Tazat Keren, Hector-Greene Melissa, Blobe Gerard C, Henis Yoav I
Department of Neurobiology, George S. Wise Faculty of Life Sciences, Tel Aviv University, Tel Aviv 69978, Israel.
Department of Medicine, Duke University Medical Center, Durham, NC 27708.
Mol Biol Cell. 2015 Oct 1;26(19):3535-45. doi: 10.1091/mbc.E15-04-0203. Epub 2015 Aug 12.
Transforming growth factor-β (TGF-β) receptor oligomerization has important roles in signaling. Complex formation among type I and type II (TβRI and TβRII) TGF-β receptors is well characterized and is essential for signal transduction. However, studies on their interactions with the type III TGF-β coreceptor (TβRIII) in live cells and their effects on TGF-β signaling are lacking. Here we investigated the homomeric and heteromeric interactions of TβRIII with TβRI and TβRII in live cells by combining IgG-mediated patching/immobilization of a given TGF-β receptor with fluorescence recovery after photobleaching studies on the lateral diffusion of a coexpressed receptor. Our studies demonstrate that TβRIII homo-oligomerization is indirect and depends on its cytoplasmic domain interactions with scaffold proteins (mainly GIPC). We show that TβRII and TβRI bind independently to TβRIII, whereas TβRIII augments TβRI/TβRII association, suggesting that TβRI and TβRII bind to TβRIII simultaneously but not as a complex. TβRIII expression inhibited TGF-β-mediated Smad2/3 signaling in MDA-MB-231 cell lines, an effect that depended on the TβRIII cytoplasmic domain and did not require TβRIII ectodomain shedding. We propose that independent binding of TβRI and TβRII to TβRIII competes with TβRI/TβRII signaling complex formation, thus inhibiting TGF-β-mediated Smad signaling.
转化生长因子-β(TGF-β)受体寡聚化在信号传导中具有重要作用。I型和II型(TβRI和TβRII)TGF-β受体之间的复合物形成已得到充分表征,并且对于信号转导至关重要。然而,关于它们在活细胞中与III型TGF-β共受体(TβRIII)的相互作用及其对TGF-β信号传导影响的研究却很缺乏。在此,我们通过将IgG介导的特定TGF-β受体的贴片/固定与对共表达受体侧向扩散的光漂白后荧光恢复研究相结合,研究了活细胞中TβRIII与TβRI和TβRII的同聚和异聚相互作用。我们的数据表明,TβRIII同聚化是间接的,并且取决于其胞质结构域与支架蛋白(主要是GIPC)的相互作用。我们发现TβRII和TβRI独立地与TβRIII结合,而TβRIII增强了TβRI/TβRII的缔合,这表明TβRI和TβRII同时与TβRIII结合,但不是作为复合物。TβRIII的表达抑制了MDA-MB-231细胞系中TGF-β介导的Smad2/3信号传导,这种作用取决于TβRIII的胞质结构域,并且不需要TβRIII胞外结构域的脱落。我们提出,TβRI和TβRII与TβRIII的独立结合与TβRI/TβRII信号复合物的形成竞争,从而抑制TGF-β介导的Smad信号传导。