超高分辨率成像显示不同表观遗传状态的不同染色体折叠
Alistair N Boettiger1, Bogdan Bintu1, Jeffrey R Moffitt1
1Howard Hughes Medical Institute, Department of Chemistry and Chemical Biology, Department of Physics, Harvard University, Cambridge, Massachusetts 02138, USA.
Nature
|January 14, 2016
概括
果细胞中的不同表观遗传状态显示出不同的3D染色体包装. 聚抑制的染色体表现出独特的密集包装和混合,影响基因组调节.
科学领域:
- 基因组学
- 表观遗传学
- 细胞生物学
背景情况:
- 甲动物基因组表现出多层次的空间组织,这对基因调节至关重要.
- 对于基因表达控制来说, 了解基因基数到基数的三维组织是很有挑战性的,
研究的目的:
- 在多细胞中研究不同表观遗传状态 (活性,非活性,多抑制) 的3D染色体组织.
- 阐明不同表观遗传状态如何影响色素包装和空间布局.
主要方法:
- 超分辨率成像Drosophila细胞以可视化染色体组织.
- 将基因组域分为活跃,不活跃或Polycomb压抑的状态.
- 计算建模和淘汰实验以评估多组蛋白质的作用.
主要成果:
- 在活性,非活性和Polycomb抑制域中观察到不同的3D染色体组织.
- 所有域类型都显示了权力定律缩放,但具有独特的缩放指数.
- 聚压缩域显示最密集的包装,密度随长度增加,以及显著的染色体混合.
- 聚抑制的域在空间上排斥了相邻的活性染色体,比不活性域更强.
结论:
- 超分辨率成像揭示了与千基至兆基尺度上的表观遗传状态相关的不同染色体包装策略.
- 聚组蛋白调解可逆相互作用,对于抑制的染色体的独特包装至关重要.
- 在这种尺度下,染色体的三维组织与基因组调节机制直接相关.
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