Catto Lucy E, Bellamy Stuart R W, Retter Susan E, Halford Stephen E
The DNA-Protein Interactions Unit, Department of Biochemistry, School of Medical Sciences, University of Bristol, University Walk, Bristol BS8 1TD, UK.
Nucleic Acids Res. 2008 Apr;36(6):2073-81. doi: 10.1093/nar/gkn051. Epub 2008 Feb 14.
Genetic events often require proteins to be activated by interacting with two DNA sites, trapping the intervening DNA in a loop. While much is known about looping equilibria, only a few studies have examined DNA-looping dynamics experimentally. The restriction enzymes that cut DNA after interacting with two recognition sites, such as FokI, can be used to exemplify looping reactions. The reaction pathway for FokI on a supercoiled DNA with two sites was dissected by fast kinetics to reveal, in turn: the initial binding of a protein monomer to each site; the protein-protein association to form the dimer, trapping the loop; the subsequent phosphodiester hydrolysis step. The DNA motion that juxtaposes the sites ought on the basis of Brownian dynamics to take approximately 2 ms, but loop capture by FokI took 230 ms. Hence, DNA looping by FokI is rate limited by protein association rather than DNA dynamics. The FokI endonuclease also illustrated activation by looping: it cut looped DNA 400 times faster than unlooped DNA.
基因事件通常需要蛋白质通过与两个DNA位点相互作用而被激活,从而将中间的DNA困在一个环中。虽然对环化平衡已经了解很多,但只有少数研究通过实验研究了DNA环化动力学。与两个识别位点相互作用后切割DNA的限制酶,如FokI,可用于例证环化反应。通过快速动力学分析了FokI在具有两个位点的超螺旋DNA上的反应途径,依次揭示:蛋白质单体与每个位点的初始结合;蛋白质-蛋白质缔合形成二聚体,捕获环;随后的磷酸二酯水解步骤。根据布朗动力学,使位点并列的DNA运动应该大约需要2毫秒,但FokI捕获环需要230毫秒。因此,FokI介导的DNA环化受蛋白质缔合而非DNA动力学的速率限制。FokI核酸内切酶也说明了通过环化进行的激活:它切割环化DNA的速度比未环化DNA快400倍。