...
首页> 外文期刊>The FASEB Journal >Fluid shear stress generates a unique signaling response by activating multiple TGFβ family type I receptors in osteocytes
【24h】

Fluid shear stress generates a unique signaling response by activating multiple TGFβ family type I receptors in osteocytes

机译:通过在骨细胞中激活多个TGFβ家族类型I受体产生液体剪切应力产生唯一的信号响应

获取原文
   

获取外文期刊封面封底 >>

       

摘要

Bone is a dynamic tissue that constantly adapts to changing mechanical demands. The transforming growth factor beta (TGFβ) signaling pathway plays several important roles in maintaining skeletal homeostasis by both coupling the bone‐forming and bone‐resorbing activities of osteoblasts and osteoclasts and by playing a causal role in the anabolic response of bone to applied loads. However, the extent to which the TGFβ signaling pathway in osteocytes is directly regulated by fluid shear stress (FSS) is unknown, despite work suggesting that fluid flow along canaliculi is a dominant physical cue sensed by osteocytes following bone compression. To investigate the effects of FSS on TGFβ signaling in osteocytes, we stimulated osteocytic OCY454 cells cultured within a microfluidic platform with FSS. We find that FSS rapidly upregulates Smad2/3 phosphorylation and TGFβ target gene expression, even in the absence of added TGFβ. Indeed, relative to treatment with TGFβ, FSS induced a larger increase in levels of pSmad2/3 and Serpine1 that persisted even in the presence of a TGFβ receptor type I inhibitor. Our results show that FSS stimulation rapidly induces phosphorylation of multiple TGFβ family R‐Smads by stimulating multimerization and concurrently activating several TGFβ and BMP type I receptors, in a manner that requires the activity of the corresponding ligand. While the individual roles of the TGFβ and BMP signaling pathways in bone mechanotransduction remain unclear, these results implicate that FSS activates both pathways to generate a downstream response that differs from that achieved by either ligand alone.
机译:骨是一种动态组织,不断适应改变机械需求。转化生长因子β(TGFβ)信号传导途径在维持骨架稳态上,通过偶联成骨细胞和骨细胞的骨形成和骨干化活性,并通过在骨骼的合成代谢反应中发挥因果作用,在施加载荷中发挥因果作用。然而,骨细胞中TGFβ信号传导途径的程度直接通过流体剪切应力(FSS)来调节,尽管有效地提示沿CANALICULI的流体流动是由骨压缩后骨细胞感测的主要物理提示。为了探讨FSS对骨细胞中TGFβ信号传导的影响,我们用FSS刺激了在微流体平台内培养的骨细胞OCY454细胞。我们发现FSS迅速上调Smad2 / 3磷酸化和TGFβ靶基因表达,即使在没有添加的TGFβ的情况下也是如此。实际上,相对于用TGFβ治疗,即使在存在TGFβ受体类型I抑制剂的情况下,FSS也诱导持续的PSMAD2 / 3和蛇纹碱的水平较大增加。我们的结果表明,FSS刺激通过刺激多聚化并同时激活几种TGFβ和BMP型I受体,促进多种TGFβ族R-Smad的磷酸化,以需要相应配体的活性的方式。虽然TGFβ和BMP信号传导途径的个体作用仍然尚不清楚,但这些结果涉及FSS激活两种途径以产生不同于单独的配体实现的下游响应。

著录项

获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号