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进化中的异染色质凝聚勾勒出植物的染色中心形成和反转录转座子沉默。

Evolutional heterochromatin condensation delineates chromocenter formation and retrotransposon silencing in plants.

机构信息

Center for Plant Biology, School of Life Sciences, Tsinghua University, Beijing, China.

Tsinghua-Peking Center for Life Sciences, Beijing, China.

出版信息

Nat Plants. 2024 Aug;10(8):1215-1230. doi: 10.1038/s41477-024-01746-4. Epub 2024 Jul 16.

Abstract

Heterochromatic condensates (chromocenters) are critical for maintaining the silencing of heterochromatin. It is therefore puzzling that the presence of chromocenters is variable across plant species. Here we reveal that variations in the plant heterochromatin protein ADCP1 confer a diversity in chromocenter formation via phase separation. ADCP1 physically interacts with the high mobility group protein HMGA to form a complex and mediates heterochromatin condensation by multivalent interactions. The loss of intrinsically disordered regions (IDRs) in ADCP1 homologues during evolution has led to the absence of prominent chromocenter formation in various plant species, and introduction of IDR-containing ADCP1 with HMGA promotes heterochromatin condensation and retrotransposon silencing. Moreover, plants in the Cucurbitaceae group have evolved an IDR-containing chimaera of ADCP1 and HMGA, which remarkably enables formation of chromocenters. Together, our work uncovers a coevolved mechanism of phase separation in packing heterochromatin and silencing retrotransposons.

摘要

异染色质浓缩物(染色体中心)对于维持异染色质的沉默至关重要。因此,令人困惑的是,染色体中心在植物物种之间存在差异。在这里,我们揭示了植物异染色质蛋白 ADCP1 的变化通过相分离赋予了染色体中心形成的多样性。ADCP1 与高迁移率族蛋白 HMGA 物理相互作用形成复合物,并通过多价相互作用介导异染色质浓缩。ADCP1 同源物在进化过程中无规卷曲区域(IDR)的丢失导致各种植物物种中明显的染色体中心形成缺失,并且含有 IDR 的 ADCP1 与 HMGA 的引入促进了异染色质浓缩和逆转座子沉默。此外,葫芦科植物进化出了一种含有 ADCP1 和 HMGA 的 IDR 嵌合体,这显著地使染色体中心的形成成为可能。总之,我们的工作揭示了一种相分离在包装异染色质和沉默逆转座子方面的共同进化机制。

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