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首页> 外文期刊>Journal of Molecular Biology >Quantitative dissection of the Notch : CSL interaction: Insights into the Notch-mediated transcriptional switch
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Quantitative dissection of the Notch : CSL interaction: Insights into the Notch-mediated transcriptional switch

机译:Notch的定量解剖:CSL相互作用:Notch介导的转录开关的见解

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Complex formation between the intracellular domain of the Notch receptor (NICD) and the transcription factor CSL is indispensable for transcriptional activation. To understand how NICD displaces CSL-associated co-repressors, we have quantified the binding of different Notch1 ICD regions to a key interaction domain (the beta trefoil domain, or BTD) of human CSL. Electrophoresis, scattering, and titration calorimetry indicate that NICD and BTD combine to form a 1:1 heterodimer. Neither the Notch1 ankyrin domain (ANK) nor C-terminal region contributes binding energy towards BTD. In contrast, binding energy is attributed largely to a short segment including the conserved WFP sequence motif within the RAM region (the similar to 140 residue polypeptide segment N-terminal to the ANK domain); substitution of this motif substantially reduces affinity. Short (<= 25 residues) WFP-containing peptides encoded by the four mammalian Notch genes have similar affinities to BTD; thus, activity differences between paralogues either result from other regions of NICD and CSL or from differences in interaction with downstream components. The importance of RAM was demonstrated by the ability of a short RAM peptides to dissociate NICD: CSL interaction in cellular lysates. These results support an emerging molecular mechanism for the displacement of co-repressors from DNA-bound CSL by NICD. (c) 2006 Elsevier Ltd. All rights reserved.
机译:Notch受体(NICD)的细胞内结构域和转录因子CSL之间的复合物形成对于转录激活是必不可少的。为了了解NICD如何取代与CSL相关的共阻遏物,我们已经量化了不同的Notch1 ICD区域与人CSL的关键相互作用域(β三叶域或BTD)的结合。电泳,散射和滴定量热法表明NICD和BTD结合形成1:1异二聚体。 Notch1锚蛋白结构域(ANK)和C端区域均不对BTD贡献结合能。相反,结合能主要归因于短片段,包括RAM区域内保守的WFP序列基序(类似于ANK结构域N端的140个残基多肽片段)。该基序的取代大大降低了亲和力。由四个哺乳动物Notch基因编码的含WFP的短肽(<= 25个残基)具有与BTD相似的亲和力。因此,旁系同源物之间的活性差异要么是由于NICD和CSL的其他区域引起的,要么是由于与下游成分相互作用的差异引起的。 RAM的重要性通过短RAM肽在细胞裂解物中解离NICD:CSL相互作用的能力得以证明。这些结果支持了新兴的分子机制,可通过NICD从DNA结合的CSL替代共抑制子。 (c)2006 Elsevier Ltd.保留所有权利。

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