铁氧还蛋白
氧化还原酶
黄素腺嘌呤二核苷酸
电子转移
铁氧还蛋白NADP(+)还原酶
结晶学
黄素组
化学
分子间力
黄多辛
结合位点
还原酶
立体化学
氧化还原
电子传输链
生物化学
光化学
酶
分子
辅因子
有机化学
作者
Genji Kurisu,Masami Kusunoki,Etsuko Katoh,Toshimasa Yamazaki,Keizo Teshima,Yayoi Onda,Yoko Kimata‐Ariga,Toshiharu Hase
出处
期刊:
日期:2001-02-01
卷期号:8 (2): 117-121
被引量:327
摘要
All oxygenic photosynthetically derived reducing equivalents are utilized by combinations of a single multifuctional electron carrier protein, ferredoxin (Fd), and several Fd-dependent oxidoreductases. We report the first crystal structure of the complex between maize leaf Fd and Fd-NADP(+) oxidoreductase (FNR). The redox centers in the complex--the 2Fe-2S cluster of Fd and flavin adenine dinucleotide (FAD) of FNR--are in close proximity; the shortest distance is 6.0 A. The intermolecular interactions in the complex are mainly electrostatic, occurring through salt bridges, and the interface near the prosthetic groups is hydrophobic. NMR experiments on the complex in solution confirmed the FNR recognition sites on Fd that are identified in the crystal structure. Interestingly, the structures of Fd and FNR in the complex and in the free state differ in several ways. For example, in the active site of FNR, Fd binding induces the formation of a new hydrogen bond between side chains of Glu 312 and Ser 96 of FNR. We propose that this type of molecular communication not only determines the optimal orientation of the two proteins for electron transfer, but also contributes to the modulation of the enzymatic properties of FNR.
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