Plant BCL-DOMAIN HOMOLOG proteins play a conserved role in SWI/SNF complex stability

IF 9.1 1区 综合性期刊 Q1 MULTIDISCIPLINARY SCIENCES Proceedings of the National Academy of Sciences of the United States of America Pub Date : 2025-01-17 DOI:10.1073/pnas.2413346122
Joan Candela-Ferre, Jaime Pérez-Alemany, Borja Diego-Martin, Vijaya Pandey, James Wohlschlegel, Jorge Lozano-Juste, Javier Gallego-Bartolomé
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Abstract

The SWItch/Sucrose Non-Fermenting (SWI/SNF) complexes are evolutionarily conserved, ATP-dependent chromatin remodelers crucial for multiple nuclear functions in eukaryotes. Recently, plant BCL-DOMAIN HOMOLOG (BDH) proteins were identified as shared subunits of all plant SWI/SNF complexes, significantly impacting chromatin accessibility and various developmental processes in Arabidopsis. In this study, we performed a comprehensive characterization of bdh mutants, revealing the role of BDH in hypocotyl cell elongation. Through detailed analysis of BDH domains, we identified a plant-specific N-terminal domain that facilitates the interaction between BDH and the rest of the complex. Additionally, we uncovered the critical role of the BDH β-hairpin domain, which is phylogenetically related to mammalian BCL7 SWI/SNF subunits. While phylogenetic analyses did not identify BDH/BCL7 orthologs in fungi, structure prediction modeling demonstrated strong similarities between the SWI/SNF catalytic modules of plants, animals, and fungi and revealed the yeast Rtt102 protein as a structural homolog of BDH and BCL7. This finding is supported by the ability of Rtt102 to interact with the Arabidopsis catalytic module subunit ARP7 and partially rescue the bdh mutant phenotypes. Further experiments revealed that BDH promotes the stability of the ARP4-ARP7 heterodimer, leading to the partial destabilization of ARP4 in the SWI/SNF complexes. In summary, our study unveils the molecular function of BDH proteins in plant SWI/SNF complexes and suggests that β-hairpin-containing proteins are evolutionarily conserved subunits crucial for ARP heterodimer stability and SWI/SNF activity across eukaryotes.
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植物BCL-DOMAIN同源蛋白在SWI/SNF复合物的稳定性中起保守作用
SWItch/蔗糖非发酵(SWI/SNF)复合物是进化上保守的、依赖atp的染色质重塑物,对真核生物的多种核功能至关重要。最近,植物BCL-DOMAIN HOMOLOG (BDH)蛋白被鉴定为所有植物SWI/SNF复合物的共享亚基,显著影响拟南芥染色质可及性和各种发育过程。在这项研究中,我们对bdh突变体进行了全面的表征,揭示了bdh在下胚轴细胞伸长中的作用。通过对BDH结构域的详细分析,我们发现了一个植物特异性的n端结构域,该结构域促进了BDH与复合物其余部分之间的相互作用。此外,我们还发现了BDH β-发夹结构域的关键作用,该结构域与哺乳动物BCL7 SWI/SNF亚基在系统发育上相关。虽然系统发育分析没有发现真菌中的BDH/BCL7同源物,但结构预测模型显示植物、动物和真菌的SWI/SNF催化模块具有很强的相似性,并显示酵母Rtt102蛋白与BDH和BCL7具有结构同源性。这一发现得到了Rtt102与拟南芥催化模块亚基ARP7相互作用并部分挽救bdh突变表型的能力的支持。进一步的实验表明,BDH促进了ARP4- arp7异源二聚体的稳定性,导致SWI/SNF复合物中ARP4的部分不稳定。总之,我们的研究揭示了BDH蛋白在植物SWI/SNF复合物中的分子功能,并表明含有β-发簪的蛋白是进化上保守的亚基,对ARP异源二聚体的稳定性和真核生物SWI/SNF活性至关重要。
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来源期刊
CiteScore
19.00
自引率
0.90%
发文量
3575
审稿时长
2.5 months
期刊介绍: The Proceedings of the National Academy of Sciences (PNAS), a peer-reviewed journal of the National Academy of Sciences (NAS), serves as an authoritative source for high-impact, original research across the biological, physical, and social sciences. With a global scope, the journal welcomes submissions from researchers worldwide, making it an inclusive platform for advancing scientific knowledge.
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