Kinetics of the ATP hydrolysis cycle of the nucleotide-binding domain of Mdl1 studied by a novel site-specific labeling technique

被引:24
作者
van der Does, C [1 ]
Presenti, C [1 ]
Schulze, K [1 ]
Dinkelaker, S [1 ]
Tampé, R [1 ]
机构
[1] Univ Frankfurt, Bioctr, Inst Biochem, D-60439 Frankfurt, Germany
关键词
D O I
10.1074/jbc.M511730200
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
We have recently proposed a "processive clamp" model for the ATP hydrolysis cycle of the nucleotide-binding domain (NBD) of the mitochondrial ABC transporter Mdl1 ( Janas, E., Hofacker, M., Chen, M., Gompf, S., van der Does, C., and Tampe, R. ( 2003) J. Biol. Chem. 278, 26862 - 26869). In this model, ATP binding to two monomeric NBDs leads to formation of an NBD dimer that, after hydrolysis of both ATPs, dissociates and releases ADP. Here, we set out to follow the association and dissociation of NBDs using a novel minimally invasive site-specific labeling technique, which provides stable and stoichiometric attachment of fluorophores. The association and dissociation kinetics of the E599Q-NBD dimer upon addition and removal of ATP were determined by fluorescence self-quenching. Remarkably, the rate of ATP hydrolysis of the wild type NBD is determined by the rate of NBD dimerization. In the E599Q-NBD, however, in which the ATP hydrolysis is 250-fold reduced, the ATP hydrolysis reaction controls dimer dissociation and the overall ATPase cycle. These data explain contradicting observations on the rate-limiting step of various ABC proteins and further demonstrate that dimer formation is an important step in the ATP hydrolysis cycle.
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收藏
页码:5694 / 5701
页数:8
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