MBNL 剪接因子调节骨骼肌的微转录组。

MBNL splicing factors regulate the microtranscriptome of skeletal muscles.

机构信息

Laboratory of Gene Therapy, Department of Gene Expression, Institute of Molecular Biology and Biotechnology, Faculty of Biology, Adam Mickiewicz University, Uniwersytetu Poznanskiego 6, 61-614 Poznań, Poland.

Institute of Human Biology and Evolution, Faculty of Biology, Adam Mickiewicz University, Uniwersytetu Poznanskiego 6, 61-614 Poznań, Poland.

出版信息

Nucleic Acids Res. 2024 Oct 28;52(19):12055-12073. doi: 10.1093/nar/gkae774.

Abstract

Muscleblind like splicing regulators (MBNLs) govern various RNA-processing steps, including alternative splicing, polyadenylation, RNA stability and mRNA intracellular localization. In myotonic dystrophy type 1 (DM1), the most common muscular dystrophy in adults, MBNLs are sequestered on toxic RNA containing expanded CUG repeats, which leads to disruption of MBNL-regulated processes and disease features of DM1. Herein, we show the significance of MBNLs in regulating microtranscriptome dynamics during the postnatal development of skeletal muscles and in microRNA (miRNA) misregulation observed in mouse models and patients with DM1. We identify multiple miRNAs sensitive to MBNL proteins insufficiency and reveal that many of them were postnatally regulated, which correlates with increases in the activity of these proteins during this process. In adult Mbnl1-knockout mice, miRNA expression exhibited an adult-to-newborn shift. We hypothesize that Mbnl1 deficiency influences miRNA levels through a combination of mechanisms. First, the absence of Mbnl1 protein results in alterations to the levels of pri-miRNAs. Second, MBNLs affect miRNA biogenesis by regulating the alternative splicing of miRNA primary transcripts. We propose that the expression of miR-23b, miR-27b and miR-24-1, produced from the same cluster, depends on the MBNL-sensitive inclusion of alternative exons containing miRNA sequences. Our findings suggest that MBNL sequestration in DM1 is partially responsible for altered miRNA activity. This study provides new insights into the biological roles and functions of MBNL proteins as regulators of miRNA expression in skeletal muscles.

摘要

肌萎缩性侧索硬化症样剪接调节因子(MBNLs)调控多种 RNA 加工步骤,包括可变剪接、多聚腺苷酸化、RNA 稳定性和 mRNA 细胞内定位。在 1 型肌强直性营养不良(DM1)中,MBNLs 被隔离在含有扩展的 CUG 重复的毒性 RNA 上,这导致 MBNL 调节的过程和 DM1 的疾病特征被破坏。在这里,我们展示了 MBNLs 在调节骨骼肌出生后发育过程中的微观转录组动态以及在 DM1 小鼠模型和患者中观察到的 microRNA(miRNA)失调中的重要性。我们确定了多个对 MBNL 蛋白不足敏感的 miRNAs,并揭示了许多 miRNAs 是在出生后被调控的,这与这些蛋白在该过程中的活性增加有关。在成年 Mbnl1 敲除小鼠中,miRNA 表达表现出从成年到新生的转变。我们假设 Mbnl1 缺乏通过多种机制影响 miRNA 水平。首先,Mbnl1 蛋白的缺失导致 pri-miRNA 水平的改变。其次,MBNLs 通过调节 miRNA 初级转录物的可变剪接来影响 miRNA 的生物发生。我们提出,同一簇产生的 miR-23b、miR-27b 和 miR-24-1 的表达依赖于包含 miRNA 序列的可变外显子的 MBNL 敏感包含。我们的发现表明,DM1 中的 MBNL 隔离部分导致了 miRNA 活性的改变。本研究为 MBNL 蛋白作为骨骼肌中 miRNA 表达的调节因子的生物学作用和功能提供了新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6999/11514471/fc0d1e074ed0/gkae774figgra1.jpg

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