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小泛素样修饰物 (SUMO) 修饰调节因子 FOXC1 和 FOXC2 的抑制结构域的功能。

Small ubiquitin-like modifier (SUMO) modification mediates function of the inhibitory domains of developmental regulators FOXC1 and FOXC2.

机构信息

Department of Periodontics and Oral Medicine, University of Michigan School of Dentistry, Ann Arbor, Michigan 48109, USA.

出版信息

J Biol Chem. 2012 May 25;287(22):18318-29. doi: 10.1074/jbc.M112.339424. Epub 2012 Apr 5.

Abstract

FOXC1 and FOXC2 are forkhead transcription factors that play essential roles during development and physiology. Despite their critical role, the mechanisms that regulate the function of these factors remain poorly understood. We have identified conserved motifs within a previously defined N-terminal negative regulatory region of FOXC1/C2 that conforms to the definition of synergy control or SC motifs. Because such motifs inhibit the activity of transcription factors by serving as sites of post-translational modification by small ubiquitin-like modifier (SUMO), we have examined whether FOXC1/C2 are targets of SUMOylation and probed the functional significance of this modification. We find that endogenous FOXC1 forms modified by SUMO2/3 can be detected. Moreover, in cell culture, all three SUMO isoforms are readily conjugated to FOXC1 and FOXC2. The modification can be reconstituted in vitro with purified components and can be reversed in vitro by treatment with the SUMO protease SENP2. SUMOylation of FOXC1 and FOXC2 occurs primarily on one consensus synergy control motif with minor contributions of a second, more degenerate site. Notably, although FOXC1 is also phosphorylated at multiple sites, disruption of sites immediately downstream of the SC motifs does not influence SUMOylation. Consistent with a negative functional role, SUMOylation-deficient mutants displayed higher transcriptional activity when compared with wild type forms despite comparable protein levels and subcellular localization. Thus, the findings demonstrate that SC motifs mediate the inhibitory function of this region by serving as sites for SUMOylation and reveal a novel mechanism for acute and reversible regulation of FOXC1/C2 function.

摘要

FOXC1 和 FOXC2 是叉头转录因子,在发育和生理过程中发挥着重要作用。尽管它们具有关键作用,但调节这些因子功能的机制仍知之甚少。我们已经在之前定义的 FOXC1/C2 的 N 端负调控区中鉴定出了保守基序,该基序符合协同控制或 SC 基序的定义。由于这些基序通过作为小泛素样修饰物(SUMO)的翻译后修饰位点来抑制转录因子的活性,因此我们已经检查了 FOXC1/C2 是否是 SUMO 化的靶标,并探讨了这种修饰的功能意义。我们发现可以检测到内源性被 SUMO2/3 修饰的 FOXC1。此外,在细胞培养中,所有三种 SUMO 同种型都可以轻易地与 FOXC1 和 FOXC2 结合。该修饰可以在体外与纯化的成分重建,并可以通过用 SUMO 蛋白酶 SENP2 处理在体外逆转。FOXC1 和 FOXC2 的 SUMO 化主要发生在一个共识协同控制基序上,第二个更简并的位点贡献较小。值得注意的是,尽管 FOXC1 还在多个位点磷酸化,但 SC 基序下游的位点的破坏并不影响 SUMO 化。与负功能作用一致,与野生型形式相比,SUMO 化缺陷突变体显示出更高的转录活性,尽管蛋白水平和亚细胞定位相当。因此,这些发现表明 SC 基序通过作为 SUMO 化的位点来介导该区域的抑制功能,并揭示了 FOXC1/C2 功能的急性和可逆调节的新机制。

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