Ramdas J, Muniyappa K
Department of Biochemistry, Indian Institute of Science, Bangalore, India.
Mol Gen Genet. 1995 Nov 27;249(3):336-48. doi: 10.1007/BF00290535.
The incorporation of DNA into nucleosomes and higher-order forms of chromatin in vivo creates difficulties with respect to its accessibility for cellular functions such as transcription, replication, repair and recombination. To understand the role of chromatin structure in the process of homologous recombination, we have studied the interaction of nucleoprotein filaments, comprised of RecA protein and ssDNA, with minichromosomes. Using this paradigm, we have addressed how chromatin structure affects the search for homologous DNA sequences, and attempted to distinguish between two mutually exclusive models of DNA-DNA pairing mechanisms. Paradoxically, we found that the search for homologous sequences, as monitored by unwinding of homologous or heterologous duplex DNA, was facilitated by nucleosomes, with no discernible effect on homologous pairing. More importantly, unwinding of minichromosomes required the interaction of nucleoprotein filaments and led to the accumulation of circular duplex DNA sensitive to nuclease P1. Competition experiments indicated that chromatin templates and naked DNA served as equally efficient targets for homologous pairing. These and other findings suggest that nucleosomes do not impede but rather facilitate the search for homologous sequences and establish, in accordance with one proposed model, that unwinding of duplex DNA precedes alignment of homologous sequences at the level of chromatin. The potential application of this model to investigate the role of chromosomal proteins in the alignment of homologous sequences in the context of cellular recombination is considered.
在体内,DNA整合入核小体及更高级形式的染色质会给其参与转录、复制、修复及重组等细胞功能带来困难。为了解染色质结构在同源重组过程中的作用,我们研究了由RecA蛋白和单链DNA组成的核蛋白细丝与微型染色体之间的相互作用。利用这一模式,我们探讨了染色质结构如何影响对同源DNA序列的搜索,并试图区分两种相互排斥的DNA-DNA配对机制模型。矛盾的是,我们发现,如通过同源或异源双链DNA解旋所监测的那样,核小体促进了对同源序列的搜索,而对同源配对没有明显影响。更重要的是,微型染色体的解旋需要核蛋白细丝的相互作用,并导致对核酸酶P1敏感的环状双链DNA的积累。竞争实验表明,染色质模板和裸露DNA作为同源配对的有效靶点的效率相同。这些及其他发现表明,核小体并不阻碍而是促进对同源序列的搜索,并根据一个提出的模型确定,在染色质水平上,双链DNA的解旋先于同源序列的排列。本文考虑了该模型在研究染色体蛋白在细胞重组背景下同源序列排列中的作用的潜在应用。