Conformational changes combined with charge-transfer interactions are essential for reduction in catalysis by p-hydroxybenzoate hydroxylase

被引:22
作者
Ortiz-Maldonado, M [1 ]
Entsch, B [1 ]
Ballou, DP [1 ]
机构
[1] Univ Michigan, Dept Biol Chem, Ann Arbor, MI 48109 USA
关键词
D O I
10.1021/bi030114y
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
p-Hydroxybenzoate hydroxylase is a flavoprotein monooxygenase that catalyzes a reaction in two parts: reduction of the enzyme cofactor FAD by NADPH in response to binding p-hydroxybenzoate to the enzyme and reaction of reduced FAD with oxygen to form a hydroperoxide, which then oxygenates p-hydroxybenzoate. Three different reactions, each with specific requirements, are achieved by moving the position of the isoalloxazine ring in the protein structure. In this paper, we examine the operation of protein conformational changes and the significance of charge-transfer absorption bands associated with the reduction of FAD by NADPH when the substrate analogue, 5-hydroxypicolinate, is bound to the enzyme. It was discovered that the enzyme with picolinate bound was reduced at a rate similar to that with p-hydroxybenzoate bound at high pH. However, there was a large effect of pH upon the rate of reduction in the presence of picolinate with a pK(a) of 7.4, identical to the pK(a) of picolinate bound to the enzyme. The intensity of charge-transfer bands observed between FAD and NADPH during the reduction process correlated with the rate of flavin reduction. We conclude that high rates of reduction of the enzyme require (a) the isoalloxazine of the flavin be held by the protein in a solvent-exposed position and (b) the movement of a loop of protein so that the pyridine ring of NADPH can move into position to form a complex with the isoalloxazine that is competent for hydride transfer and that is indicated by a strong charge-transfer interaction.
引用
收藏
页码:11234 / 11242
页数:9
相关论文
共 35 条
[1]  
Bevington P., 2003, Data reduction and error analysis for the physical sciences
[2]   FLAVIN-NICOTINAMIDE BISCOENZYMES - MODELS FOR INTERACTION BETWEEN NADH (NADPH) AND FLAVIN IN FLAVOENZYMES - REACTION-RATES AND PHYSICOCHEMICAL PROPERTIES OF INTERMEDIATE SPECIES [J].
BLANKENHORN, G .
EUROPEAN JOURNAL OF BIOCHEMISTRY, 1975, 50 (02) :351-356
[3]  
BLANKENHORN G, 1976, FLAVINS FLAVOPROTEIN, P261
[4]   Mutation detection by electrocatalysis at DNA-modified electrodes [J].
Boon, EM ;
Ceres, DM ;
Drummond, TG ;
Hill, MG ;
Barton, JK .
NATURE BIOTECHNOLOGY, 2000, 18 (10) :1096-1100
[5]   Reaction of 2-methyl-3-hydroxypryidine-5-carboxylic acid (MHPC) oxygenase with N-methyl-5-hydroxynicotinic acid: Studies on the mode of binding, and protonation status of the substrate [J].
Chaiyen, P ;
Brissette, P ;
Ballou, DP ;
Massey, V .
BIOCHEMISTRY, 1997, 36 (45) :13856-13864
[6]   CARBOXYLIC ACIDS OF 3-PYRIDINESULFONIC ACID AND THEIR SALTS [J].
DUESEL, BF ;
SCUDI, JV .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1949, 71 (05) :1866-1867
[7]  
ENTSCH B, 1991, J BIOL CHEM, V266, P17341
[8]   FLAVOPROTEIN STRUCTURE AND MECHANISM .1. STRUCTURE AND MECHANISM OF PARA-HYDROXYBENZOATE HYDROXYLASE [J].
ENTSCH, B ;
VANBERKEL, WJH .
FASEB JOURNAL, 1995, 9 (07) :476-483
[9]  
ENTSCH B, 1976, J BIOL CHEM, V251, P7367
[10]  
ENTSCH B, 1990, METHOD ENZYMOL, V188, P138