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Biophysical characterization and modeling of human Ecdysoneless (ECD) protein supports a scaffolding function

机译:人类蜕皮激素(ECD)蛋白的生物物理表征和建模支持脚手架功能

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The human homolog of Drosophila ecdysoneless protein (ECD) is a p53 binding protein that stabilizes and enhances p53 functions. Homozygous deletion of mouse Ecd is early embryonic lethal and Ecd deletion delays G1-S cell cycle progression. Importantly, ECD directly interacts with the Rb tumor suppressor and competes with the E2F transcription factor for binding to Rb. Further studies demonstrated ECD is overexpressed in breast and pancreatic cancers and its overexpression correlates with poor patient survival. ECD overexpression together with Ras induces cellular transformation through upregulation of autophagy. Recently we demonstrated that CK2 mediated phosphorylation of ECD and interaction with R2TP complex are important for its cell cycle regulatory function. Considering that ECD is a component of multiprotein complexes and its crystal structure is unknown, we characterized ECD structure by circular dichroism measurements and sequence analysis software. These analyses suggest that the majority of ECD is composed of α-helices. Furthermore, small angle X-ray scattering (SAXS) analysis showed that deletion fragments, ECD(1–432) and ECD(1–534), are both well-folded and reveals that the first 400 residues are globular and the next 100 residues are in an extended cylindrical structure. Taking all these results together, we speculate that ECD acts like a structural hub or scaffolding protein in its association with its protein partners. In the future, the hypothetical model presented here for ECD will need to be tested experimentally.
机译:果蝇蜕皮激素无蛋白(ECD)的人类同源物是稳定并增强p53功能的p53结合蛋白。小鼠Ecd的纯合缺失是早期胚胎致死性,Ecd的缺失延迟了G 1 -S细胞周期的进程。重要的是,ECD与Rb肿瘤抑制因子直接相互作用,并与E2F转录因子竞争与Rb的结合。进一步的研究表明,ECD在乳腺癌和胰腺癌中过表达,其过表达与患者生存不良有关。 ECD的过表达与Ras一起通过自噬的上调诱导细胞转化。最近,我们证明CK2介导的ECD磷酸化以及与R2TP复合物的相互作用对于其细胞周期调节功能很重要。考虑到ECD是多蛋白复合物的组成部分,并且其晶体结构是未知的,我们通过圆二色性测量和序列分析软件来表征ECD结构。这些分析表明,大多数ECD由α螺旋组成。此外,小角度X射线散射(SAXS)分析表明,缺失片段ECD(1-432)和ECD(1-3534)均折叠良好,并显示前400个残基为球形,接下来的100个残基处于延伸的圆柱结构中。综合所有这些结果,我们推测ECD在与其蛋白伴侣的结合中起着结构枢纽或支架蛋白的作用。将来,此处提出的针对ECD的假设模型将需要进行实验测试。

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