低剂量核糖体 DNA P 环突变影响拟南芥的发育并加强自噬。

Low dose ribosomal DNA P-loop mutation affects development and enforces autophagy in Arabidopsis.

机构信息

Molecular Cell Biology of Plants, Institute for Molecular Biosciences & Buchmann Institute for Molecular Life Sciences, Goethe University Frankfurt, Frankfurt am Main, Germany.

Molecular Systems Biology (MOSYS), Department of Functional and Evolutionary Ecology, University of Vienna, Vienna, Austria.

出版信息

RNA Biol. 2024 Jan;21(1):1-15. doi: 10.1080/15476286.2023.2298532. Epub 2023 Dec 29.

Abstract

Arabidopsis contains hundreds of ribosomal DNA copies organized within the nucleolar organizing regions (NORs) in chromosomes 2 and 4. There are four major types of variants of rDNA, VAR1-4, based on the polymorphisms of 3' external transcribed sequences. The variants are known to be differentially expressed during plant development. We created a mutant by the CRISPR-Cas9-mediated excision of ~ 25 nt from predominantly NOR4 ribosomal DNA copies, obtaining mosaic mutational events on ~ 5% of all rDNA copies. The excised region consists of P-loop and Helix-82 segments of 25S rRNA. The mutation led to allelic, dosage-dependent defects marked by lateral root inhibition, reduced size, and pointy leaves, all previously observed for defective ribosomal function. The mutation in NOR4 led to dosage compensation from the NOR2 copies by elevated expression of VAR1 in mutants and further associated single-nucleotide variants, thus, resulting in altered rRNA sub-population. Furthermore, the mutants exhibited rRNA maturation defects specifically in the minor pathway typified by 32S pre-rRNA accumulation. Density-gradient fractionation and subsequent RT-PCR of rRNA analyses revealed that mutated copies were not incorporated into the translating ribosomes. The mutants in addition displayed an elevated autophagic flux as shown by the autophagic marker GFP-ATG8e, likely related to ribophagy.

摘要

拟南芥含有数百个核糖体 DNA 拷贝,这些拷贝组织在染色体 2 和 4 的核仁组织区域 (NORs) 中。根据 3' 外部转录序列的多态性,rDNA 有四种主要的变体类型,VAR1-4。这些变体在植物发育过程中被证明是差异表达的。我们通过 CRISPR-Cas9 介导的从主要 NOR4 核糖体 DNA 拷贝中切除约 25 个核苷酸,创建了一个突变体,在大约 5%的所有 rDNA 拷贝上获得了镶嵌突变事件。被切除的区域包含 25S rRNA 的 P 环和 Helix-82 片段。该突变导致等位基因、剂量依赖性缺陷,表现为侧根抑制、变小和叶片变尖,所有这些都是核糖体功能缺陷所观察到的。NOR4 中的突变通过 VAR1 在突变体中的高表达导致 NOR2 拷贝的剂量补偿,以及进一步相关的单核苷酸变体,从而导致 rRNA 亚群的改变。此外,突变体表现出 rRNA 成熟缺陷,特别是在以 32S 前 rRNA 积累为特征的次要途径中。密度梯度分级和随后的 rRNA 分析 RT-PCR 显示,突变拷贝未被整合到翻译核糖体中。突变体还显示出升高的自噬通量,如自噬标记 GFP-ATG8e 所示,可能与核糖体自噬有关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/61e1/10761087/6e71e949027b/KRNB_A_2298532_F0001_OC.jpg

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