Key laboratory of Freshwater Aquatic Genetic Resources, Shanghai Ocean University, Ministry of Agriculture, Shanghai 201306, China.
Comp Biochem Physiol B Biochem Mol Biol. 2012 Mar;161(3):226-32. doi: 10.1016/j.cbpb.2011.11.009. Epub 2011 Nov 28.
MiR-1, miR-133a, and miR-206a have been identified as muscle-specific miRNAs. They play multiple crucial roles in the regulation of muscle development. Here, we show that these miRNAs were differentially expressed during the larval development of flounder, and specifically expressed in skeletal muscle and heart in adult tissues/organs. The expression levels of these miRNAs were significantly changed by thyroid hormone (TH) or thiourea (TU) treatment during metamorphosis from 17 dph (days post hatching) to 42 dph. In addition, the expression levels of MyoD and Myf5 mRNAs markedly increased at 14 dph (pre-metamorphosis) compared to metamorphic stages, and their expression levels are far above the myogenin during larval development. Moreover, these MRFs (myogenic regulatory factors) expression were directly or indirectly regulated by thyroid hormone or thiourea during metamorphosis. All the results suggest that miRNAs and MRFs might be involved in signaling pathway of TH or TU-mediated flounder metamorphosis.
miR-1、miR-133a 和 miR-206a 被鉴定为肌肉特异性 miRNAs。它们在肌肉发育的调控中发挥着多种关键作用。在这里,我们表明这些 miRNA 在牙鲆幼虫发育过程中存在差异表达,并在成年组织/器官的骨骼肌和心脏中特异性表达。在从 17 日龄(孵化后天数)到 42 日龄的变态过程中,甲状腺激素(TH)或硫脲(TU)处理会显著改变这些 miRNA 的表达水平。此外,MyoD 和 Myf5 mRNA 的表达水平在 14 日龄(变态前)与变态阶段相比显著增加,并且它们的表达水平在幼虫发育过程中远远高于肌生成素。此外,这些 MRFs(成肌调节因子)的表达在变态过程中直接或间接受到甲状腺激素或硫脲的调节。所有结果表明,miRNAs 和 MRFs 可能参与了 TH 或 TU 介导的牙鲆变态的信号通路。