首页> 外文OA文献 >Thermodynamic Analysis of the CSL·Notch Interaction: DISTRIBUTION OF BINDING ENERGY OF THE NOTCH RAM REGION TO THE CSL β-TREFOIL DOMAIN AND THE MODE OF COMPETITION WITH THE VIRAL TRANSACTIVATOR EBNA2*
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Thermodynamic Analysis of the CSL·Notch Interaction: DISTRIBUTION OF BINDING ENERGY OF THE NOTCH RAM REGION TO THE CSL β-TREFOIL DOMAIN AND THE MODE OF COMPETITION WITH THE VIRAL TRANSACTIVATOR EBNA2*

机译:CSL·Notch相互作用的热力学分析:Notch RAM区域的结合能与CSLβ-三叶域的分布以及与病毒交易型EBNA2的竞争方式*

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摘要

The Notch signaling pathway is a cell-cell communication network giving rise to cell differentiation during metazoan development. Activation of the pathway releases the intracellular portion of the Notch receptor to translocate to the nucleus, where it is able to interact with the effector transcription factor CSL, converting CSL from a transcriptional repressor to an activator. This conversion is dependent upon the high affinity binding of the RAM region of the Notch receptor to the β-trefoil domain (BTD) of CSL. Here we probe the energetics of binding to BTD of each conserved residue of RAM through the use of isothermal titration calorimetry and single residue substitution. We find that although the highly conserved ΦWΦP motif is the largest determinant of binding, energetically significant interactions are contributed by N-terminal residues, including a conserved Arg/Lys-rich region. Additionally, we present a thermodynamic analysis of the interaction between the Epstein-Barr virus protein EBNA2 with BTD and explore the extent to which the EBNA2- and RAM-binding sites on BTD are nonoverlapping, as proposed by Fuchs et al. (Fuchs, K. P., Bommer, G., Dumont, E., Christoph, B., Vidal, M., Kremmer, E., and Kempkes, B. (2001) Eur. J. Biochem. 268, 4639–4646). Combining these results with displacement isothermal titration calorimetry, we propose a mechanism by which the ΦWΦP motif of RAM and EBNA2 compete with one another for binding at the hydrophobic pocket of BTD using overlapping but specific interactions that are unique to each BTD ligand.
机译:Notch信号通路是一种细胞-细胞通信网络,在后生动物发育过程中会引起细胞分化。该途径的激活释放了Notch受体的细胞内部分,以转运至细胞核,在细胞核中它可以与效应转录因子CSL相互作用,从而将CSL从转录阻遏物转化为激活物。该转化取决于Notch受体的RAM区域与CSL的β-三叶结构域(BTD)的高亲和力结合。在这里,我们通过使用等温滴定热法和单个残基取代来研究与RAM的每个保守残基的BTD结合的能量学。我们发现,尽管高度保守的ΦWΦP基序是结合的最大决定因素,但在能量上显着的相互作用是由N端残基(包括一个保守的Arg / Lys富集区域)贡献的。此外,我们提出了爱泼斯坦-巴尔病毒蛋白EBNA2与BTD之间相互作用的热力学分析,并探讨了FTDs等人提出的BTD上EBNA2-和RAM结合位点不重叠的程度。 (Fuchs,KP,Bommer,G.,E. Dumont,Christoph,B.,Vidal,M.,Kremmer,E.和Kempkes,B.(2001)Eur。J. Biochem。268,4639–4646) 。将这些结果与位移等温滴定量热法相结合,我们提出了一种机制,通过这种机制,RAM和EBNA2的ΦWΦP基序彼此竞争,从而利用每个BTD配体所特有的重叠但特异的相互作用相互结合。

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