Wong I, Lohman T M
Department of Biochemistry and Molecular Biophysics, Washington University School of Medicine, St. Louis, MO 63110.
Science. 1992 Apr 17;256(5055):350-5. doi: 10.1126/science.256.5055.350.
The Escherichia coli Rep helicase unwinds duplex DNA during replication. The functional helicase appears to be a dimer that forms only on binding DNA. Both protomers of the dimer can bind either single-stranded or duplex DNA. Because binding and hydrolysis of adenosine triphosphate (ATP) are essential for helicase function, the energetics of DNA binding and DNA-induced Rep dimerization were studied quantitatively in the presence of the nucleotide cofactors adenosine diphosphate (ADP) and the nonhydrolyzable ATP analog AMPP(NH)P. Large allosteric effects of nucleotide cofactors on DNA binding to Rep were observed. Binding of ADP favored Rep dimers in which both protomers bound single-stranded DNA, whereas binding of AMPP(NH)P favored simultaneous binding of both single-stranded and duplex DNA to the Rep dimer. A rolling model for the active unwinding of duplex DNA by the dimeric Rep helicase is proposed that explains vectorial unwinding and predicts that helicase translocation along DNA is coupled to ATP binding, whereas ATP hydrolysis drives unwinding of multiple DNA base pairs for each catalytic event.
大肠杆菌Rep解旋酶在复制过程中解开双链DNA。功能性解旋酶似乎是一种仅在结合DNA时形成的二聚体。二聚体的两个原体都可以结合单链或双链DNA。由于三磷酸腺苷(ATP)的结合和水解对解旋酶功能至关重要,因此在核苷酸辅因子二磷酸腺苷(ADP)和不可水解的ATP类似物AMPP(NH)P存在的情况下,对DNA结合和解旋酶诱导的Rep二聚化的能量学进行了定量研究。观察到核苷酸辅因子对DNA与Rep结合的巨大变构效应。ADP的结合有利于两个原体都结合单链DNA的Rep二聚体,而AMPP(NH)P的结合有利于单链和双链DNA同时结合到Rep二聚体上。提出了一个由二聚体Rep解旋酶主动解开双链DNA的滚动模型,该模型解释了向量解旋,并预测解旋酶沿DNA的易位与ATP结合偶联,而ATP水解驱动每个催化事件中多个DNA碱基对的解旋。