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固氮豆科植物白蛋白-1 基因的劫持使防御肽能够环化和稳定。

Hijacking of N-fixing legume albumin-1 genes enables the cyclization and stabilization of defense peptides.

机构信息

Institute for Molecular Bioscience, The University of Queensland, Brisbane, QLD 4072, Australia.

Australian Research Council Centre of Excellence for Innovations in Peptide and Protein Science, The University of Queensland, Brisbane, QLD 4072, Australia.

出版信息

Nat Commun. 2024 Aug 3;15(1):6565. doi: 10.1038/s41467-024-50742-x.

Abstract

The legume albumin-1 gene family, arising after nodulation, encodes linear a- and b-chain peptides for nutrient storage and defense. Intriguingly, in one prominent legume, Clitoria ternatea, the b-chains are replaced by domains producing ultra-stable cyclic peptides called cyclotides. The mechanism of this gene hijacking is until now unknown. Cyclotides require recruitment of ligase-type asparaginyl endopeptidases (AEPs) for maturation (cyclization), necessitating co-evolution of two gene families. Here we compare a chromosome-level C. ternatea genome with grain legumes to reveal an 8 to 40-fold expansion of the albumin-1 gene family, enabling the additional loci to undergo diversification. Iterative rounds of albumin-1 duplication and diversification create four albumin-1 enriched genomic islands encoding cyclotides, where they are physically grouped by similar pI and net charge values. We identify an ancestral hydrolytic AEP that exhibits neofunctionalization and multiple duplication events to yield two ligase-type AEPs. We propose cyclotides arise by convergence in C. ternatea where their presence enhances defense from biotic attack, thus increasing fitness compared to lineages with linear b-chains and ultimately driving the replacement of b-chains with cyclotides.

摘要

豆类白蛋白-1 基因家族在结瘤后产生,编码用于营养储存和防御的线性 a-和 b-链肽。有趣的是,在一种突出的豆科植物三指驴蹄草中,b-链被产生超稳定环状肽的结构域所取代,这些环状肽被称为环肽。到目前为止,这种基因劫持的机制尚不清楚。环肽需要 ligase-type asparaginyl endopeptidases (AEPs) 的募集才能成熟(环化),这需要两个基因家族的共同进化。在这里,我们将三指驴蹄草的染色体水平基因组与谷物豆类进行比较,发现其白蛋白-1 基因家族发生了 8 到 40 倍的扩张,使额外的基因座能够发生多样化。白蛋白-1 的反复复制和多样化创造了四个富含白蛋白-1 的基因组岛,编码环肽,它们在物理上通过相似的等电点和净电荷值分组。我们鉴定出一个祖先水解 AEP,它表现出新功能化和多次重复事件,产生了两个 ligase-type AEPs。我们提出,环肽是在三指驴蹄草中趋同进化而来的,它们的存在增强了对生物攻击的防御能力,从而与具有线性 b-链的谱系相比提高了适应性,最终导致 b-链被环肽取代。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ce8b/11297342/a86eed2cf144/41467_2024_50742_Fig1_HTML.jpg

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