Myostatin-induced inhibition of the long noncoding RNA Malat1 is associated with decreased myogenesis

被引:82
作者
Watts, Rani [1 ]
Johnsen, Virginia L. [1 ]
Shearer, Jane [1 ]
Hittel, Dustin S. [1 ]
机构
[1] Univ Calgary, Fac Kinesiol, Calgary, AB T2N 1N4, Canada
来源
AMERICAN JOURNAL OF PHYSIOLOGY-CELL PHYSIOLOGY | 2013年 / 304卷 / 10期
基金
加拿大自然科学与工程研究理事会;
关键词
myostatin; myogenesis; Malat1; microarray; SKELETAL-MUSCLE; OVERWEIGHT MEN; CELL-CYCLE; DIFFERENTIATION; PROLIFERATION; EXPRESSION; MASS; CATTLE;
D O I
10.1152/ajpcell.00392.2012
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
Myostatin, a member of the transforming growth factor-beta (TGF-beta) superfamily of secreted proteins, is a potent negative regulator of myogenesis. Free myostatin induces the phosphorylation of the Smad family of transcription factors, which, in turn, regulates gene expression, via the canonical TGF-beta signaling pathway. There is, however, emerging evidence that myostatin can regulate gene expression independent of Smad signaling. As such, we acquired global gene expression data from the gastrocnemius muscle of C57BL/6 mice following a 6-day treatment with recombinant myostatin compared with vehicle-treated animals. Of the many differentially expressed genes, the myostatinassociated decrease (- 11.20-fold; P < 0.05) in the noncoding metastasis-associated lung adenocarcinoma transcript 1 (Malat1) was the most significant and the most intriguing because of numerous reports describing its novel role in regulating cell growth. We therefore sought to further characterize the role of Malat1 expression in skeletal muscle myogenesis. RT-PCR-based quantification of C2C12 and primary human skeletal muscle cells revealed a significant and persistent upregulation (4-to 7-fold; P < 0.05) of Malat1 mRNA during the differentiation of myoblasts into myotubes. Conversely, targeted knockdown of Malat1 using siRNA suppressed myoblast proliferation by arresting cell growth in the G(0)/G(1) phase. These results reveal Malat1 as novel downstream target of myostatin with a considerable ability to regulate myogenesis. The identification of new targets of myostatin will have important repercussions for regenerative biology through inhibition and/or reversal of muscle atrophy and wasting diseases.
引用
收藏
页码:C995 / C1001
页数:7
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