence of the asymmetric positioning of the subunits within the crystal lattice.
机译:烯醇化酶是二聚酶,其催化2-磷酸-D-甘油酯和磷酸烯醇丙酮酸的相互转化。这种可逆脱水是通过一般的酸碱催化作用实现的,主要涉及Lys345和Glu211(来自酵母的烯醇酶1的编号系统)。失活的E211Q烯醇化酶的晶体结构表明该蛋白质已正确折叠。但是,到目前为止,K345变体尚未结晶。该问题通过工程改造的烯醇酶异二聚体的结晶解决。异二聚体由一个具有K345A突变的非活性亚基和一个具有N80D和N126D表面突变的活性亚基组成,以促进三种二聚体物种的离子交换色谱分离。该杂二聚体变体的结构与底物/产物复杂,以1.85Å的分辨率获得。将该结构与从属于同一空间群的晶体获得的野生型烯醇化酶的新结构进行了比较。具有一个亚单位的非对称二聚体在三个结构中均出现,所述一个亚单位以开放构象显示三个活性位点环中的两个,而另一个处于所有三个环闭合的构象中。异二聚体的K345A亚基处于闭环构象;其C α碳原子与野生型烯醇化酶相应亚基的碳原子紧密匹配(均方根偏差为0.23Å)。异二聚体的kcat和kcat / Km值约为N80D / N126D同二聚体的kcat和kcat / Km值的一半,这表明溶液中的亚基是动力学独立的。从属于不同空间群的晶体获得的烯醇酶结构的比较表明,不对称的二聚体可能是晶格内亚基不对称定位的结果。

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