Crystal structure of Escherichia coli cystathionine γ-synthase at 1.5 Å resolution

被引:83
作者
Clausen, T [1 ]
Huber, R [1 ]
Prade, L [1 ]
Wahl, MC [1 ]
Messerschmidt, A [1 ]
机构
[1] Max Planck Inst Biochem, Abt Strukturforsch, D-82152 Martinsried, Germany
关键词
methionine biosynthesis; molecular modelling; protein structure; pyridoxal 5 '-phosphate; X-ray crystallography;
D O I
10.1093/emboj/17.23.6827
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
The transsulfuration enzyme cystathionine gamma-synthase (CGS) catalyses the pyridoxal 5'-phosphate (PLP)- dependent gamma-replacement of O-succinyl-L-homoserine and L-cysteine, yielding L-cystathionine. The crystal structure of the Escherichia coli enzyme has been solved by molecular replacement with the known structure of cystathionine beta-lyase (CBL), and refined at 1.5 Angstrom resolution to a crystallographic R-factor of 20.0 %, The enzyme crystallizes as an alpha(4) tetramer with the subunits related by non-crystallographic 222 symmetry. The spatial fold of the subunits, with three functionally distinct domains and their quarternary arrangement, is similar to that of CBL, Previously proposed reaction mechanisms for CGS can be checked against the structural model, allowing interpretation of the catalytic and substrate-binding functions of individual active site residues, Enzyme-substrate models pinpoint specific residues responsible for the substrate specificity, in agreement with structural comparisons with CBL, Both steric and electrostatic designs of the active site seem to achieve proper substrate selection and productive orientation. Amino acid sequence and structural alignments of CGS and CBL suggest that differences in the substrate-binding characteristics are responsible for the different reaction chemistries. Because CGS catalyses the only known PLP-dependent replacement reaction at C gamma of certain amino acids, the results will help in our understanding of the chemical versatility of PLP.
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页码:6827 / 6838
页数:12
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