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MicroRNA-3906 通过调节斑马鱼胚胎中的靶基因 homer-1b 来调控快肌分化。

MicroRNA-3906 regulates fast muscle differentiation through modulating the target gene homer-1b in zebrafish embryos.

机构信息

Institute of Molecular and Cellular Biology, National Taiwan University, Taipei, Taiwan.

出版信息

PLoS One. 2013 Jul 31;8(7):e70187. doi: 10.1371/journal.pone.0070187. Print 2013.

Abstract

A microRNA, termed miR-In300 or miR-3906, suppresses the transcription of myf5 through silencing dickkopf-related protein 3 (dkk3r/dkk3a) during early development when myf5 is highly transcribed, but not at late stages when myf5 transcription is reduced. Moreover, after 24 hpf, when muscle cells are starting to differentiate, Dkk3a could not be detected in muscle tissue at 20 hpf. To explain these reversals, we collected embryos at 32 hpf, performed assays, and identified homer-1b, which regulates calcium release from sarcoplasmic reticulum, as the target gene of miR-3906. We further found that either miR-3906 knockdown or homer-1b overexpression increased expressions of fmhc4 and atp2a1 of calcium-dependent fast muscle fibrils, but not slow muscle fibrils, and caused a severe disruption of sarcomeric actin and Z-disc structure. Additionally, compared to control embryos, the intracellular calcium concentration ([Ca(2+)]i) of these treated embryos was increased as high as 83.9-97.3% in fast muscle. In contrast, either miR-3906 overexpression or homer-1b knockdown caused decreases of [Ca(2+)]i and, correspondingly, defective phenotypes in fast muscle. These defects could be rescued by inducing homer-1b expression at later stage. These results indicate that miR-3906 controls [Ca(2+)]i homeostasis in fast muscle through fine tuning homer-1b expression during differentiation to maintain normal muscle development.

摘要

一种称为 miR-In300 或 miR-3906 的 microRNA 通过沉默 dickkopf 相关蛋白 3(dkk3r/dkk3a) 来抑制 myf5 的转录,这发生在早期发育时 myf5 高度转录,但不在晚期转录减少时发生。此外,在 24 hpf 之后,当肌肉细胞开始分化时,在 20 hpf 时肌肉组织中无法检测到 Dkk3a。为了解释这些逆转,我们在 32 hpf 时收集胚胎,进行测定,并鉴定出 Homer-1b,它调节肌浆网钙释放,是 miR-3906 的靶基因。我们进一步发现,miR-3906 敲低或 Homer-1b 过表达均增加了钙依赖性快肌纤维的 fmhc4 和 atp2a1 的表达,但不增加慢肌纤维的表达,并导致肌节肌动蛋白和 Z 盘结构严重破坏。此外,与对照胚胎相比,这些处理胚胎的细胞内钙浓度([Ca(2+)]i)在快肌中增加高达 83.9-97.3%。相反,miR-3906 过表达或 Homer-1b 敲低导致[Ca(2+)]i 降低,相应地导致快肌缺陷表型。通过在后期诱导 Homer-1b 表达可以挽救这些缺陷。这些结果表明,miR-3906 通过在分化过程中精细调节 Homer-1b 的表达来控制快肌中的[Ca(2+)]i 稳态,以维持正常的肌肉发育。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/67b6/3729524/4cf78d9a4624/pone.0070187.g001.jpg

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