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PLoS Biol. 2009 May 5;7(5):e1000107. doi: 10.1371/journal.pbio.1000107. Epub 2009 May 26.
2
The chromatin remodeler SPLAYED regulates specific stress signaling pathways.染色质重塑因子SPLAYED调控特定的应激信号通路。
PLoS Pathog. 2008 Dec;4(12):e1000237. doi: 10.1371/journal.ppat.1000237. Epub 2008 Dec 12.
3
The Arabidopsis homologs of CCR4-associated factor 1 show mRNA deadenylation activity and play a role in plant defence responses.CCR4相关因子1的拟南芥同源物具有mRNA去腺苷酸化活性,并在植物防御反应中发挥作用。
Cell Res. 2009 Mar;19(3):307-16. doi: 10.1038/cr.2008.317.
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Kill the messenger: mRNA decay and plant development.杀死信使:信使核糖核酸降解与植物发育
Curr Opin Plant Biol. 2009 Feb;12(1):96-102. doi: 10.1016/j.pbi.2008.09.003. Epub 2008 Nov 5.
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Transient transcriptional responses to stress are generated by opposing effects of mRNA production and degradation.对压力的瞬时转录反应是由mRNA产生和降解的相反作用产生的。
Mol Syst Biol. 2008;4:223. doi: 10.1038/msb.2008.59. Epub 2008 Oct 14.
6
Galactinol and raffinose constitute a novel function to protect plants from oxidative damage.棉子糖和水苏糖具有保护植物免受氧化损伤的新功能。
Plant Physiol. 2008 Jul;147(3):1251-63. doi: 10.1104/pp.108.122465. Epub 2008 May 23.
7
A role for Caf1 in mRNA deadenylation and decay in trypanosomes and human cells.Caf1在锥虫和人类细胞的mRNA去腺苷酸化及衰变中的作用。
Nucleic Acids Res. 2008 Jun;36(10):3374-88. doi: 10.1093/nar/gkn108. Epub 2008 Apr 27.
8
Genome-wide high-resolution mapping of exosome substrates reveals hidden features in the Arabidopsis transcriptome.外泌体底物的全基因组高分辨率图谱揭示了拟南芥转录组中的隐藏特征。
Cell. 2007 Dec 28;131(7):1340-53. doi: 10.1016/j.cell.2007.10.056.
9
Genome-wide analysis of mRNA decay rates and their determinants in Arabidopsis thaliana.拟南芥mRNA衰减率及其决定因素的全基因组分析。
Plant Cell. 2007 Nov;19(11):3418-36. doi: 10.1105/tpc.107.055046. Epub 2007 Nov 16.
10
Mechanical stress induces biotic and abiotic stress responses via a novel cis-element.机械应力通过一种新型顺式作用元件诱导生物和非生物胁迫反应。
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拟南芥脱腺苷酶 AtCAF1a 和 AtCAF1b 在介导环境胁迫反应中发挥重叠且不同的作用。

Arabidopsis deadenylases AtCAF1a and AtCAF1b play overlapping and distinct roles in mediating environmental stress responses.

机构信息

Department of Plant Biology, University of California, Davis, California 95616, USA.

出版信息

Plant Physiol. 2010 Feb;152(2):866-75. doi: 10.1104/pp.109.149005. Epub 2009 Dec 2.

DOI:10.1104/pp.109.149005
PMID:19955262
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2815882/
Abstract

To maintain homeostasis in an ever-changing environment organisms have evolved mechanisms to reprogram gene expression. One central mechanism regulating gene expression is messenger RNA (mRNA) degradation, which is initiated by poly(A) tail shortening (deadenylation). The carbon catabolite repressor 4-CCR4 associated factor1 (CCR4-CAF1) complex is the major enzyme complex that catalyzes mRNA deadenylation and is conserved among eukaryotes. However, the components and functions of this global regulatory complex have not been well characterized in plants. Here we investigate the CAF1 family in Arabidopsis (Arabidopsis thaliana). We identify 11 AtCAF1 homologs and show that a subset of these genes are responsive to mechanical wounding, among them are AtCAF1a and AtCAF1b whose expression levels are rapidly and transiently induced by wounding. The differential expression profiles of the various AtCAF1s suggest that not all AtCAF1 genes are involved in stress-responsive regulation of transcript levels. Comparison of misexpressed genes identified via transcript profiling of Atcaf1a and Atcaf1b mutants at different time points before and after wounding suggests that AtCAF1a and AtCAF1b target shared and unique transcripts for deadenylation with temporal specificity. Consistent with the AtPI4Kgamma3 transcript exhibiting the largest increase in abundance in Atcaf1b, AtCAF1b targets AtPI4Kgamma3 mRNA for deadenylation. Stress-tolerance assays demonstrate that AtCAF1a and AtCAF1b are involved in mediating abiotic stress responses. However, AtCAF1a and AtCAF1b are not functionally redundant in all cases, nor are they essential for all environmental stresses. These findings demonstrate that these closely related proteins exhibit overlapping and distinct roles with respect to mRNA deadenylation and mediation of stress responses.

摘要

为了在不断变化的环境中维持内稳态,生物体进化出了重新编程基因表达的机制。调节基因表达的一个中心机制是信使 RNA(mRNA)降解,它由聚(A)尾缩短(去腺苷酸化)引发。碳分解代谢物阻遏物 4-CCR4 相关因子 1(CCR4-CAF1)复合物是催化 mRNA 去腺苷酸化的主要酶复合物,在真核生物中保守。然而,这个全球调节复合物的组成和功能在植物中尚未得到很好的描述。在这里,我们研究了拟南芥(Arabidopsis thaliana)中的 CAF1 家族。我们鉴定了 11 个 AtCAF1 同源物,并表明其中一部分基因对机械损伤有反应,其中包括 AtCAF1a 和 AtCAF1b,它们的表达水平在受到损伤后迅速而短暂地被诱导。不同 AtCAF1 的差异表达谱表明,并非所有 AtCAF1 基因都参与了应激响应调节转录水平。通过比较 Atcaf1a 和 Atcaf1b 突变体在受伤前后不同时间点的转录谱鉴定的差异表达基因的比较表明,AtCAF1a 和 AtCAF1b 以时间特异性的方式靶向共享和独特的去腺苷酸化靶标。与 AtPI4Kgamma3 转录物在 Atcaf1b 中丰度增加最大一致,AtCAF1b 靶向 AtPI4Kgamma3 mRNA 进行去腺苷酸化。应激耐受测定表明,AtCAF1a 和 AtCAF1b 参与介导非生物胁迫反应。然而,在所有情况下,AtCAF1a 和 AtCAF1b 并非在功能上是冗余的,它们也不是所有环境胁迫所必需的。这些发现表明,这些密切相关的蛋白质在 mRNA 去腺苷酸化和应激反应的介导方面表现出重叠和不同的作用。