CNRS, Université Paris Cité, UPR 9080, Laboratoire de Biochimie Théorique, 13 rue Pierre et Marie Curie, Paris, France; Institut Pasteur, Université Paris Cité, Group Fungal Epigenomics, Paris, France.
Institut Pasteur, Université Paris Cité, Group Fungal Epigenomics, Paris, France.
Trends Genet. 2023 Jul;39(7):575-585. doi: 10.1016/j.tig.2023.01.008. Epub 2023 Feb 15.
Recombination-independent homologous pairing represents a prominent yet largely enigmatic feature of chromosome biology. As suggested by studies in the fungus Neurospora crassa, this process may be based on the direct pairing of homologous DNA molecules. Theoretical search for the DNA structures consistent with those genetic results has led to an all-atom model in which the B-DNA conformation of the paired double helices is strongly shifted toward C-DNA. Coincidentally, C-DNA also features a very shallow major groove that could permit initial homologous contacts without atom-atom clashes. The hereby conjectured role of C-DNA in homologous pairing should encourage the efforts to discover its biological functions and may also clarify the mechanism of recombination-independent recognition of DNA homology.
非重组依赖性同源配对是染色体生物学的一个显著但很大程度上仍未解决的特征。正如在真菌粗糙脉孢菌中的研究表明的那样,这个过程可能基于同源 DNA 分子的直接配对。对与这些遗传结果一致的 DNA 结构的理论搜索导致了一个全原子模型,其中配对双链的 B-DNA 构象强烈地向 C-DNA 转变。巧合的是,C-DNA 也具有非常浅的大沟,这可以允许在没有原子碰撞的情况下进行初始同源接触。在此推测的 C-DNA 在同源配对中的作用应该鼓励努力发现其生物学功能,也可能阐明非重组依赖性 DNA 同源性识别的机制。