Département de Biochimie et Médecine Moléculaire, Université de Montréal, C.P. 6128, Succursale Centre-Ville, Montréal, QC H3C 3J7, Canada.
Nucleic Acids Res. 2014 Apr;42(7):4615-28. doi: 10.1093/nar/gkt1391. Epub 2014 Jan 21.
Lin28 inhibits the biogenesis of let-7 miRNAs through direct interactions with let-7 precursors. Previous studies have described seemingly inconsistent Lin28 binding sites on pre-let-7 RNAs. Here, we reconcile these data by examining the binding mechanism of Lin28 to the terminal loop of pre-let-7g (TL-let-7g) using biochemical and biophysical methods. First, we investigate Lin28 binding to TL-let-7g variants and short RNA fragments and identify three independent binding sites for Lin28 on TL-let-7g. We then determine that Lin28 assembles in a stepwise manner on TL-let-7g to form a stable 1:3 complex. We show that the cold-shock domain (CSD) of Lin28 is responsible for remodelling the terminal loop of TL-let-7g, whereas the NCp7-like domain facilitates the initial binding of Lin28 to TL-let-7g. This stable binding of multiple Lin28 molecules to the terminal loop of pre-let-7g extends to other precursors of the let-7 family, but not to other pre-miRNAs tested. We propose a model for stepwise assembly of the 1:1, 1:2 and 1:3 pre-let-7g/Lin28 complexes. Stepwise multimerization of Lin28 on pre-let-7 is required for maximum inhibition of Dicer cleavage for a least one member of the let-7 family and may be important for orchestrating the activity of the several factors that regulate let-7 biogenesis.
Lin28 通过与 let-7 前体的直接相互作用抑制 let-7 miRNAs 的生物发生。先前的研究描述了 pre-let-7 RNA 上似乎不一致的 Lin28 结合位点。在这里,我们通过使用生化和生物物理方法检查 Lin28 与 pre-let-7g 的末端环(TL-let-7g)的结合机制来协调这些数据。首先,我们研究了 Lin28 与 TL-let-7g 变体和短 RNA 片段的结合,并鉴定了 Lin28 在 TL-let-7g 上的三个独立结合位点。然后,我们确定 Lin28 以逐步的方式组装在 TL-let-7g 上形成稳定的 1:3 复合物。我们表明,Lin28 的冷休克结构域(CSD)负责重塑 TL-let-7g 的末端环,而 NCp7 样结构域促进 Lin28 与 TL-let-7g 的初始结合。这种多个 Lin28 分子对 pre-let-7g 末端环的稳定结合扩展到 let-7 家族的其他前体,但不适用于测试的其他 pre-miRNA。我们提出了一个逐步组装 1:1、1:2 和 1:3 pre-let-7g/Lin28 复合物的模型。Lin28 在 pre-let-7 上的逐步多聚化对于最大抑制 Dicer 切割至少一个 let-7 家族成员是必需的,并且可能对于协调调节 let-7 生物发生的几个因素的活性很重要。