scholarly article | Q13442814 |
P2093 | author name string | Anne B Britt | |
Victor Missirian | |||
Kevin M Culligan | |||
Neil D Huefner | |||
Phillip A Conklin | |||
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ATM-mediated transcriptional and developmental responses to gamma-rays in Arabidopsis | Q33283998 | ||
The circadian clock regulates auxin signaling and responses in Arabidopsis | Q33293377 | ||
Network discovery pipeline elucidates conserved time-of-day-specific cis-regulatory modules | Q33318085 | ||
Arabidopsis mutants sensitive to gamma radiation include the homologue of the human repair gene ERCC1. | Q33338024 | ||
Tissue-specific regulation of cell-cycle responses to DNA damage in Arabidopsis seedlings | Q33341636 | ||
Suppressor of gamma response 1 (SOG1) encodes a putative transcription factor governing multiple responses to DNA damage | Q33347320 | ||
Hypersensitivity to DNA damage in plant stem cell niches | Q33348230 | ||
Articulation of three core metabolic processes in Arabidopsis: fatty acid biosynthesis, leucine catabolism and starch metabolism | Q33350705 | ||
The Arabidopsis thaliana checkpoint kinase WEE1 protects against premature vascular differentiation during replication stress | Q33351001 | ||
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Ionizing radiation-dependent gamma-H2AX focus formation requires ataxia telangiectasia mutated and ataxia telangiectasia mutated and Rad3-related | Q33768588 | ||
ATM and ATR make distinct contributions to chromosome end protection and the maintenance of telomeric DNA in Arabidopsis | Q34009139 | ||
A plant DNA ligase is an important determinant of seed longevity | Q34123110 | ||
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Regulation of DNA cross-link repair by the Fanconi anemia/BRCA pathway | Q34285356 | ||
A DNA-Damage-Induced Cell Cycle Checkpoint in Arabidopsis | Q34617658 | ||
Distinct transcriptome profiles identified in normal human bronchial epithelial cells after exposure to γ-rays and different elemental particles of high Z and energy | Q34750487 | ||
Mining the genome of Arabidopsis thaliana as a basis for the identification of novel bioactive peptides involved in oxidative stress tolerance | Q34991365 | ||
Programmed induction of endoreduplication by DNA double-strand breaks in Arabidopsis | Q35049063 | ||
Genetic analysis of the Replication Protein A large subunit family in Arabidopsis reveals unique and overlapping roles in DNA repair, meiosis and DNA replication | Q35066354 | ||
Circadian function in cancer: regulating the DNA damage response. | Q35081714 | ||
Age and gender effects on DNA strand break repair in peripheral blood mononuclear cells | Q36101146 | ||
ATM regulates the length of individual telomere tracts in Arabidopsis | Q36156849 | ||
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Effect of circadian clock mutations on DNA damage response in mammalian cells | Q36304194 | ||
Chewing the fat: beta-oxidation in signalling and development | Q36401888 | ||
The diurnal metabolism of leaf starch | Q36675515 | ||
ROS and redox signalling in the response of plants to abiotic stress | Q37864370 | ||
Gene regulation in response to DNA damage | Q37922257 | ||
Metabolism control over growth: a case for trehalose-6-phosphate in plants. | Q37953363 | ||
Nuclear and mitochondrial DNA repair in selected eukaryotic aging model systems | Q38050774 | ||
Reactive oxygen species signaling in plants under abiotic stress | Q38083143 | ||
The ATM protein kinase: regulating the cellular response to genotoxic stress, and more | Q38088935 | ||
A shared DNA-damage-response pathway for induction of stem-cell death by UVB and by gamma irradiation | Q38342454 | ||
KAT5 tyrosine phosphorylation couples chromatin sensing to ATM signalling | Q39147181 | ||
Telomere dynamics and fusion of critically shortened telomeres in plants lacking DNA ligase IV | Q40696254 | ||
Coronatine promotes Pseudomonas syringae virulence in plants by activating a signaling cascade that inhibits salicylic acid accumulation | Q41779808 | ||
Sugar-induced increases in trehalose 6-phosphate are correlated with redox activation of ADPglucose pyrophosphorylase and higher rates of starch synthesis in Arabidopsis thaliana | Q42407854 | ||
The ABC transporter PXA1 and peroxisomal beta-oxidation are vital for metabolism in mature leaves of Arabidopsis during extended darkness | Q43268943 | ||
Identification of Ku70 and Ku80 homologues in Arabidopsis thaliana: evidence for a role in the repair of DNA double-strand breaks | Q44083059 | ||
AtATM is essential for meiosis and the somatic response to DNA damage in plants | Q44267791 | ||
Ku80‐ and DNA ligase IV‐deficient plants are sensitive to ionizing radiation and defective in T‐DNA integration | Q44445346 | ||
Arabidopsis ATM and ATR kinases prevent propagation of genome damage caused by telomere dysfunction. | Q45755401 | ||
Ribonucleotide reductase regulation in response to genotoxic stress in Arabidopsis. | Q45943228 | ||
Global transcript levels respond to small changes of the carbon status during progressive exhaustion of carbohydrates in Arabidopsis rosettes | Q46729748 | ||
Global analysis of the core cell cycle regulators of Arabidopsis identifies novel genes, reveals multiple and highly specific profiles of expression and provides a coherent model for plant cell cycle control | Q48551469 | ||
Arabidopsis WEE1 kinase controls cell cycle arrest in response to activation of the DNA integrity checkpoint. | Q49065118 | ||
Arabidopsis PEROXIN11c-e, FISSION1b, and DYNAMIN-RELATED PROTEIN3A cooperate in cell cycle-associated replication of peroxisomes. | Q53472601 | ||
Growth arrest by trehalose-6-phosphate: an astonishing case of primary metabolite control over growth by way of the SnRK1 signaling pathway. | Q54574592 | ||
The LD50 for uniform low LET irradiation of man | Q70352525 | ||
ATR and ATM play both distinct and additive roles in response to ionizing radiation | Q79570664 | ||
Five Arabidopsis peroxin 11 homologs individually promote peroxisome elongation, duplication or aggregation | Q83194964 | ||
P2507 | corrigendum / erratum | Corrigendum: High atomic weight, high-energy radiation (HZE) induces transcriptional responses shared with conventional stresses in addition to a core "DSB" response specific to clastogenic treatments | Q42365629 |
P4510 | describes a project that uses | limma | Q112236343 |
P304 | page(s) | 364 | |
P577 | publication date | 2014-08-01 | |
P1433 | published in | Frontiers in Plant Science | Q27723840 |
P1476 | title | High atomic weight, high-energy radiation (HZE) induces transcriptional responses shared with conventional stresses in addition to a core "DSB" response specific to clastogenic treatments | |
P478 | volume | 5 |
Q35650249 | Arabidopsis DNA polymerase lambda mutant is mildly sensitive to DNA double strand breaks but defective in integration of a transgene |
Q38531882 | DNA Damage Repair in the Context of Plant Chromatin. |
Q60048618 | Genome-wide identification of RETINOBLASTOMA RELATED 1 binding sites in Arabidopsis reveals novel DNA damage regulators |
Q36138010 | Influence of Human p53 on Plant Development |
Q60959236 | SOG1 activator and MYB3R repressors regulate a complex DNA damage network in |
Q46629903 | SUPPRESSOR OF GAMMA RESPONSE 1 links DNA damage response to organ regeneration |
Q91712059 | Test of Arabidopsis Space Transcriptome: A Discovery Environment to Explore Multiple Plant Biology Spaceflight Experiments |
Q42365629 | Corrigendum: High atomic weight, high-energy radiation (HZE) induces transcriptional responses shared with conventional stresses in addition to a core "DSB" response specific to clastogenic treatments | main subject | P921 |
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