首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Crystal Structure of the Nitrogenase-like Dark Operative Protochlorophyllide Oxidoreductase Catalytic Complex (ChlN/ChlB)2
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Crystal Structure of the Nitrogenase-like Dark Operative Protochlorophyllide Oxidoreductase Catalytic Complex (ChlN/ChlB)2

机译:氮酶样暗活性原叶绿素原氧化物氧化还原酶催化复合物(ChlN / ChlB)2的晶体结构。

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摘要

During (bacterio)chlorophyll biosynthesis of many photosynthetically active organisms, dark operative protochlorophyllide oxidoreductase (DPOR) catalyzes the two-electron reduction of ring D of protochlorophyllide to form chlorophyllide. DPOR is composed of the subunits ChlL, ChlN, and ChlB. Homodimeric ChlL2 bearing an intersubunit [4Fe-4S] cluster is an ATP-dependent reductase transferring single electrons to the heterotetrameric (ChlN/ChlB)2 complex. The latter contains two intersubunit [4Fe-4S] clusters and two protochlorophyllide binding sites, respectively. Here we present the crystal structure of the catalytic (ChlN/ChlB)2 complex of DPOR from the cyanobacterium Thermosynechococcus elongatus at a resolution of 2.4 Å. Subunits ChlN and ChlB exhibit a related architecture of three subdomains each built around a central, parallel β-sheet surrounded by α-helices. The (ChlN/ChlB)2 crystal structure reveals a [4Fe-4S] cluster coordinated by an aspartate oxygen alongside three cysteine ligands. Two equivalent substrate binding sites enriched in aromatic residues for protochlorophyllide substrate binding are located at the interface of each ChlN/ChlB half-tetramer. The complete octameric (ChlN/ChlB)2(ChlL2)2 complex of DPOR was modeled based on the crystal structure and earlier functional studies. The electron transfer pathway via the various redox centers of DPOR to the substrate is proposed.
机译:在许多光合活性生物的(细菌)叶绿素生物合成过程中,黑暗有效的原叶绿素原氧化物氧化还原酶(DPOR)催化原叶绿素D环D的两电子还原,形成叶绿素。 DPOR由亚基ChlL,ChlN和ChlB组成。带有亚基[4Fe-4S]簇的同型二聚体ChlL2是一种ATP依赖的还原酶,可将单电子转移至异四聚体(ChlN / ChlB)2络合物。后者包含两个亚基[4Fe-4S]簇和两个原叶绿素结合位点。在这里,我们提出了来自蓝藻嗜热嗜热球菌的DPOR催化(ChlN / ChlB)2配合物的晶体结构,其分辨率为2.4。亚基ChlN和ChlB表现出三个亚结构域的相关结构,每个亚结构域围绕由α-螺旋包围的中央平行β-折叠构建。 (ChlN / ChlB)2晶体结构揭示了一个[4Fe-4S]簇,该簇由天冬氨酸氧与三个半胱氨酸配体协同作用。两个富集原叶绿素内酯底物结合的芳香族残基的等效底物结合位点位于每个ChlN / ChlB半四聚体的界面。 DPOR的完整八聚体(ChlN / ChlB)2(ChlL2)2配合物是基于晶体结构和较早的功能研究建模的。提出了通过DPOR的各种氧化还原中心到达衬底的电子转移途径。

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