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首页> 外文期刊>Biochemistry >Reevaluating glyphosate as a transition-state inhibitor of EPSP synthase: identification of an EPSP synthase.EPSP.glyphosate ternary complex.
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Reevaluating glyphosate as a transition-state inhibitor of EPSP synthase: identification of an EPSP synthase.EPSP.glyphosate ternary complex.

机译:重新评估草甘膦作为EPSP合酶的过渡态抑制剂:鉴定EPSP合酶EPSP草甘膦三元复合物。

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摘要

Numerous studies have confirmed that glyphosate forms a tight ternary complex with EPSP synthase and shikimate 3-phosphate. It has been proposed [Anton, D., Hedstrom, L., Fish, S., & Abeles, R. (1983) Biochemistry 22, 5903-5908; Steinrucken, H. C., & Amrhein, N. (1984) Eur. J. Biochem. 143, 351-357] that in this complex glyphosate functions as a transition-state analog of the putative phosphoenolpyruvoyl oxonium ion. For this to be true, glyphosate must occupy the space in the enzyme active site that is normally associated with PEP and, through turnover, the carboxyvinyl group of the product EPSP. According to this model, one would predict that, in the reverse EPSP synthase reaction with EPSP and phosphate as substrates, there should be little if any interaction of glyphosate with enzyme or enzyme.substrate complexes. In contrast to this expectation, rapid gel filtration experiments provided direct evidence that glyphosate could be trapped on the enzyme in the presence of EPSP to form a ternary complexof EPSPS.EPSP.glyphosate. The experimentally determined stoichiometry for this complex, 0.62 equiv of glyphosate/mole of EPSPS, is similar to that found for the EPSPS.S3P.glyphosate ternary complex (0.66). This direct binding result was corroborated and quantitated by fluorescence titration experiments which demonstrated that glyphosate forms a reasonably tight (Kd = 56 +/- 1 microM) ternary complex with enzyme and EPSP. This finding was further verified, and its impact on substrate turnover analyzed, by steady-state kinetics. Glyphosate was found to be an uncompetitive inhibitor versus EPSP with Kii(app) = 54 +/- 2 microM.(ABSTRACT TRUNCATED AT 250 WORDS)
机译:许多研究已经证实,草甘膦与EPSP合酶和3-磷酸sh草酸酯形成紧密的三元复合物。已经提出了[Anton,D.,Hedstrom,L.,Fish,S。,&Abeles,R。(1983)Biochemistry 22,5903-5908; P.M。等,1983。 Steinrucken,H. C.和Amrhein,N.(1984)欧洲。 J.生物化学。 143,351-357]中指出,在这种复杂的草甘膦中,其功能是推定的磷酸烯醇丙酮酸酰基氧鎓离子的过渡态类似物。为了做到这一点,草甘膦必须占据酶活性位点的空间,该位点通常与PEP以及通过周转而形成产物EPSP的羧基乙烯基相关。根据该模型,可以预测,在以EPSP和磷酸盐为底物的EPSP合酶逆反应中,草甘膦与酶或酶底物复合物之间几乎没有相互作用。与此预期相反,快速的凝胶过滤实验提供了直接的证据,表明在存在EPSP的情况下草甘膦会被捕获在酶上,形成EPSPS.EPSP。草甘膦的三元复合物。实验确定的该配合物的化学计量为0.62当量的草甘膦/摩尔的EPSPS,与EPSPS.S3P。草甘膦三元配合物(0.66)相似。这种直接结合的结果通过荧光滴定实验得到证实和定量,该实验表明草甘膦与酶和EPSP形成了相当紧密的三元复合物(Kd = 56 +/- 1 microM)。通过稳态动力学进一步证实了这一发现,并分析了其对底物周转率的影响。草甘膦被发现与Kii(app)= 54 +/- 2 microM的EPSP相比是一种非竞争性抑制剂(摘要以250字截短)

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