RNA效应因子SERRATE是拟南芥多顺反子ctr1-10主开放阅读框翻译所必需的。

IF 3.8 Q2 MULTIDISCIPLINARY SCIENCES
PNAS nexus Pub Date : 2025-09-15 eCollection Date: 2025-09-01 DOI:10.1093/pnasnexus/pgaf296
Ying Zhang, Chi-Kuang Wen
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引用次数: 0

摘要

在CONSTITUTIVE three - response1 (CTR1)的5'- untranslation区(5'-UTR)插入T-DNA导致CTR1 -10 mRNA的5'-UTR延长,而主要的ORF (mORF)翻译在面对上游开放阅读框(open reading frame, uORF)抑制时需要脆性组氨酸(FRAGILE HISTIDINE TRIAD, FHIT)。从CTR1 -10的增强子筛选中分离出RNA效应物SERRATE (SE), CTR1 -10植株的CTR1水平显著降低。RNA谱分析和遗传分析显示CTR1水平的变化与pri-miRNA或CTR1 - 10mrna加工无关。核糖体足迹分析揭示了se对ctr1- 10morf翻译效率的影响。在CTR1 -10植株中,se结合的CAP结合复合物组分CAP BINDING PROTEIN20 (CBP20)的突变与se对CTR1水平的影响相似。用膜蛋白的蔗糖密度梯度分馏法测定SE与多聚体组分的关系。原位编辑破坏了靠近CTR1 -10 mORF的上游ATG密码子,以不依赖se的方式提高了CTR1水平。我们的研究揭示了SE/CBP20参与了不依赖miRNA生物合成和ctr1-10 mRNA加工的多顺反子ctr1-10 mRNA的翻译调控,推进了对翻译机制异质性的认识,该机制在精细翻译控制中发挥作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The RNA effector SERRATE is required for the Arabidopsis polycistronic ctr1-10 main open reading frame translation.

The T-DNA insertion at the 5'-untranslated region (5'-UTR) of CONSTITUTIVE TRIPLE-RESPONSE1 (CTR1) results in an extended 5'-UTR of the ctr1-10 mRNA, and the main ORF (mORF) translation requires FRAGILE HISTIDINE TRIAD (FHIT) in the face of upstream open reading frame (uORF) inhibition. The RNA effector SERRATE (SE) was isolated from an enhancer screen for ctr1-10, and CTR1 levels were substantially reduced in se ctr1-10 plants. RNA profiling and genetic analyses revealed changes in CTR1 levels independent of pri-miRNA or ctr1-10 mRNA processing. Ribosome footprinting analyses revealed an impact on ctr1-10 mORF translation efficiency by se. Mutation of the SE-binding cap-binding complex component CAP BINDING PROTEIN20 (CBP20) had effects similar to those of se on CTR1 levels in ctr1-10 plants. Sucrose density gradient fractionation of membrane proteins was used to determine the associations of SE with polysome fractions. In situ editing that disrupted an upstream ATG codon proximal to the ctr1-10 mORF elevated CTR1 levels in an SE-independent manner. Our study revealed the involvement of SE/CBP20 in the translational regulation of polycistronic ctr1-10 mRNAs independent of miRNA biosynthesis and ctr1-10 mRNA processing, advancing the knowledge of the heterogeneity of the translation machinery, which plays roles in fine translation control.

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