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Termination of TGF-P Superfamily Signaling Through SMAD Dephosphorylation - A Functional Genomic View

机译:通过SMAD去磷酸化终止TGF-P超家族信号转导-功能基因组视图

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摘要

The transforming growth factor-bate (TGF-P) and related growth factors activate a broad range of cellular responses in metazoan organisms via autocrine, paracrine, and endocrine modes. They play key roles in the pathogenesis of many diseases especially cancer, fibrotic diseases, autoimmune diseases and cardiovascular diseases. TGF-P receptor-mediated phosphorylation of R-SMADs represents the most critical step in the TGF- P signaling pathways that triggers a cascade of intracellular events from SMADcomplex assembly in the cytoplasm to transcriptional control in the nucleus. Conversely, dephosphorylation of R-SMADs is a key mechanism for terminating TGF- P signaling. Our labs have recently taken an integrated approach combining functional ge-nomics,biochemistry and development biology to describe the isolation and functional characterization of protein phosphatase PPM1A in controlling TGF- P signaling. This article briefly reviews how dynamic phosphorylation and dephosphorylation of SMADs controlor fine-tune the signaling strength and duration and ultimately the physiological consequences in TGF- P signaling.
机译:转化生长因子-bate(TGF-P)和相关生长因子通过自分泌,旁分泌和内分泌模式激活后生生物中广泛的细胞反应。它们在许多疾病的发病机理中起着关键作用,尤其是癌症,纤维化疾病,自身免疫性疾病和心血管疾病。 TGF-P受体介导的R-SMADs磷酸化代表TGF-P信号通路中最关键的一步,该信号通路触发了从细胞质中的SMADcomplex装配到细胞核转录控制的一系列细胞内事件。相反,R-SMAD的去磷酸化是终止TGF-P信号传导的关键机制。我们的实验室最近采取了一种结合功能基因组学,生物化学和发育生物学的综合方法来描述蛋白质磷酸酶PPM1A在控制TGF-P信号传导中的分离和功能表征。本文简要回顾了SMAD调控子的动态磷酸化和去磷酸化如何微调信号强度和持续时间,并最终调节TGF-P信号传导中的生理后果。

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