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稳定的同型和瞬时异型骨形态发生蛋白(BMP)受体复合物的形成调节 Smad 蛋白信号转导。

Formation of stable homomeric and transient heteromeric bone morphogenetic protein (BMP) receptor complexes regulates Smad protein signaling.

机构信息

Department of Neurobiology, George S. Wise Faculty of Life Sciences, Tel Aviv University, Tel Aviv, Israel.

出版信息

J Biol Chem. 2011 Jun 3;286(22):19287-96. doi: 10.1074/jbc.M110.210377. Epub 2011 Apr 6.

Abstract

The type I and type II bone morphogenetic protein receptors (BMPRI and BMPRII) are present at the plasma membrane as monomers and homomeric and heteromeric complexes, which are modulated by ligand binding. The complexes of their extracellular domains with ligand were shown to form heterotetramers. However, the dynamics of the oligomeric interactions among the full-length receptors in live cell membranes were not explored, and the roles of BMP receptor homodimerization were unknown. Here, we investigated these issues by combining patching/immobilization of an epitope-tagged BMP receptor at the cell surface with measurements of the lateral diffusion of a co-expressed, differently tagged BMP receptor by fluorescence recovery after photobleaching (FRAP). These studies led to several novel conclusions. (a) All homomeric complexes (without or with BMP-2) were stable on the patch/FRAP time scale (minutes), whereas the heterocomplexes were transient, a difference that may affect signaling. (b) Patch/FRAP between HA- and myc-tagged BMPRII combined with competition by untagged BMPRIb showed that the heterocomplexes form at the expense of homodimers. (c) Stabilization of BMPRII·BMPRIb heterocomplexes (but not homomeric complexes) by IgG binding to same-tag receptors elevated phospho-Smad formation both without and with BMP-2. These findings suggest two mechanisms that may suppress the tendency of preformed BMP receptor hetero-oligomers to signal without ligand: (a) competition between homo- and heterocomplex formation, which reduces the steady-state level of the latter, and (b) the transient nature of the heterocomplexes, which limits the time during which BMPRI can be phosphorylated by BMPRII in the heterocomplex.

摘要

I 型和 II 型骨形态发生蛋白受体(BMPRI 和 BMPRII)以单体和同型和异型复合物的形式存在于质膜上,这些复合物通过配体结合进行调节。已经表明,它们的细胞外结构域与配体的复合物形成异型四聚体。然而,活细胞膜中全长受体的寡聚相互作用的动力学尚未被探索,BMP 受体同二聚化的作用也未知。在这里,我们通过将一个表位标记的 BMP 受体在细胞表面进行贴片/固定,同时通过荧光恢复后漂白(FRAP)测量共表达的、不同标记的 BMP 受体的侧向扩散,来研究这些问题。这些研究得出了几个新的结论。(a)所有同型复合物(有或没有 BMP-2)在贴片/FRAP 时间尺度(分钟)上都是稳定的,而异型复合物是瞬态的,这种差异可能会影响信号传递。(b)HA 和 myc 标记的 BMPRII 之间的贴片/FRAP 结合未标记的 BMPRIb 的竞争表明,异型复合物的形成是以同型二聚体为代价的。(c)通过 IgG 结合同种标记受体对 BMPRII·BMPRIb 异型复合物(但不是同型复合物)的稳定作用,无论是在没有 BMP-2 的情况下还是在有 BMP-2 的情况下,都能提高磷酸化 Smad 的形成。这些发现表明了两种可能抑制预先形成的 BMP 受体异型寡聚体在没有配体的情况下信号传递的机制:(a)同型和异型复合物形成之间的竞争,这降低了后者的稳态水平,以及(b)异型复合物的瞬态性质,这限制了 BMPRII 在异型复合物中磷酸化 BMPRI 的时间。

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