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A single active site residue directs oxygenation stereospecificity in lipoxygenases: Stereocontrol is linked to the position of oxygenation

机译:单个活性位点残基指导脂氧合酶的氧合立体定向:立体控制与氧合位置相关

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摘要

Lipoxygenases are a class of dioxygenases that form hydroperoxy fatty acids with distinct positional and stereo configurations. Several amino acid residues influencing regiospecificity have been identified, whereas the basis of stereocontrol is not understood. We have now identified a single residue in the lipoxygenase catalytic domain that is important for stereocontrol; it is conserved as an Ala in S lipoxygenases and a Gly in R lipoxygenases. Our results with mutation of the conserved Ala to Gly in two S lipoxygenases (mouse 8S-LOX and human 15-LOX-2) and the corresponding Gly–Ala substitution in two R lipoxygenases (human 12R-LOX and coral 8R-LOX) reveal that the basis for R or S stereo-control also involves a switch in the position of oxygenation on the substrate. After the initial hydrogen abstraction, antarafacial oxygenation at one end or the other of the activated pair of double bonds (pentadiene) gives, for example, 8S or 12R product. The Ala residue promotes oxygenation on the reactive pentadiene at the end deep in the substrate binding pocket and S stereochemistry of the product hydroperoxide, and a Gly residue promotes oxygenation at the proximal end of the reactive pentadiene resulting in R stereochemistry. A model of lipoxygenase reaction specificity is proposed in which product regiochemistry and stereochemistry are determined by fixed relationships between substrate orientation, hydrogen abstraction, and the Gly or Ala residue we have identified.
机译:脂加氧酶是一类双加氧酶,其形成具有不同位置和立体构型的氢过氧脂肪酸。已经确定了几种影响区域特异性的氨基酸残基,而立体控制的基础尚不清楚。现在我们已经确定了脂加氧酶催化域中的一个残基,对立体控制很重要;它在S脂氧化酶中作为Ala保守,在R脂氧化酶中作为Gly保守。我们在两个S脂氧合酶(小鼠8S-LOX和人15-LOX-2)中将保守的Ala突变为Gly的结果以及在两个R脂氧合酶(人12R-LOX和珊瑚8R-LOX)中相应的Gly-Ala取代的结果表明R或S立体控制的基础还涉及在基材上的氧化位置的切换。在最初的氢提取之后,在活化的双键对(戊二烯)的一端或另一端进行正向氧化,生成8S或12R产物。 Ala残基促进底物结合口袋深处末端的反应性戊二烯上的氧合和产物氢过氧化物的S立体化学,而Gly残基促进反应性戊二烯的近端处的氧合,从而导致R立体化学。提出了脂氧合酶反应特异性的模型,其中产物的区域化学和立体化学由底物方向,氢提取和我们已经确定的Gly或Ala残基之间的固定关系确定。

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