首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >PNAS Plus: Arabidopsis thaliana AHL family modulates hypocotyl growth redundantly by interacting with each other via the PPC/DUF296 domain
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PNAS Plus: Arabidopsis thaliana AHL family modulates hypocotyl growth redundantly by interacting with each other via the PPC/DUF296 domain

机译:PNAS Plus:拟南芥AHL家族通过PPC / DUF296结构域相互相互作用冗余调节下胚轴生长

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摘要

The Arabidopsis thaliana genome encodes 29 AT-HOOK MOTIF CONTAINING NUCLEAR LOCALIZED (AHL) genes, which evolved into two phylogenic clades. The AHL proteins contain one or two AT-hook motif(s) and one plant and prokaryote conserved (PPC)/domain of unknown function #296 (DUF296) domain. Seedlings lacking both SOB3/AHL29 and ESC/AHL27 confer a subtle long-hypocotyl phenotype compared with the WT or either single-null mutant. In contrast, the missense allele sob3-6 confers a dramatic long-hypocotyl phenotype in the light. In this study, we examined the dominant-negative feature of sob3-6 and found that it encodes a protein with a disrupted AT-hook motif that abolishes binding to AT-rich DNA. A loss-of-function approach demonstrated different, yet redundant, contributions of additional AHL genes in suppressing hypocotyl elongation in the light. We showed that AHL proteins interact with each other and themselves via the PPC/DUF296 domain. AHLs also share interactions with other nuclear proteins, such as transcription factors, suggesting that these interactions also contribute to the functional redundancy within this gene family. The coordinated action of AHLs requires an AT-hook motif capable of binding AT-rich DNA, as well as a PPC/DUF296 domain containing a conserved Gly-Arg-Phe-Glu-Ile-Leu region. Alteration of this region abolished SOB3/AHL29’s physical interaction with transcription factors and resulted in a dominant-negative allele in planta that was phenotypically similar to sob3-6. We propose a molecular model where AHLs interact with each other and themselves, as well as other nuclear proteins, to form complexes which modulate plant growth and development.
机译:拟南芥基因组编码29个包含核定居点(AHL)的AT-HOOK MOTIF基因,该基因进化为两个系统进化枝。 AHL蛋白包含一个或两个AT钩基序和一个未知功能#296(DUF296)域的植物和原核生物保守(PPC)/域。与WT或单无效突变体相比,缺少SOB3 / AHL29和ESC / AHL27的幼苗具有微妙的长下胚轴表型。相反,错义等位基因sob3-6在光照下具有戏剧性的长下胚轴表型。在这项研究中,我们检查了sob3-6的显性负性特征,发现它编码的蛋白具有破坏性的AT钩基序,从而消除了与富含AT的DNA的结合。功能丧失方法证明了额外的AHL基因在抑制光下胚轴伸长方面的不同但多余的贡献。我们表明,AHL蛋白通过PPC / DUF296域彼此相互作用,并且自身相互作用。 AHL还与其他核蛋白(例如转录因子)共享相互作用,表明这些相互作用也有助于该基因家族内的功能冗余。 AHL的协同作用需要能够结合富含AT的DNA的AT钩基序,以及包含保守的Gly-Arg-Phe-Glu-Ile-Leu区的PPC / DUF296结构域。该区域的改变取消了SOB3 / AHL29与转录因子的物理相互作用,并在植物中产生了显性阴性等位基因,其表型与sob3-6类似。我们提出了一种分子模型,其中AHL与彼此,自身以及其他核蛋白相互作用,形成调节植物生长和发育的复合物。

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