Raghavan Sathees C, Houston Sabrina, Hegde Balachandra G, Langen Ralf, Haworth Ian S, Lieber Michael R
Norris Comprehensive Cancer Center, University of Southern California Keck School of Medicine, Los Angeles, CA 90033, USA.
J Biol Chem. 2004 Oct 29;279(44):46213-25. doi: 10.1074/jbc.M406280200. Epub 2004 Aug 23.
The t(14;18) translocation involving the Ig heavy chain locus and the BCL-2 gene is the single most common chromosomal translocation in human cancer. Recently we reported in vitro and in vivo chemical probing data indicating that the 150-bp major breakpoint region (Mbr), which contains three breakage subregions (hotspots) (known as peaks I, II, and III), has single-stranded character and hence a non-B DNA conformation. Although we could document the non-B DNA structure formation at the bcl-2 Mbr, the structural studies were limited to chemical probing. Therefore, in the present study, we used multiple methods including circular dichroism to detect the non-B DNA at the bcl-2 Mbr. We established a new gel shift method to detect the altered structure at neutral pH on shorter DNA fragments containing the bcl-2 Mbr and analyzed the fine structural features. We found that the single-stranded region in the non-B DNA structure observed is stable for days and is asymmetric with respect to the Watson and Crick strands. It could be detected by oligomer probing, a bisulfite modification assay, or a P1 nuclease assay. We provide evidence that two different non-B conformations exist at peak I in addition to the single one observed at peak III. Finally we used mutagenesis and base analogue incorporation to show that the non-B DNA structure formation requires Hoogsteen pairing. These findings place major constraints on the location and nature of the non-B conformations assumed at peaks I and III of the bcl-2 Mbr.
涉及免疫球蛋白重链基因座和BCL-2基因的t(14;18)易位是人类癌症中最常见的染色体易位。最近,我们报道了体外和体内化学探测数据,表明包含三个断裂子区域(热点)(称为峰I、II和III)的150碱基对主要断裂点区域(Mbr)具有单链特征,因此具有非B型DNA构象。尽管我们能够证明bcl-2 Mbr处非B型DNA结构的形成,但结构研究仅限于化学探测。因此,在本研究中,我们使用了包括圆二色性在内的多种方法来检测bcl-2 Mbr处的非B型DNA。我们建立了一种新的凝胶迁移方法,以检测在中性pH条件下,含有bcl-2 Mbr的较短DNA片段上的结构变化,并分析其精细结构特征。我们发现,观察到的非B型DNA结构中的单链区域在数天内是稳定的,并且相对于沃森链和克里克链是不对称的。它可以通过寡聚物探测、亚硫酸氢盐修饰分析或P1核酸酶分析来检测。我们提供的证据表明,除了在峰III处观察到的单一非B型构象外,在峰I处还存在两种不同的非B型构象。最后,我们使用诱变和碱基类似物掺入来表明非B型DNA结构的形成需要Hoogsteen配对。这些发现对bcl-2 Mbr峰I和峰III处假定的非B型构象的位置和性质施加了主要限制。