Department of Chemistry, The Chinese University of Hong Kong, Shatin, Hong Kong.
Signal Transduct Target Ther. 2016 Dec 2;1:16028. doi: 10.1038/sigtrans.2016.28. eCollection 2016.
CCTG repeat expansions in intron 1 of the cellular nucleic acid-binding protein gene are associated with myotonic dystrophy type 2. Recently, we have reported a novel mini-dumbbell (MDB) structure formed by two CCTG or TTTA repeats, which potentially has a critical role in repeat expansions. Here we present a mechanism, called the competing MDB mechanism, to explain how the formation of MDB can lead to efficient mismatch repair (MMR) escape and thus CCTG repeat expansions during DNA replication. In a long tract of CCTG repeats, two competing MDBs can be formed in any segment of three repeats. Fast exchange between these MDBs will make the commonly occupied repeat behave like a mini-loop. Further participations of the 5'- or 3'-flanking repeat in forming competing MDBs will make the mini-loop shift in the 5'- or 3'-direction, thereby providing a pathway for the mini-loop to escape from MMR. To avoid the complications due to the formation of hairpin conformers in longer CCTG repeats, we made use of TTTA repeats as model sequences to demonstrate the formation of competing MDBs and shifting of mini-loop in a long tract of repeating sequence.
细胞核酸结合蛋白基因 1 号内含子中的 CCTG 重复扩展与肌强直性营养不良 2 型有关。最近,我们报道了一种由两个 CCTG 或 TTTA 重复形成的新型微型哑铃(MDB)结构,它可能在重复扩展中具有关键作用。在这里,我们提出了一种称为竞争 MDB 机制的机制,以解释 MDB 的形成如何导致在 DNA 复制过程中有效逃避错配修复(MMR)并因此导致 CCTG 重复扩展。在长的 CCTG 重复序列中,两个竞争的 MDB 可以在三个重复的任何片段中形成。这些 MDB 之间的快速交换将使常见占据的重复序列表现得像一个微型环。5' 或 3' 侧翼重复序列进一步参与形成竞争的 MDB 将使微型环在 5' 或 3' 方向上移动,从而为微型环逃避 MMR 提供了途径。为了避免由于较长 CCTG 重复序列中发夹构象的形成而产生的复杂情况,我们利用 TTTA 重复序列作为模型序列来演示在长重复序列中竞争 MDB 的形成和微型环的移动。