Imoto Seiyu, Sugiyama Kenji, Sekine Yuichi, Matsuda Tadashi
Department of Immunology, Graduate School of Pharmaceutical Sciences, Hokkaido University, Sapporo, Japan.
FEBS Lett. 2005 May 23;579(13):2853-62. doi: 10.1016/j.febslet.2005.04.023. Epub 2005 Apr 26.
Sma and MAD-related protein 3 (Smad3) plays a key role in the intracellular signaling of the transforming growth factor-beta (TGF-beta) family of growth factors, which exhibits a diverse set of cellular responses, including cell proliferation and differentiation. Smad3 has the N-terminal Mad homology (MH) 1 and the C-terminal MH2 domains. MH2 domain is essential for the TGF-beta-induced transcriptional activation, because the MH2 domain of Smad3 is involved in the interactions with several transcriptional cofactors as well as the type I TGF-beta receptor (TbetaR-I). In this study, we examined the roles for four lysine residues (Lys-333, Lys-341, Lys-378, and Lys-409) in the Smad3 MH2 domain. Mutation of the lysine (K)-378 to arginine (R) (K378R) abolished the interaction with TbetaR-I, phosphorylation, transcriptional activation by an active TbetaR-I. The K341R mutant also failed to stimulate TGF-beta-induced transcription by resting in the cytoplasm. However, the K409R mutant showed a higher transcriptional activity by stronger interactions with co-activators, such as p300/CBP. Furthermore, both the K341R and K378R mutants act as dominant-negative inhibitors in the TGF-beta-induced target genes of endogenous TGF-beta signal. Thus, the lysine residues of Smad3 MH2 domain play important roles in the transcriptional regulation of TGF-beta signals through TbetaR-I.
小母马相关蛋白3(Smad3)在转化生长因子-β(TGF-β)家族生长因子的细胞内信号传导中起关键作用,该家族表现出多种细胞反应,包括细胞增殖和分化。Smad3具有N端的Mad同源(MH)1结构域和C端的MH2结构域。MH2结构域对于TGF-β诱导的转录激活至关重要,因为Smad3的MH2结构域参与与几种转录辅因子以及I型TGF-β受体(TbetaR-I)的相互作用。在本研究中,我们研究了Smad3 MH2结构域中四个赖氨酸残基(Lys-333、Lys-341、Lys-378和Lys-409)的作用。赖氨酸(K)-378突变为精氨酸(R)(K378R)消除了与TbetaR-I的相互作用、磷酸化以及活性TbetaR-I的转录激活。K341R突变体也因滞留在细胞质中而未能刺激TGF-β诱导的转录。然而,K409R突变体通过与共激活因子如p300/CBP的更强相互作用表现出更高的转录活性。此外,K341R和K378R突变体在内源性TGF-β信号的TGF-β诱导靶基因中均作为显性负性抑制剂起作用。因此,Smad3 MH2结构域的赖氨酸残基在通过TbetaR-I对TGF-β信号的转录调控中起重要作用。