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Crystal structure of phycocyanobilin:ferredoxin oxidoreductase in complex with biliverdin IXα, a key enzyme in the biosynthesis of phycocyanobilin

机译:藻蓝蛋白的晶体结构:铁氧还蛋白氧化还原酶与胆绿素的生物合成中的关键酶biliverdinIXα复合

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摘要

Phytobilins (light harvesting and photoreceptor pigments in higher plants, algae, and cyanobacteria) are synthesized from biliverdin IXα (BV) by ferredoxin-dependent bilin reductases (FDBRs). Phycocyanobilin:ferredoxin oxidoreductase (PcyA), one such FDBR, is a new class of radical enzymes that require neither cofactors nor metals and serially reduces the vinyl group of the D-ring and A-ring of BV using four electrons from ferredoxin to produce phycocyanobilin, one of the phytobilins. We have determined the crystal structure of PcyA from Synechocystis sp. PCC 6803 in complex with BV, revealing the first tertiary structure of an FDBR family member. PcyA is folded in a three-layer α/β/α sandwich structure, in which BV in a cyclic conformation is positioned between the β-sheet and C-terminal α-helices. The basic patch on the PcyA surface near the BV molecule may provide a binding site for acidic ferredoxin, allowing direct transfer of electrons to BV. The orientation of BV is definitely fixed in PcyA by several hydrophilic interactions and the shape of the BV binding pocket of PcyA. We propose the mechanism by which the sequential reduction of the D- and A-rings is controlled, where Asp-105, located between the two reduction sites, would play the central role by changing its conformation during the reaction. Homology modeling of other FDBRs based on the PcyA structure fits well with previous genetic and biochemical data, thereby providing a structural basis for the reaction mechanism of FDBRs.
机译:藻胆素(高等植物,藻类和蓝细菌中的光收集物和光感受器色素)是由biliverdinIXα(BV)通过铁氧还蛋白依赖性bilin还原酶(FDBR)合成的。藻蓝蛋白:铁氧还蛋白氧化还原酶(PcyA)是一种此类FDBR,是一类不需要辅因子或金属的自由基酶,它利用铁氧还蛋白的四个电子连续还原BV的D环和A环的乙烯基,从而产生藻蓝蛋白,一种植物素。我们已经确定了Synychocystis sp。的PcyA的晶体结构。与BV复合的PCC 6803,揭示了FDBR家族成员的第一个三级结构。 PcyA折叠成三层α/β/α夹心结构,其中环状构型的BV位于β-折叠和C端α-螺旋之间。靠近BV分子的PcyA表面上的碱性补丁可以为酸性铁氧还蛋白提供结合位点,从而使电子直接转移至BV。 BV的方向肯定通过几种亲水相互作用和PcyA的BV结合口袋的形状固定在PcyA中。我们提出了控制D环和A环顺序还原的机制,其中位于两个还原位点之间的Asp-105将通过在反应过程中改变其构象而发挥核心作用。基于PcyA结构的其他FDBR的同源性建模与先前的遗传和生化数据非常吻合,从而为FDBR的反应机理提供了结构基础。

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