Nishant K T, Ravishankar H, Rao M R S
Department of Biochemistry, Indian Institute of Science, Bangalore 560012, India.
Mol Cell Biol. 2004 Jun;24(12):5620-34. doi: 10.1128/MCB.24.12.5620-5634.2004.
Our current knowledge of recombination hot spot activity in mammalian systems implicates a role for both the primary DNA sequence and the nature of the chromatin domain around it. In mice, the only recombination hot spots mapped to date have been confined to a cluster within the major histocompatibility complex (MHC) region. We present a high resolution analysis of a new recombination hot spot in the mouse genome which maps to mouse chromosome 8 C-D. Haplotype diversity analysis across 40 different strains of mice has enabled us to map recombination breakpoints to a 1-kb interval. This hot spot has a recombination intensity that is 10- to 100-fold above the genome average and has a mean gene conversion tract length of 371 bp. This meiotically active locus happens to be flanked by a transcribed region encoding a non-protein-coding RNA polymerase II transcript and the previously characterized repair site. Many of the primary DNA sequence features that have been reported for the mouse MHC hot spots are also shared by this hot spot locus and in addition, along with three other MHC hot spot loci, we show a new parallel feature of association of the crossover sites with the nuclear matrix.
我们目前对哺乳动物系统中重组热点活性的了解表明,主要DNA序列及其周围染色质结构域的性质都发挥了作用。在小鼠中,迄今为止定位到的唯一重组热点局限于主要组织相容性复合体(MHC)区域内的一个簇。我们对小鼠基因组中的一个新重组热点进行了高分辨率分析,该热点定位于小鼠8号染色体C-D区域。通过对40种不同品系小鼠的单倍型多样性分析,我们能够将重组断点定位到一个1千碱基的区间。这个热点的重组强度比基因组平均水平高10到100倍,平均基因转换片段长度为371碱基对。这个减数分裂活跃位点恰好位于一个编码非蛋白质编码RNA聚合酶II转录本的转录区域和先前已鉴定的修复位点之间。小鼠MHC热点所报道的许多主要DNA序列特征在这个热点位点也有,此外,连同其他三个MHC热点位点,我们展示了交叉位点与核基质关联的一个新的平行特征。