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通过 SAC51 uORF 中的同义密码子变化抑制拟南芥突变体在 thermospermine 生物合成缺陷中的矮小表型。

Suppression of the dwarf phenotype of an Arabidopsis mutant defective in thermospermine biosynthesis by a synonymous codon change in the SAC51 uORF.

机构信息

Graduate School of Natural Science and Technology, Okayama University, Okayama, 700 8530, Japan.

出版信息

Mol Genet Genomics. 2023 Nov;298(6):1505-1514. doi: 10.1007/s00438-023-02076-4. Epub 2023 Oct 16.

Abstract

Thermospermine plays a critical role in negatively regulating xylem development in angiosperms. A mutant of Arabidopsis thaliana that is defective in thermospermine biosynthesis, acaulis5 (acl5), exhibits a dwarf phenotype with excessive xylem formation. Mechanistically thermospermine acts in attenuating the inhibitory effect of an evolutionarily conserved upstream open reading frame (uORF) on the main ORF of SAC51, which encodes a basic helix-loop-helix protein involved in xylem repression. Here, we revealed that a semidominant suppressor of acl5, sac503, which partially restores the acl5 phenotype, has a point mutation in the conserved uORF of SAC51 with no amino acid substitution in the deduced peptide sequence. In transgenic lines carrying the β-glucuronidase (GUS) reporter gene fused with the SAC51 5' region containing the uORF, the mutant construct was shown to confer higher GUS activity than does the wild-type SAC51 construct. We confirmed that sac503 mRNA was more stable than SAC51 mRNA in acl5. These results suggest that the single-base change in sac503 positively affects the translation of its main ORF instead of thermospermine. We further found that the uORF-GUS fusion protein could be synthesized in planta from the wild-type and sac503 translational fusion constructs.

摘要

热稳定素在调控被子植物木质部发育中起着关键作用。拟南芥中热稳定素生物合成缺陷的突变体 acaulis5 (acl5) 表现出矮化表型和过多木质部形成。从机制上讲,热稳定素通过减弱进化上保守的上游开放阅读框(uORF)对 SAC51 主 ORF 的抑制作用来发挥作用,该 ORF 编码一种参与木质部抑制的碱性螺旋-环-螺旋蛋白。在这里,我们揭示了 acl5 的半显性抑制子 sac503 部分恢复了 acl5 表型,其在 SAC51 的保守 uORF 中发生了点突变,推断的肽序列中没有氨基酸取代。在携带与 uORF 融合的β-葡萄糖醛酸酶(GUS)报告基因的转基因系中,突变构建体显示出比野生型 SAC51 构建体更高的 GUS 活性。我们证实 sac503 mRNA 在 acl5 中比 SAC51 mRNA 更稳定。这些结果表明 sac503 中的单碱基变化对其主 ORF 的翻译有积极影响,而不是热稳定素。我们进一步发现,来自野生型和 sac503 翻译融合构建体的 uORF-GUS 融合蛋白可以在植物体内合成。

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