Bhat Susheel Sagar, Asgari Mishaneh, Mermet Sarah, Mishra Priyanka, Kindgren Peter
Umeå Plant Science Centre, Department of Forest Genetics and Plant Physiology, Swedish University of Agricultural Sciences, 90187 Umea, Sweden.
Plant Physiol. 2024 Dec 2;196(4):2625-2637. doi: 10.1093/plphys/kiae503.
Regulation of gene expression is at the frontier of plant responses to various external stimuli including stress. RNA polymerase-based transcription and post-transcriptional degradation of RNA play vital roles in this regulation. Here, we show that HUA ENHANCER 2 (HEN2), a co-factor of the nuclear exosome complex, influences RNAPII transcription elongation in Arabidopsis (Arabidopsis thaliana) under cold conditions. Our results demonstrate that a hen2 mutant is cold sensitive and undergoes substantial transcriptional changes compared to wild type when exposed to cold conditions. We found an accumulation of 5' fragments from a subset of genes (including C-repeat binding factors 1-3 [CBF1-3]) that do not carry over to their 3' ends. In fact, hen2 mutants have lower levels of full-length mRNA for a subset of genes. This distinct 5'-end accumulation and 3'-end depletion was not observed in other NEXT complex members or core exosome mutants, highlighting HEN2's distinctive role. We further used RNAPII-associated nascent RNA to confirm that the transcriptional phenotype is a result of lower active transcription specifically at the 3' end of these genes in a hen2 mutant. Taken together, our data point to the unique role of HEN2 in maintaining RNAPII transcription dynamics especially highlighted under cold stress.
基因表达调控处于植物对包括胁迫在内的各种外部刺激作出反应的前沿领域。基于RNA聚合酶的转录以及RNA的转录后降解在这种调控中发挥着至关重要的作用。在此,我们表明,核外泌体复合物的一个辅助因子HUA增强子2(HEN2)在低温条件下影响拟南芥中的RNA聚合酶II转录延伸。我们的结果表明,hen2突变体对低温敏感,并且在暴露于低温条件下时与野生型相比经历了大量的转录变化。我们发现来自一部分基因(包括C重复结合因子1 - 3 [CBF1 - 3])的5'片段积累,但这些片段并未延伸至其3'末端。事实上,hen2突变体中一部分基因的全长mRNA水平较低。在其他NEXT复合物成员或核心外泌体突变体中未观察到这种明显的5'端积累和3'端缺失,这突出了HEN2的独特作用。我们进一步使用与RNA聚合酶II相关的新生RNA来证实,转录表型是hen2突变体中这些基因3'端活性转录降低的结果。综上所述,我们的数据表明HEN2在维持RNA聚合酶II转录动态方面具有独特作用,尤其是在低温胁迫下尤为突出。