| Literature DB >> 25972888 |
Abstract
Elongator, a six-subunit protein complex, was initially isolated as an interactor of hyperphosphorylated RNA polymerase II in yeast, and was subsequently identified in animals and plants. Elongator has been implicated in multiple cellular activities or biological processes including tRNA modification, histone modification, DNA demethylation or methylation, tubulin acetylation, and exocytosis. Studies in the model plant Arabidopsis thaliana suggest that the structure of Elongator and its functions are highly conserved between plants and yeast. Disruption of the Elongator complex in plants leads to aberrant growth and development, resistance to abiotic stresses, and susceptibility to plant pathogens. The morphological and physiological phenotypes of Arabidopsis Elongator mutants are associated with decreased histone acetylation and/or altered DNA methylation. This review summarizes recent findings related to the epigenetic function of Elongator in plant development and responses to abiotic and biotic stresses.Entities:
Keywords: DNA methylation; Elongator; abiotic stress; histone acetylation; plant development; plant immunity; tRNA modification
Year: 2015 PMID: 25972888 PMCID: PMC4413731 DOI: 10.3389/fpls.2015.00296
Source DB: PubMed Journal: Front Plant Sci ISSN: 1664-462X Impact factor: 5.753
A timeline for the establishment of Elongator’s function in plants.
| Elongator mutant/subunit | Topic | Reference |
|---|---|---|
| Mutants with abnormal shaped leaves | ||
| ELO4/DRL1 | Identification of ELO4 as DRL1, a homolog of the yeast Elongator-associated protein KTI12 | |
| ELO1/AtELP4, ELO2/AtELP1, ELO3/ AtELP3 | Identification of three Elongator subunits and their function in cell proliferation during organ growth in | |
| Role of ABO1/ELO2/AtELP1 in modulating ABA and drought responses; functional conservation between AtELP1 and yeast ELP1 | ||
| ELO1/AtELP4 | Cytological investigation of the | |
| HAG3/AtELP3 | Involvement of HAG3/AtELP3 in | |
| ELO1/AtELP4, ABO1/ELO2/AtELP1, AtELP2, AtELP6 | Role of four Elongator subunits in ABA response, oxidative stress, and anthocyanin biosynthesis; different functions of two subcomplexes in ABA-mediated stomatal movement | |
| All six subunits | Purification of the | |
| ELO2/AtELP1, ELO3/AtELP3 | Functional conservation of tRNA modifications between plants and yeast | |
| AtELP1, ELO4/DRL1 | Role of AtELP1 and ELO4/DRL1 in ncm5 uridine modifications of tRNA | |
| Role of GNS1/AtELP2 in plant immunity | ||
| ELO3/AtELP3 | Function of ELO3/AtELP3 in the establishment of leaf adaxial–abaxial polarity | |
| ELO1/AtELP4, ELO2/AtELP1, ELO3/AtELP3, ELO4/DRL1 | Function of three Elongator subunits in regulating mitotic cell cycle and leaf patterning in | |
| AtELP2 | Epigenetic function of AtELP2 in plant immunity | |
| Role of AtELP3 and its histone acetyltransferase (HAT) and | ||
| SlELP2L, a tomato Elongator complex protein 2-like protein | Function of SlELP2L in tomato growth and development |
Epigenetic changes in Arabidopsis Elongator mutants.
| Epigenetic change | Target gene/region | Biological process | Reference |
|---|---|---|---|
| Histone acetylation | Histone H3K14 at the coding regions and/or 3’-UTRs of | Auxin signaling/cell proliferation | |
| Histone H3K9/14 at the coding regions of | Salicylic acid (SA) signaling/plant immunity | ||
| Cellular levels of acetylated histone H3 and H4 and chromatin-bound H3K56 and H4K5 within replicons in | Mitotic cell cycle | ||
| Histone H3K9/14 at the coding regions of | JA/ET signaling/plant immunity | Wang and Mou (unpublished data) | |
| DNA methylation | DNA methylation landscape and pathogen-induced DNA methylation changes at the | SA signaling/plant immunity |