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不同的分子途径介导 Feingold 综合征小鼠模型中 Mycn 和 Myc 调节的 miR-17-92 微 RNA 作用。

Distinct molecular pathways mediate Mycn and Myc-regulated miR-17-92 microRNA action in Feingold syndrome mouse models.

机构信息

Endocrine Unit, Massachusetts General Hospital, and Harvard Medical School, Boston, 02114, MA, USA.

Musculoskeletal Integrity Program, Hospital for Special Surgery, New York, 10021, NY, USA.

出版信息

Nat Commun. 2018 Apr 10;9(1):1352. doi: 10.1038/s41467-018-03788-7.

Abstract

Feingold syndrome is a skeletal dysplasia caused by loss-of-function mutations of either MYCN (type 1) or MIR17HG that encodes miR-17-92 microRNAs (type 2). Since miR-17-92 expression is transcriptionally regulated by MYC transcription factors, it has been postulated that Feingold syndrome type 1 and 2 may be caused by a common molecular mechanism. Here we show that Mir17-92 deficiency upregulates TGF-β signaling, whereas Mycn-deficiency downregulates PI3K signaling in limb mesenchymal cells. Genetic or pharmacological inhibition of TGF-β signaling efficiently rescues the skeletal defects caused by Mir17-92 deficiency, suggesting that upregulation of TGF-β signaling is responsible for the skeletal defect of Feingold syndrome type 2. By contrast, the skeletal phenotype of Mycn-deficiency is partially rescued by Pten heterozygosity, but not by TGF-β inhibition. These results strongly suggest that despite the phenotypical similarity, distinct molecular mechanisms underlie the pathoetiology for Feingold syndrome type 1 and 2.

摘要

费恩戈尔德综合征是一种由 MYCN(1 型)或 MIR17HG(编码 miR-17-92 微小 RNA)的功能丧失性突变引起的骨骼发育不良。由于 miR-17-92 的表达受 MYC 转录因子的转录调控,因此推测费恩戈尔德综合征 1 型和 2 型可能由共同的分子机制引起。在这里,我们表明 Mir17-92 缺乏会上调 TGF-β 信号,而 Mycn 缺乏会下调肢间充质细胞中的 PI3K 信号。TGF-β 信号的遗传或药理学抑制可有效挽救 Mir17-92 缺乏引起的骨骼缺陷,表明 TGF-β 信号的上调是费恩戈尔德综合征 2 型骨骼缺陷的原因。相比之下,Mycn 缺乏的骨骼表型部分被 Pten 杂合性挽救,但不能被 TGF-β 抑制挽救。这些结果强烈表明,尽管表型相似,但费恩戈尔德综合征 1 型和 2 型的发病机制存在不同的分子机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1b14/5893605/c431d635047e/41467_2018_3788_Fig1_HTML.jpg

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