Vipond I B, Halford S E
Department of Biochemistry, University of Bristol, U.K.
Biochemistry. 1995 Jan 31;34(4):1113-9. doi: 10.1021/bi00004a002.
In the presence of Mg2+, the EcoRV restriction endonuclease cleaves DNA specifically at its recognition sequence, but in the absence of divalent metal ions, it binds DNA without any specificity: gel-shift experiments had revealed multiple EcoRV-DNA complexes, due to the binding of one, two, three, or more molecules of protein per molecule of DNA, with the same equilibrium constant for each association. In this study, the binding of EcoRV to DNA was measured by gel shift in the presence of Ca2+, an ion that perturbs the Mg(2+)-dependent activity of EcoRV but that fails to support DNA cleavage. With Ca2+, and at a lower concentration of EcoRV protein than that required for binding in the absence of divalent metal ions, a single complex was observed with DNA containing the EcoRV recognition site. This complex was not formed with DNA that had been methylated at the EcoRV site nor with an isogenic DNA lacking the EcoRV recognition site. The single complex thus is due to the specific binding of EcoRV to its recognition site on the DNA. From gel shifts with a permuted set of DNA fragments, the degree of DNA bending by EcoRV at its recognition site was estimated to be 53 degrees +/- 4 degrees. This angle is similar to that seen in the crystal structure of the cognate DNA-protein complex. Calcium ions thus appear to mimic the role of Mg2+ in generating a specific protein-metal-DNA complex, but in contrast to Mg2+, Ca2+ gives a stable ternary complex in which the DNA-bound nuclease cannot cleave the DNA.
在有Mg2+存在时,EcoRV限制性内切酶会在其识别序列处特异性切割DNA,但在没有二价金属离子时,它会非特异性地结合DNA:凝胶迁移实验揭示了多种EcoRV-DNA复合物,这是由于每分子DNA结合了一、二、三或更多分子的蛋白质,且每次结合的平衡常数相同。在本研究中,通过在Ca2+存在下进行凝胶迁移来测量EcoRV与DNA的结合,Ca2+这种离子会干扰EcoRV依赖Mg2+的活性,但不能支持DNA切割。有Ca2+存在时,且EcoRV蛋白浓度低于无二价金属离子时结合所需的浓度,观察到与含有EcoRV识别位点的DNA形成单一复合物。这种复合物不会与在EcoRV位点甲基化的DNA或缺乏EcoRV识别位点的同基因DNA形成。因此,这种单一复合物是由于EcoRV与其在DNA上的识别位点特异性结合所致。通过对一组排列的DNA片段进行凝胶迁移实验,估计EcoRV在其识别位点使DNA弯曲的程度为53度±4度。这个角度与同源DNA-蛋白质复合物晶体结构中观察到的角度相似。因此,钙离子似乎模拟了Mg2+在生成特异性蛋白质-金属-DNA复合物中的作用,但与Mg2+不同的是,Ca2+产生了一种稳定的三元复合物,其中与DNA结合的核酸酶无法切割DNA。