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SKIP, a CBF1-Associated Protein, Interacts with the Ankyrin Repeat Domain of NotchIC To Facilitate NotchIC Function

机译:SKIP,一种CBF1相关蛋白,与NotchIC的锚蛋白重复域相互作用,以促进NotchIC的功能

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摘要

Notch proteins are transmembrane receptors that mediate intercell communication and direct individual cell fate decisions. The activated intracellular form of Notch, NotchIC, translocates to the nucleus, where it targets the DNA binding protein CBF1. CBF1 mediates transcriptional repression through the recruitment of an SMRT-histone deacetylase-containing corepressor complex. We have examined the mechanism whereby NotchIC overcomes CBF1-mediated transcriptional repression. We identified SKIP (Ski-interacting protein) as a CBF1 binding protein in a yeast two-hybrid screen. Both CBF1 and SKIP are highly conserved evolutionarily, and the SKIP-CBF1 interaction is also conserved in assays using the Caenorhabditis elegans and Drosophila melanogaster SKIP homologs. Protein-protein interaction assays demonstrated interaction between SKIP and the corepressor SMRT. More surprisingly, SKIP also interacted with NotchIC. The SMRT and NotchIC interactions were mutually exclusive. In competition binding experiments SMRT displaced NotchIC from CBF1 and from SKIP. Contact with SKIP is required for biological activity of NotchIC. A mutation in the fourth ankyrin repeat that abolished Notch signal transduction did not affect interaction with CBF1 but abolished interaction with SKIP. Further, NotchIC was unable to block muscle cell differentiation in myoblasts expressing antisense SKIP. The results suggest a model in which NotchIC activates responsive promoters by competing with the SMRT-corepressor complex for contacts on both CBF1 and SKIP.
机译:Notch蛋白是跨膜受体,介导细胞间通讯并指导单个细胞的命运决定。 Notch的活化细胞内形式NotchIC易位至细胞核,它靶向DNA结合蛋白CBF1。 CBF1通过募集SMRT-组蛋白去乙酰化酶的corepressor复合体来介导转录抑制。我们已经检查了NotchIC克服CBF1介导的转录抑制的机制。我们在酵母双杂交筛选中将SKIP(Ski相互作用蛋白)鉴定为CBF1结合蛋白。 CBF1和SKIP在进化上都是高度保守的,在使用秀丽隐杆线虫和果蝇果蝇SKIP同源物进行的测定中,SKIP-CBF1相互作用也得到了保守。蛋白质-蛋白质相互作用测定法证明了SKIP和降压药SMRT之间的相互作用。更令人惊讶的是,SKIP还与NotchIC进行了互动。 SMRT和NotchIC的相互作用是互斥的。在竞争结合实验中,SMRT从CBF1和SKIP取代了NotchIC。 NotchIC的生物学活性需要与SKIP接触。第四锚蛋白重复序列​​中的一个突变消除了Notch信号转导,但不影响与CBF1的相互作用,但消除了与SKIP的相互作用。此外,NotchIC无法阻止表达反义SKIP的成肌细胞中的肌肉细胞分化。结果提出了一个模型,其中NotchIC通过与SMRT-corepressor复合物竞争CBF1和SKIP上的接触而激活响应性启动子。

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