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小核核糖体蛋白 65K/RNPC3 与 ANKRD11 相互作用并介导 HDAC3 调节的组蛋白去乙酰化和转录。

Minor Spliceosomal 65K/RNPC3 Interacts with ANKRD11 and Mediates HDAC3-Regulated Histone Deacetylation and Transcription.

机构信息

RNA Institute, State Key Laboratory of Virology, Hubei Key Laboratory of Cell Homeostasis, College of Life Science, TaiKang Center for Life and Medical Sciences, Wuhan University, Hubei, 430072, China.

Key Laboratory of Insect Developmental and Evolutionary Biology, Center for Excellence in Molecular Plant Sciences, Chinese Academy of Sciences, University of Chinese Academy of Sciences, Shanghai, 200032, China.

出版信息

Adv Sci (Weinh). 2024 Aug;11(29):e2307804. doi: 10.1002/advs.202307804. Epub 2024 Jun 5.

Abstract

RNA splicing is crucial in the multilayer regulatory networks for gene expression, making functional interactions with DNA- and other RNA-processing machineries in the nucleus. However, these established couplings are all major spliceosome-related; whether the minor spliceosome is involved remains unclear. Here, through affinity purification using Drosophila lysates, an interaction is identified between the minor spliceosomal 65K/RNPC3 and ANKRD11, a cofactor of histone deacetylase 3 (HDAC3). Using a CRISPR/Cas9 system, Deletion strains are constructed and found that both Dm65K and Dmankrd11 mutants have reduced histone deacetylation at Lys9 of histone H3 (H3K9) and Lys5 of histone H4 (H4K5) in their heads, exhibiting various neural-related defects. The 65K-ANKRD11 interaction is also conserved in human cells, and the HsANKRD11 middle-uncharacterized domain mediates Hs65K association with HDAC3. Cleavage under targets and tagmentation (CUT&Tag) assays revealed that HsANKRD11 is a bridging factor, which facilitates the synergistic common chromatin-binding of HDAC3 and Hs65K. Knockdown (KD) of HsANKRD11 simultaneously decreased their common binding, resulting in reduced deacetylation of nearby H3K9. Ultimately, this study demonstrates that expression changes of many genes caused by HsANKRD11-KD are due to the decreased common chromatin-binding of HDAC3 and Hs65K and subsequently reduced deacetylation of H3K9, illustrating a novel and conserved coupling mechanism that links the histone deacetylation with minor spliceosome for the regulation of gene expression.

摘要

RNA 剪接在基因表达的多层调控网络中至关重要,它与细胞核中的 DNA 和其他 RNA 加工机制发生功能相互作用。然而,这些已建立的偶联都是主要剪接体相关的;是否涉及次要剪接体尚不清楚。在这里,通过使用果蝇裂解物进行亲和纯化,鉴定到了小核体 65K/RNPC3 与 ANKRD11 之间的相互作用,ANKRD11 是组蛋白去乙酰化酶 3 (HDAC3) 的共因子。使用 CRISPR/Cas9 系统构建了 Deletion 菌株,并发现 Dm65K 和 Dmankrd11 突变体的头部中组蛋白 H3 的赖氨酸 9(H3K9)和组蛋白 H4 的赖氨酸 5(H4K5)的组蛋白去乙酰化减少,表现出各种与神经相关的缺陷。65K-ANKRD11 相互作用在人类细胞中也保守,并且 HsANKRD11 中间未鉴定的结构域介导 Hs65K 与 HDAC3 的结合。在靶点下切割和标签化 (CUT&Tag) 测定中发现,HsANKRD11 是一种桥接因子,它促进了 HDAC3 和 Hs65K 的协同共同染色质结合。HsANKRD11 的敲低 (KD) 同时减少了它们的共同结合,导致附近 H3K9 的去乙酰化减少。最终,这项研究表明,由于 HsANKRD11-KD 导致许多基因的表达变化是由于 HDAC3 和 Hs65K 的共同染色质结合减少,随后 H3K9 的去乙酰化减少所致,说明了一种新的和保守的偶联机制,该机制将组蛋白去乙酰化与小核体联系起来,用于基因表达的调控。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8099/11304329/fded4dfba220/ADVS-11-2307804-g007.jpg

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