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PRC1 组件在多梳体中表现出不同的结合动力学。

PRC1 components exhibit different binding kinetics in Polycomb bodies.

机构信息

Biophotonique Cellulaire Fonctionnelle, Interdisciplinary Research Institute, Université Lille 1 - CNRS USR 3078, Parc de la Haute Borne, Villeneuve d'Ascq, 59658, France.

出版信息

Biol Cell. 2014 Apr;106(4):111-25. doi: 10.1111/boc.201300077. Epub 2014 Mar 6.

Abstract

BACKGROUND INFORMATION

Polycomb group (PcG) proteins keep the memory of cell identity by maintaining the repression of numerous target genes. They accumulate into nuclear foci called Polycomb bodies, which function in Drosophila cells as silencing compartments where PcG target genes convene. PcG proteins also exert their activities elsewhere in the nucleoplasm. In mammalian cells, the dynamic organisation and function of Polycomb bodies remain to be determined.

RESULTS

Fluorescently tagged PcG proteins CBXs and their partners BMI1 and RING1 form foci of different sizes and intensities in human U2OS cells. Fluorescence recovery after photobleaching (FRAP) analysis reveals that PcG dynamics outside foci is governed by diffusion as complexes and transient binding. In sharp contrast, recovery curves inside foci are substantially slower and exhibit large variability. The slow binding component amplitudes correlate with the intensities and sizes of these foci, suggesting that foci contained varying numbers of binding sites. CBX4-green fluorescent protein (GFP) foci were more stable than CBX8-GFP foci; yet the presence of CBX4 or CBX8-GFP in the same focus had a minor impact on BMI1 and RING1 recovery kinetics.

CONCLUSION

We propose that FRAP recovery curves provide information about PcG binding to their target genes outside foci and about PcG spreading onto chromatin inside foci.

摘要

背景信息

多梳组(PcG)蛋白通过维持众多靶基因的抑制来保持细胞身份的记忆。它们聚集在称为多梳体的核焦点中,在果蝇细胞中作为沉默隔间发挥作用,PcG 靶基因在其中聚集。PcG 蛋白在核质溶胶的其他地方也发挥其活性。在哺乳动物细胞中,多梳体的动态组织和功能仍有待确定。

结果

荧光标记的 PcG 蛋白 CBXs 及其伴侣 BMI1 和 RING1 在人 U2OS 细胞中形成大小和强度不同的焦点。光漂白后荧光恢复(FRAP)分析显示,焦点外的 PcG 动力学由扩散以及复合物和瞬时结合控制。相比之下,焦点内的恢复曲线要慢得多,并且表现出很大的可变性。慢结合组分幅度与这些焦点的强度和大小相关,表明焦点内包含不同数量的结合位点。CBX4-绿色荧光蛋白(GFP)焦点比 CBX8-GFP 焦点更稳定;然而,CBX4 或 CBX8-GFP 存在于同一焦点中对 BMI1 和 RING1 恢复动力学的影响较小。

结论

我们提出 FRAP 恢复曲线提供了有关 PcG 与其靶基因在焦点外的结合以及 PcG 在焦点内扩散到染色质上的信息。

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