Zhang E, Hatada M, Brewer J M, Lebioda L
Department of Chemistry and Biochemistry, University of South Carolina, Columbia 29208.
Biochemistry. 1994 May 24;33(20):6295-300. doi: 10.1021/bi00186a032.
Enolase, a glycolytic enzyme that catalyzes the dehydration of 2-phospho-D-glycerate (PGA) to form phosphoenolpyruvate (PEP), requires two divalent metal ions per active site for activity. The first metal ion, traditionally referred to as "conformational", binds in a high-affinity site I. The second metal ion, "catalytic", binds in site II only in the presence of a substrate or substrate analogue and with much lower affinity for the physiological cofactor Mg2+. While the high-affinity site has been well characterized, the position of the lower affinity site has not been established so far. Here, we report the structure of the quaternary complex between enolase, the transition-state analogue phosphonoacetohydroxamate (PhAH), and two Mn2+ ions. The structure has been refined by using 16 561 reflections with F/sigma (F) > or = 3 to an R = 0.165 with average deviations of bond lengths and bond angles from ideal values of 0.013 A and 3.1 degrees, respectively. The "catalytic" metal ion is coordinated to two oxygen atoms of the phosphono moiety of PhAH and to the carbonyl oxygen of Gly37. Most likely, disordered water molecules complement its coordination sphere. The interaction with the site II metal ion must stabilize negative charge on the phosphate group and produce electron withdrawal from carbon 2 of the substrate, facilitating proton abstraction from carbon 2, the rate-limiting step in the catalytic process. The Gly37 residue is located in the flexible loop Ser36-His43, which assumes an "open" conformation in the absence of substrate and a "closed" conformation in the presence of a substrate.(ABSTRACT TRUNCATED AT 250 WORDS)
烯醇化酶是一种催化2-磷酸-D-甘油酸(PGA)脱水形成磷酸烯醇式丙酮酸(PEP)的糖酵解酶,每个活性位点需要两个二价金属离子来发挥活性。第一个金属离子,传统上称为“构象性”离子,结合在高亲和力的位点I。第二个金属离子,“催化性”离子,仅在底物或底物类似物存在时结合在位点II,并且对生理辅因子Mg2+的亲和力低得多。虽然高亲和力位点已得到充分表征,但低亲和力位点的位置迄今尚未确定。在此,我们报道了烯醇化酶、过渡态类似物膦酰基乙酰氧肟酸(PhAH)和两个Mn2+离子之间的四级复合物结构。该结构已通过使用16561个F/σ(F)≥3的反射进行精修,R值为0.165,键长和键角与理想值的平均偏差分别为0.013 Å和3.1°。“催化”金属离子与PhAH膦酰基部分的两个氧原子以及Gly37的羰基氧配位。很可能无序水分子补充了其配位球。与位点II金属离子的相互作用必须稳定磷酸基团上的负电荷,并使底物碳2上的电子撤离,促进从碳2夺取质子,这是催化过程中的限速步骤。Gly37残基位于柔性环Ser36-His43中,在无底物时呈“开放”构象,在有底物时呈“封闭”构象。(摘要截短于250字)