例如:"lncRNA", "apoptosis", "WRKY"

Osmotic stress induces phosphorylation of histone H3 at threonine 3 in pericentromeric regions of Arabidopsis thaliana.

Proc. Natl. Acad. Sci. U.S.A.2015 Jul 7;112(27):8487-92. Epub 2015 Jun 22
Zhen Wang 1 , Juan Armando Casas-Mollano 1 , Jianping Xu 1 , Jean-Jack M Riethoven 2 , Chi Zhang 1 , Heriberto Cerutti 3
Zhen Wang 1 , Juan Armando Casas-Mollano 1 , Jianping Xu 1 , Jean-Jack M Riethoven 2 , Chi Zhang 1 , Heriberto Cerutti 3
+ et al

[No authors listed]

Author information
  • 1 School of Biological Sciences and Center for Plant Science Innovation, University of Nebraska, Lincoln, NE 68588;
  • 2 Center for Biotechnology, University of Nebraska, Lincoln, NE 68588.
  • 3 School of Biological Sciences and Center for Plant Science Innovation, University of Nebraska, Lincoln, NE 68588; hcerutti1@unl.edu.

摘要


Histone phosphorylation plays key roles in stress-induced transcriptional reprogramming in metazoans but its function(s) in land plants has remained relatively unexplored. Here we report that an Arabidopsis mutant defective in At3g03940 and At5g18190, encoding closely related Ser/Thr protein kinases, shows pleiotropic phenotypes including dwarfism and hypersensitivity to osmotic/salt stress. The double mutant has reduced global levels of phosphorylated histone H3 threonine 3 (H3T3ph), which are not enhanced, unlike the response in the wild type, by drought-like treatments. Genome-wide analyses revealed increased H3T3ph, slight enhancement in trimethylated histone H3 lysine 4 (H3K4me3), and a modest decrease in histone H3 occupancy in pericentromeric/knob regions of wild-type plants under osmotic stress. However, despite these changes in heterochromatin, transposons and repeats remained transcriptionally repressed. In contrast, this reorganization of heterochromatin was mostly absent in the double mutant, which exhibited lower H3T3ph levels in pericentromeric regions even under normal environmental conditions. Interestingly, within actively transcribed protein-coding genes, H3T3ph density was minimal in 5' genic regions, coincidental with a peak of H3K4me3 accumulation. This pattern was not affected in the double mutant, implying the existence of additional H3T3 protein kinases in Arabidopsis. Our results suggest that At3g03940 and At5g18190 are involved in the phosphorylation of H3T3 in pericentromeric/knob regions and that this repressive epigenetic mark may be important for maintaining proper heterochromatic organization and, possibly, chromosome function(s).

KEYWORDS: abiotic stress, epigenetics, heterochromatin, histone phosphorylation, protein kinase

原始数据


 保存测序数据
Sample name
Organism Experiment title Sample type Library instrument Attributes
agechip antibodygenotypesource nametissue
rosettes_dm_watered_H3_rep1
Arabidopsis thaliana GSM1669414: rosettes_dm_watered_H3_rep1; Arabidopsis thaliana; ChIP-Seq ChIP-Seq Illumina Genome Analyzer II 21 days H3 double mutant at3g03940/at518190 -/- rosette leaves rosette leaves
rosettes_wildtype_peg_H3T3ph_rep5
Arabidopsis thaliana GSM1669413: rosettes_wildtype_peg_H3T3ph_rep5; Arabidopsis thaliana; ChIP-Seq ChIP-Seq Illumina Genome Analyzer II 21 days H3T3ph Col0 rosette leaves rosette leaves
rosettes_wildtype_peg_H3T3ph_rep4
Arabidopsis thaliana GSM1669412: rosettes_wildtype_peg_H3T3ph_rep4; Arabidopsis thaliana; ChIP-Seq ChIP-Seq Illumina Genome Analyzer II 21 days H3T3ph Col0 rosette leaves rosette leaves
rosettes_wildtype_peg_H3T3ph_rep3
Arabidopsis thaliana GSM1669411: rosettes_wildtype_peg_H3T3ph_rep3; Arabidopsis thaliana; ChIP-Seq ChIP-Seq Illumina Genome Analyzer II 21 days H3T3ph Col0 rosette leaves rosette leaves
rosettes_wildtype_peg_H3T3ph_rep2
Arabidopsis thaliana GSM1669410: rosettes_wildtype_peg_H3T3ph_rep2; Arabidopsis thaliana; ChIP-Seq ChIP-Seq Illumina Genome Analyzer II 21 days H3T3ph Col0 rosette leaves rosette leaves