Pagiatakis Christina, Sun Dandan, Tobin Stephanie W, Miyake Tetsuaki, McDermott John C
Department of Biology, York University, Toronto, ON, Canada.
Muscle Health Research Centre (MHRC), York University, Toronto, ON, Canada.
FEBS J. 2017 Jun;284(11):1644-1656. doi: 10.1111/febs.14070. Epub 2017 Apr 20.
Vascular smooth muscle cells (VSMCs) do not terminally differentiate; they modulate their phenotype between proliferative and differentiated states, which is a major factor contributing to vascular diseases. TGFβ signalling has been implicated in inducing VSMC differentiation, although the exact mechanism remains largely unknown. Our goal was to assess the network of transcription factors involved in the induction of VSMC differentiation, and to determine the role of TAZ in promoting the quiescent VSMC phenotype. TGFβ robustly induces VSMC marker genes in 10T1/2 mouse embryonic fibroblast cells and the potent transcriptional regulator TAZ has been shown to retain Smad complexes on DNA. Thus, the role of TAZ in regulation of VSMC differentiation was studied. Using primary aortic VSMCs coupled with siRNA-mediated gene silencing, our studies reveal that TAZ is required for TGFβ induction of smooth muscle genes and is also required for the differentiated VSMC phenotype; synergy between TAZ and SRF, and TAZ and Myocardin (MyoC856), in regulating smooth muscle gene activation was observed. These data provide evidence of components of a novel signalling pathway that links TGFβ signalling to induction of smooth muscle genes through a mechanism involving regulation of TAZ and SRF proteins. In addition, we report a physical interaction of TAZ and MyoC856. These observations elucidate a novel level of control of VSMC induction which may have implications for vascular diseases and congenital vascular malformations.
血管平滑肌细胞(VSMCs)不会终末分化;它们在增殖状态和分化状态之间调节其表型,这是导致血管疾病的一个主要因素。尽管确切机制在很大程度上仍不清楚,但转化生长因子β(TGFβ)信号通路已被认为与诱导VSMC分化有关。我们的目标是评估参与诱导VSMC分化的转录因子网络,并确定转录共激活因子TAZ在促进静止VSMC表型中的作用。TGFβ能强烈诱导10T1/2小鼠胚胎成纤维细胞中的VSMC标记基因,并且强效转录调节因子TAZ已被证明能使Smad复合物保留在DNA上。因此,我们研究了TAZ在VSMC分化调控中的作用。通过将原代主动脉VSMCs与小干扰RNA(siRNA)介导的基因沉默相结合,我们的研究表明,TAZ是TGFβ诱导平滑肌基因所必需的,也是分化的VSMC表型所必需的;观察到TAZ与血清反应因子(SRF)以及TAZ与心肌素(MyoC856)在调节平滑肌基因激活方面存在协同作用。这些数据为一条新的信号通路的组成成分提供了证据,该信号通路通过一种涉及TAZ和SRF蛋白调控的机制将TGFβ信号通路与平滑肌基因的诱导联系起来。此外,我们报道了TAZ与MyoC856之间存在物理相互作用。这些观察结果阐明了VSMC诱导调控的一个新层面,这可能对血管疾病和先天性血管畸形具有重要意义。