Jiménez G, Verrijzer C P, Ish-Horowicz D
Developmental Genetics, Imperial Cancer Research Fund, London WC2A 3PX, England, UK.
Mol Cell Biol. 1999 Mar;19(3):2080-7. doi: 10.1128/MCB.19.3.2080.
Surprisingly small peptide motifs can confer critical biological functions. One example is the WRPW tetrapeptide present in the Hairy family of transcriptional repressors, which mediates recruitment of the Groucho (Gro) corepressor to target promoters. We recently showed that Engrailed (En) is another repressor that requires association with Gro for its function. En lacks a WRPW motif; instead, it contains another short conserved sequence, the En homology region 1 (eh1)/GEH motif, that is likely to play a role in tethering Gro to the promoter. Here, we characterize a repressor domain from the Goosecoid (Gsc) developmental regulator that includes an eh1/GEH-like motif. We demonstrate that this domain (GscR) mediates efficient repression in Drosophila blastoderm embryos and that repression by GscR requires Gro function. GscR and Gro interact in vitro, and the eh1/GEH motif is necessary and sufficient for the interaction and for in vivo repression. Because WRPW- and eh1/GEH-like motifs are present in different proteins and in many organisms, the results suggest that interactions between short peptides and Gro represent a widespread mechanism of repression. Finally, we investigate whether Gro is part of a stable multiprotein complex in the nucleus. Our results indicate that Gro does not form stable associations with other proteins but that it may be able to assemble into homomultimeric complexes.
令人惊讶的是,很小的肽基序就能赋予关键的生物学功能。一个例子是转录抑制因子Hairy家族中存在的WRPW四肽,它介导了Groucho(Gro)共抑制因子与靶启动子的结合。我们最近发现,Engrailed(En)是另一种需要与Gro结合才能发挥功能的抑制因子。En缺乏WRPW基序;相反,它包含另一个短的保守序列,即En同源区域1(eh1)/GEH基序,该基序可能在将Gro拴系到启动子上发挥作用。在这里,我们对来自Goosecoid(Gsc)发育调节因子的一个抑制结构域进行了表征,该结构域包含一个类似eh1/GEH的基序。我们证明,这个结构域(GscR)在果蝇胚盘胚胎中介导有效的抑制作用,并且GscR的抑制作用需要Gro的功能。GscR和Gro在体外相互作用,并且eh1/GEH基序对于这种相互作用和体内抑制作用是必要且充分的。由于WRPW和类似eh1/GEH的基序存在于不同的蛋白质中且在许多生物体中都有,结果表明短肽与Gro之间的相互作用代表了一种广泛存在的抑制机制。最后,我们研究了Gro是否是细胞核中稳定的多蛋白复合物的一部分。我们的结果表明,Gro不会与其他蛋白质形成稳定的结合,但它可能能够组装成同多聚体复合物。