Structure of Chlorobium tepidum sepiapterin reductase complex reveals the novel substrate binding mode for stereospecific production of L-threo-tetrahydrobiopterin

被引:14
|
作者
Supangat, S
Seo, KH
Choi, YK
Park, YS
Son, D
Han, CD
Lee, KH [1 ]
机构
[1] Gyeongsang Natl Univ, Div Appl Life Sci, Jinju 660701, South Korea
[2] Gyeongsang Natl Univ, Environm Biotechnol Natl Core Res Ctr, Jinju 660701, South Korea
[3] Gyeongsang Natl Univ, Plant Mol Biol & Biotechnol Res Ctr, Jinju 660701, South Korea
[4] Inje Univ, Sch Biotechnol & Biomed Sci, Kimhae 621749, South Korea
关键词
D O I
10.1074/jbc.M509343200
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Sepiapterin reductase (SR) is involved in the last step of tetrahydrobiopterin (BH4) biosynthesis by reducing the di-keto group of 6-pyruvoyl tetrahydropterin. Chlorobium tepidum SR (cSR) generates a distinctBH(4) product, L-threo- BH4 (6R-(1'S, 2'S)- 5,6,7,8- BH4), whereas animal enzymes produce L-erythro-BH4 (6R-( 1'R, 2'S)5,6,7,8- BH4) although it has high amino acid sequence similarities to the other animal enzymes. To elucidate the structural basis for the different reaction stereospecificities, we have determined the three-dimensional structures of cSR alone and complexed with NADP and sepiapterin at 2.1 and 1.7 angstrom resolution, respectively. The overall folding of the cSR, the binding site for the cofactor NADP(H), and the positions of active site residues were quite similar to the mouse and the human SR. However, significant differences were found in the substrate binding region of the cSR. In comparison to the mouse SR complex, the sepiapterin in the cSR is rotated about 180 around the active site and bound between two aromatic side chains of Trp-196 and Phe-99 so that its pterin ring is shifted to the opposite side, but its side chain position is not changed. The swiveled sepiapterin binding results in the conversion of the side chain configuration, exposing the opposite face for hydride transfer from NADPH. The different sepiapterin binding mode within the conserved catalytic architecture presents a novel strategy of switching the reaction stereospecificities in the same protein fold.
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页码:2249 / 2256
页数:8
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