EFFECT OF NUCLEOTIDE COFACTOR STRUCTURE ON RECA PROTEIN-PROMOTED DNA PAIRING .1. 3-STRAND EXCHANGE-REACTION

被引:24
作者
MENGE, KL [1 ]
BRYANT, FR [1 ]
机构
[1] JOHNS HOPKINS UNIV,SCH PUBL HLTH,DEPT BIOCHEM,BALTIMORE,MD 21205
关键词
D O I
10.1021/bi00137a009
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 structurally related nucleoside triphosphates, adenosine triphosphate (ATP), purine riboside triphosphate (PTP), inosine triphosphate (ITP), and guanosine triphosphate (GTP), are all hydrolyzed by the recA protein with the same turnover number (17.5 min-1). The SO.5 values for these nucleotides increase progressively in the order ATP (45-mu-M), PTP (100-mu-M), ITP (300-mu-M), and GTP (750-mu-M). PTP, ITP, and GTP are each competitive inhibitors of recA protein-catalyzed ssDNA-dependent ATP hydrolysis, indicating that these nucleotides all compete for the same catalytic site on the recA protein. Despite these similarities, ATP and PTP function as cofactors for the recA protein-promoted three-strand exchange reaction, whereas ITP and GTP are inactive as cofactors. The strand exchange activity of the various nucleotides correlates directly with their ability to support the isomerization of the recA protein to a strand exchange-active conformational state. The mechanistic deficiency of ITP and GTP appears to arise as a consequence of the hydrolysis of these nucleotides to the corresponding nucleoside diphosphates, IDP and GDP. We speculate that nucleoside triphosphates with S0.5 values greater than 100-mu-M will be intrinsically unable to sustain the strand exchange-active conformational state of the recA protein during ongoing NTP hydrolysis and will therefore be inactive as cofactors for the strand exchange reaction.
引用
收藏
页码:5151 / 5157
页数:7
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