Molecular Cardiology Research Institute, Tufts Medical Center, Boston, Massachusetts 02111, USA.
J Biol Chem. 2012 Nov 9;287(46):38656-64. doi: 10.1074/jbc.M112.390898. Epub 2012 Sep 17.
The signaling pathway mediated by BMPs plays an essential role during development as well as the maintenance of homeostasis in adult. Aberrant activation or inactivation of BMP signaling can lead to developmental defects and various human disorders. To fine-tune its activity, BMP signaling is regulated both positively and negatively by extrinsic and intrinsic regulatory factors that modulate binding of ligand to the receptors, and the activity of receptors and their dedicated signal transducers, the Smad proteins. Upon BMP binding to the receptor complex, Smad proteins translocate to the nucleus and modulate gene expression transcriptionally by directly associating with the promoter region of target genes, or post-transcriptionally through modulation of microRNA (miRNA) synthesis. In this study, we demonstrate that BMP signaling down-regulates transcription of the miRNA-302∼367 gene cluster. We show that the type II BMP receptor (BMPRII) is a novel target of miR-302. Upon overexpression, miR-302 targets a partially complementary sequence localized in the 3'-untranslated region (UTR) of BMPRII transcripts and leads to destabilization of the transcripts and down-regulation of BMP signaling. We propose that the negative regulatory loop of BMP4-miR-302-BMPRII is a potential mechanism for the maintenance and fine-tuning of the BMP signaling pathway in various systems.
BMPs 介导的信号通路在发育过程中以及在成人的体内平衡维持中起着至关重要的作用。BMP 信号的异常激活或失活可导致发育缺陷和各种人类疾病。为了精细调节其活性,BMP 信号受到外在和内在调节因子的正向和负向调节,这些调节因子调节配体与受体的结合,以及受体及其专用信号转导子 Smad 蛋白的活性。在 BMP 与受体复合物结合后,Smad 蛋白易位到细胞核,并通过直接与靶基因的启动子区域结合或通过调节 microRNA (miRNA) 合成来转录后调节基因表达。在这项研究中,我们证明 BMP 信号下调 miRNA-302∼367 基因簇的转录。我们表明,II 型 BMP 受体 (BMPRII) 是 miR-302 的一个新靶标。过表达时,miR-302 靶向 BMPRII 转录本 3'-非翻译区 (UTR) 中局部互补的序列,并导致转录本的不稳定性和 BMP 信号的下调。我们提出,BMP4-miR-302-BMPRII 的负反馈调节环是各种系统中 BMP 信号通路维持和精细调节的潜在机制。