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DELLA 蛋白招募 Mediator 复合物亚基 MED15 在陆生植物中共同激活转录。

DELLA proteins recruit the Mediator complex subunit MED15 to coactivate transcription in land plants.

机构信息

Instituto de Biología Molecular y Celular de Plantas, Consejo Superior de Investigaciones Científicas-Universitat Politècnica de València, Valencia 46022, Spain.

Laboratory of Biochemistry, Wageningen University, Wageningen 6703 WE, The Netherlands.

出版信息

Proc Natl Acad Sci U S A. 2024 May 7;121(19):e2319163121. doi: 10.1073/pnas.2319163121. Epub 2024 May 2.

Abstract

DELLA proteins are negative regulators of the gibberellin response pathway in angiosperms, acting as central hubs that interact with hundreds of transcription factors (TFs) and regulators to modulate their activities. While the mechanism of TF sequestration by DELLAs to prevent DNA binding to downstream targets has been extensively documented, the mechanism that allows them to act as coactivators remains to be understood. Here, we demonstrate that DELLAs directly recruit the Mediator complex to specific loci in Arabidopsis, facilitating transcription. This recruitment involves DELLA amino-terminal domain and the conserved MED15 KIX domain. Accordingly, partial loss of MED15 function mainly disrupted processes known to rely on DELLA coactivation capacity, including cytokinin-dependent regulation of meristem function and skotomorphogenic response, gibberellin metabolism feedback, and flavonol production. We have also found that the single DELLA protein in the liverwort is capable of recruiting MpMED15 subunits, contributing to transcriptional coactivation. The conservation of Mediator-dependent transcriptional coactivation by DELLA between Arabidopsis and Marchantia implies that this mechanism is intrinsic to the emergence of DELLA in the last common ancestor of land plants.

摘要

DELLA 蛋白是被子植物赤霉素反应途径的负调控因子,作为中央枢纽,与数百个转录因子 (TFs) 和调节剂相互作用,调节它们的活性。虽然 DELLAs 隔离 TF 以防止 DNA 与下游靶标结合的机制已被广泛记录,但允许它们作为共激活剂的机制仍有待理解。在这里,我们证明 DELLAs 直接将 Mediator 复合物募集到拟南芥中的特定基因座,促进转录。这种募集涉及 DELLA 氨基末端结构域和保守的 MED15 KIX 结构域。因此,MED15 功能的部分缺失主要破坏了已知依赖于 DELLA 共激活能力的过程,包括细胞分裂素依赖的分生组织功能和 skotomorphogenic 反应、赤霉素代谢反馈和类黄酮的产生。我们还发现,在苔类植物中,单个 DELLA 蛋白能够募集 MpMED15 亚基,有助于转录共激活。DELLA 在拟南芥和 Marchantia 之间通过 Mediator 依赖的转录共激活的保守性表明,这种机制是 DELLA 在陆地植物最后共同祖先出现时所固有的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8f2a/11087773/34d99e7a1272/pnas.2319163121fig01.jpg

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