Brown Susie L, Kendrick Samantha
Biochemistry and Molecular Biology Department, University of Arkansas for Medical Sciences, Little Rock, AR 72205, USA.
Pharmaceuticals (Basel). 2021 Jan 27;14(2):96. doi: 10.3390/ph14020096.
Stretches of cytosine-rich DNA are capable of adopting a dynamic secondary structure, the i-motif. When within promoter regions, the i-motif has the potential to act as a molecular switch for controlling gene expression. However, i-motif structures in genomic areas of repetitive nucleotide sequences may play a role in facilitating or hindering expansion of these DNA elements. Despite research on the i-motif trailing behind the complementary G-quadruplex structure, recent discoveries including the identification of a specific i-motif antibody are pushing this field forward. This perspective reviews initial and current work characterizing the i-motif and providing insight into the biological function of this DNA structure, with a focus on how the i-motif can serve as a molecular target for developing new therapeutic approaches to modulate gene expression and extension of repetitive DNA.
富含胞嘧啶的DNA片段能够形成一种动态二级结构,即i-基序。当位于启动子区域时,i-基序有可能作为控制基因表达的分子开关。然而,重复核苷酸序列基因组区域中的i-基序结构可能在促进或阻碍这些DNA元件的扩增中发挥作用。尽管对i-基序的研究落后于互补的G-四链体结构,但包括鉴定出一种特异性i-基序抗体在内的最新发现正在推动该领域向前发展。本综述回顾了表征i-基序的初步和当前工作,并深入探讨了这种DNA结构的生物学功能,重点关注i-基序如何作为开发调节基因表达和重复DNA延伸的新治疗方法的分子靶点。