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SHP2 regulates skeletal cell fate by modifying SOX9 expression and transcriptional activity

机译:SHP2通过修饰SOX9表达和转录活性来调节骨骼细胞的命运

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摘要

Chondrocytes and osteoblasts differentiate from a common mesenchymal precursor, the osteochondroprogenitor (OCP), and help build the vertebrate skeleton. The signaling pathways that control lineage commitment for OCPs are incompletely understood. We asked whether the ubiquitously expressed protein-tyrosine phosphatase SHP2 (encoded by Ptpn11) affects skeletal lineage commitment by conditionally deleting Ptpn11 in mouse limb and head mesenchyme using “Cre-loxP”-mediated gene excision. SHP2-deficient mice have increased cartilage mass and deficient ossification, suggesting that SHP2-deficient OCPs become chondrocytes and not osteoblasts. Consistent with these observations, the expression of the master chondrogenic transcription factor SOX9 and its target genes Acan, Col2a1, and Col10a1 were increased in SHP2-deficient chondrocytes, as revealed by gene expression arrays, qRT-PCR, in situ hybridization, and immunostaining. Mechanistic studies demonstrate that SHP2 regulates OCP fate determination via the phosphorylation and SUMOylation of SOX9, mediated at least in part via the PKA signaling pathway. Our data indicate that SHP2 is critical for skeletal cell lineage differentiation and could thus be a pharmacologic target for bone and cartilage regeneration.
机译:软骨细胞和成骨细胞与常见的间充质前体骨软骨细胞生成剂(OCP)有所区别,并有助于构建脊椎动物骨骼。控制OCP沿袭承诺的信号通路尚不完全清楚。我们询问是否普遍表达的蛋白酪氨酸磷酸酶SHP2(由Ptpn11编码)通过使用“ Cre-loxP”介导的基因切除条件性删除小鼠肢体和头部间充质中的Ptpn11是否影响骨骼谱系定型。 SHP2缺陷型小鼠的软骨质量增加且骨化不足,这表明SHP2缺陷型OCP变成软骨细胞而不是成骨细胞。与这些观察结果一致,如基因表达阵列,qRT-PCR,原位杂交和免疫染色所揭示,在缺乏SHP2的软骨细胞中,软骨形成主转录因子SOX9及其靶基因Acan,Col2a1和Col10a1的表达增加。机理研究表明,SHP2通过SOX9的磷酸化和SUMOylation至少部分通过PKA信号传导途径调节OCP命运的确定。我们的数据表明SHP2对于骨骼细胞谱系分化至关重要,因此可能成为骨骼和软骨再生的药理学靶标。

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