Engel M E, McDonnell M A, Law B K, Moses H L
Department of Cell Biology, Vanderbilt-Ingram Cancer Center, Vanderbilt University, Nashville, Tennessee 37232-6838, USA.
J Biol Chem. 1999 Dec 24;274(52):37413-20. doi: 10.1074/jbc.274.52.37413.
SMAD and JNK cascades are essential components of the transforming growth factor-beta (TGF-beta) signaling machinery and are implicated in common transcriptional responses. However, the relationship of these pathways to one another downstream of the TGF-beta receptor complex is unknown. We show that JNK is rapidly activated by TGF-beta in a SMAD-independent manner and phosphorylates Smad3 outside its -SSXS motif. Smad3 phosphorylation by JNK facilitates both its activation by the TGF-beta receptor complex and its nuclear accumulation. JNK regulates SMAD- and TGF-beta-mediated transcriptional responses, yet JNK activators only partially stimulate transcriptional responses characteristic of TGF-beta without coincident SMAD pathway activation. These results suggest an interdependent relationship between the JNK and SMAD pathways in TGF-beta-mediated transcription.
SMAD和JNK级联是转化生长因子-β(TGF-β)信号传导机制的重要组成部分,并参与常见的转录反应。然而,这些途径在TGF-β受体复合物下游彼此之间的关系尚不清楚。我们发现,JNK以不依赖SMAD的方式被TGF-β快速激活,并在Smad3的-SSXS基序之外使其磷酸化。JNK介导的Smad3磷酸化促进了其被TGF-β受体复合物激活以及其核内积累。JNK调节SMAD和TGF-β介导的转录反应,然而JNK激活剂在没有同时激活SMAD途径的情况下,仅部分刺激TGF-β特有的转录反应。这些结果表明,在TGF-β介导的转录过程中,JNK和SMAD途径之间存在相互依存关系。