Biswas Subhasis B, Biswas-Fiss Esther E
Department of Molecular Biology, School of Medicine and Graduate School of Biomedical Sciences, University of Medicine and Dentistry of New Jersey, Stratford, New Jersey 08084, USA.
Biochemistry. 2006 Sep 26;45(38):11505-13. doi: 10.1021/bi060118d.
DnaB helicase is responsible for unwinding duplex DNA during chromosomal DNA replication and is an essential component of the DNA replication apparatus in Escherichia coli. We have analyzed the mechanism of binding of single-stranded DNA (ssDNA) by the DnaB x DnaC complex and DnaB helicase. Binding of ssDNA to DnaB helicase was significantly modulated by nucleotide cofactors, and the modulation was distinctly different for its complex with DnaC. DnaB helicase bound ssDNA with a high affinity [Kd = (5.09 +/- 0.32) x 10(-8) M] only in the presence of ATPgammaS, a nonhydrolyzable analogue of ATP, but not other nucleotides. The binding was sensitive to ionic strength but not to changes in temperature in the range of 30-37 degrees C. On the other hand, ssDNA binding in the presence of ADP was weaker than that observed with ATPgammaS, and the binding was insensitive to ionic strength. DnaC protein hexamerizes to form a 1:1 complex with the DnaB hexamer and loads it onto the ssDNA by forming a DnaB6 x DnaC6 dodecameric complex. Our results demonstrate that the DnaB6 x DnaC6 complex bound ssDNA with a high affinity [Kd = (6.26 +/- 0.65) x 10(-8) M] in the presence of ATP, unlike the DnaB hexamer. In the presence of ATPgammaS or ADP, binding of ssDNA by the DnaB6 x DnaC6 complex was a lower-affinity process. In summary, our results suggest that in the presence of ATP in vivo, the DnaB6 x DnaC6 complex should be more efficient in binding DNA as well as in loading DnaB onto the ssDNA than DnaB helicase itself.
DnaB解旋酶负责在染色体DNA复制过程中解开双链DNA,是大肠杆菌DNA复制装置的重要组成部分。我们分析了DnaB与DnaC复合物以及DnaB解旋酶结合单链DNA(ssDNA)的机制。ssDNA与DnaB解旋酶的结合受到核苷酸辅因子的显著调节,并且这种调节在其与DnaC的复合物中明显不同。DnaB解旋酶仅在ATPγS(一种ATP的不可水解类似物)存在下以高亲和力[Kd = (5.09 ± 0.32) × 10⁻⁸ M]结合ssDNA,而在其他核苷酸存在下则不然。这种结合对离子强度敏感,但在30 - 37摄氏度范围内对温度变化不敏感。另一方面,在ADP存在下的ssDNA结合比在ATPγS存在下观察到的弱,并且这种结合对离子强度不敏感。DnaC蛋白六聚化形成与DnaB六聚体的1:1复合物,并通过形成DnaB6×DnaC6十二聚体复合物将其加载到ssDNA上。我们的结果表明,与DnaB六聚体不同,DnaB6×DnaC6复合物在ATP存在下以高亲和力[Kd = (6.26 ± 0.65) × 10⁻⁸ M]结合ssDNA。在ATPγS或ADP存在下,DnaB6×DnaC6复合物对ssDNA的结合是一个低亲和力过程。总之,我们的结果表明,在体内ATP存在下,DnaB6×DnaC6复合物在结合DNA以及将DnaB加载到ssDNA上应该比DnaB解旋酶本身更有效。