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首页> 外文期刊>Journal of cellular biochemistry. >Ski inhibits TGF-β/phospho-Smad3 signaling and accelerates hypertrophic differentiation in chondrocytes
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Ski inhibits TGF-β/phospho-Smad3 signaling and accelerates hypertrophic differentiation in chondrocytes

机译:滑雪抑制TGF-β/ phospho-Smad3信号传导并加速软骨细胞的肥大分化

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Since transforming growing factor-β (TGF-β)/Smad signaling inhibits chondrocyte maturation, endogenous negative regulators of TGF-β signaling are likely also important regulators of the chondrocyte differentiation process. One such negative regulator, Ski, is an oncoprotein that is known to inhibit TGF-β/Smad3 signaling via its interaction with phospho-Smad3 and recruitment of histone deacetylases (HDACs) to the DNA binding complex. Based on this, we hypothesized that Ski inhibits TGF-β signaling and accelerates maturation in chondrocytes via recruitment of HDACs to transcriptional complexes containing Smads. We tested this hypothesis in chick upper sternal chondrocytes (USCs), where gain and loss of Ski expression experiments were performed. Over-expression of Ski not only reversed the inhibitory effect of TGF-β on the expression of hypertrophic marker genes such as type X collagen (colX) and osteocalcin, it induced these genes basally as well. Conversely, knockdown of Ski by RNA interference led to a reduction of colX and osteocalcin expression under basal conditions. Furthermore, Ski blocked TGF-β induction of cyclinD1 and caused a basal up-regulation of Runx2, consistent with the observed acceleration of hypertrophy. Regarding mechanism, not only does Ski associate with phospho-Smad2 and 3, but its association with phospho-Smad3 is required for recruitment of HDAC4 and 5. Implicating this recruitment of HDACs in the phenotypic effects of Ski in chondrocytes, the HDAC inhibitor SAHA reversed the up-regulation of colX and osteocalcin in Ski over-expressing cells. These results suggest that inhibition of TGF-β signaling by Ski, which involves its association with phospho-Smad3 and recruitment of HDAC4 and 5, leads to accelerated chondrocyte differentiation.
机译:由于转化生长因子-β(TGF-β)/ Smad信号传导抑制软骨细胞的成熟,因此TGF-β信号传导的内源性负调控因子也可能是软骨细胞分化过程的重要调控因子。一种这样的负调节剂,Ski,是一种癌蛋白,已知其通过与磷酸Smad3相互作用以及将组蛋白脱乙酰基酶(HDAC)募集到DNA结合复合物中来抑制TGF-β/ Smad3信号传导。基于此,我们假设Ski通过将HDAC募集到含有Smads的转录复合物中来抑制TGF-β信号传导并加速软骨细胞的成熟。我们在鸡上胸骨软骨细胞(USCs)中测试了这一假设,在其中进行了Ski表达实验的得失。 Ski的过度表达不仅逆转了TGF-β对肥大标记基因(如X型胶原(colX)和骨钙素)表达的抑制作用,而且还从基础上诱导了这些基因。相反,在基础条件下,通过RNA干扰敲除Ski导致colX和骨钙素表达降低。此外,Ski阻止了TGF-β对cyclinD1的诱导,并导致Runx2的基础上调,与观察到的肥大加速一致。关于机制,Ski不仅与磷酸Smad2和3缔合,而且其与磷酸Smad3的缔合是HDAC4和5募集所必需的。HDAC抑制剂SAHA逆转了HDAC的募集与软骨在软骨细胞表型效应中的作用。滑雪过表达细胞中colX和骨钙素的上调。这些结果表明,Ski对TGF-β信号的抑制涉及其与磷酸Smad3的结合以及HDAC4和5的募集,从而加速了软骨细胞的分化。

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