Department of Biochemistry, Indian Institute of Science, Bangalore 560012, India.
J Mol Biol. 2012 Jan 20;415(3):475-88. doi: 10.1016/j.jmb.2011.11.002. Epub 2011 Nov 12.
During V(D)J recombination, RAG (recombination-activating gene) complex cleaves DNA based on sequence specificity. Besides its physiological function, RAG has been shown to act as a structure-specific nuclease. Recently, we showed that the presence of cytosine within the single-stranded region of heteroduplex DNA is important when RAGs cleave on DNA structures. In the present study, we report that heteroduplex DNA containing a bubble region can be cleaved efficiently when present along with a recombination signal sequence (RSS) in cis or trans configuration. The sequence of the bubble region influences RAG cleavage at RSS when present in cis. We also find that the kinetics of RAG cleavage differs between RSS and bubble, wherein RSS cleavage reaches maximum efficiency faster than bubble cleavage. In addition, unlike RSS, RAG cleavage at bubbles does not lead to cleavage complex formation. Finally, we show that the "nonamer binding region," which regulates RAG cleavage on RSS, is not important during RAG activity in non-B DNA structures. Therefore, in the current study, we identify the possible mechanism by which RAG cleavage is regulated when it acts as a structure-specific nuclease.
在 V(D)J 重组过程中,RAG(重组激活基因)复合物根据序列特异性切割 DNA。除了其生理功能外,RAG 已被证明是一种结构特异性核酸内切酶。最近,我们表明,当 RAG 在 DNA 结构上切割时,在异源双链 DNA 的单链区域内存在胞嘧啶是很重要的。在本研究中,我们报告了当存在顺式或反式构型的重组信号序列 (RSS) 时,含有泡状区域的异源双链 DNA 可以有效地被切割。当存在顺式时,泡状区域的序列会影响 RAG 在 RSS 上的切割。我们还发现,RAG 在 RSS 和泡状区域的切割动力学不同,其中 RSS 切割比泡状区域更快达到最大效率。此外,与 RSS 不同,RAG 在泡状区域的切割不会导致切割复合物的形成。最后,我们表明,调节 RAG 在 RSS 上切割的“九聚体结合区”在非 B 型 DNA 结构中 RAG 活性期间并不重要。因此,在本研究中,我们确定了 RAG 作为结构特异性核酸内切酶发挥作用时调节切割的可能机制。