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对D-木糖异构酶的两个锰(II)取代金属结合位点的X波段和Q波段电子顺磁共振研究

X- and Q-band EPR studies on the two Mn(2+)-substituted metal-binding sites of D-xylose isomerase.

作者信息

Bogumil R, Kappl R, Hüttermann J, Sudfeldt C, Witzel H

机构信息

Institut für Biochemie, Universität Münster, Germany.

出版信息

Eur J Biochem. 1993 May 1;213(3):1185-92. doi: 10.1111/j.1432-1033.1993.tb17869.x.

Abstract

The two metal-binding sites (A and B)/subunit of the homotetrameric D-xylose isomerase (Xyl isomerase) from Streptomyces rubiginosus have been studied with Mn(2+)-EPR spectroscopy at X-band and Q-band frequencies and with electronic spectroscopy. Displacement studies in the visible absorbance range showed that Mn2+ have a higher affinity for the B site. With the low-affinity A site unoccupied, the coordination sphere of Mn2+ in the B site is quite distorted giving rise to a highly anisotropic X-band EPR spectrum. Simulation of the Q-band spectrum reveals a zero field splitting (zfs) D of about 45-48 mT and a rhombicity parameter E/D between 0.2 and 0.3. Occupation of both binding sites with Mn2+ induces a significant shift towards a higher symmetry in the coordination sphere of the B site resulting in similar zfs parameters for both binding sites. The change in A-site environment caused by B-site occupation was analysed in mixed Xyl isomerase derivatives, in which the B site is loaded with Co2+, Cd2+ or Pb2+ and the A site with Mn2+. In the Co2+/Mn2+ Xyl isomerase the Mn2+ has a relatively symmetric ligand environment with small zfs parameters (D = 12 mT, E/D < 0.15). Substituting Co2+ with Cd2+ or Pb2+ in the B site leads to a drastic increase in the zfs parameters of Mn2+ in the A site. The distortions are directly linked to the ionic radii of the ions bound to the B site and may be mediated by the carboxylate group of Glu216 that bridges the metal-binding sites. The EPR spectra also reflect the catalytic activity of the mixed metal samples. With the larger Cd2+ or Pb2+ in the B site, which are strongly influencing the stereochemistry of the A site, the catalytic activity is lost, whereas Co2+ and Mn2+ render the enzyme in an active state, so that the mutual influence on catalysis depends on the complex geometry of both metal-binding sites.

摘要

利用X波段和Q波段频率的Mn(2+) - EPR光谱以及电子光谱,对来自红色链霉菌的同四聚体D - 木糖异构酶(木糖异构酶)的两个金属结合位点(A和B)/亚基进行了研究。在可见吸收范围内的置换研究表明,Mn2+对B位点具有更高的亲和力。在低亲和力的A位点未被占据时,B位点中Mn2+的配位球相当扭曲,产生高度各向异性的X波段EPR光谱。Q波段光谱的模拟显示零场分裂(zfs)D约为45 - 48 mT,菱形度参数E/D在0.2至0.3之间。两个结合位点都被Mn2+占据会导致B位点配位球向更高对称性显著转变,从而使两个结合位点的zfs参数相似。在混合的木糖异构酶衍生物中分析了B位点占据引起的A位点环境变化,其中B位点负载Co2+、Cd2+或Pb2+,A位点负载Mn2+。在Co2+/Mn2+木糖异构酶中,Mn2+具有相对对称的配体环境,zfs参数较小(D = 12 mT,E/D < 0.15)。在B位点用Cd2+或Pb2+取代Co2+会导致A位点中Mn2+的zfs参数急剧增加。这些扭曲与结合在B位点的离子的离子半径直接相关,并且可能由连接金属结合位点的Glu216的羧基介导。EPR光谱也反映了混合金属样品的催化活性。当B位点存在较大的Cd2+或Pb2+时,它们强烈影响A位点的立体化学,催化活性丧失,而Co2+和Mn2+使酶处于活性状态,因此对催化的相互影响取决于两个金属结合位点的复杂几何结构。

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