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These results identified SAL1 as a new component mediating cadmium (Cd) toxicity and established the role of the endoplasmic reticulum stress response in Cd toxicity.
this study revealed several new phenotypes caused by disruption of FIERY1, the decrease in glucosinolate content and in accumulation of sulfur and potassium.
SAL1 regulates its levels by dephosphorylating 3'-phosphoadenosine 5'-phosphate and accumulates in chloroplasts and mitochondria but not in the cytosol
The genetic interaction between HY5 and FRY1 indicates that HY5 and FRY1 may act in overlapping pathways that mediate light signaling and lateral root development.
RNA silencing modulated by FRY1 and XRN4 plays an important role in shaping root architecture.
SAL1 acts in the chloroplast compartment to dephosphorylate phosphoadenosine phosphosulfate. Mutation of the SAL1 gene led to deregulated LOX (show LOX Proteins) activity and jasmonic acid accumulation.
The ron1-1 mutant and mutants affected in auxin homeostasis share perturbations in venation patterning, lateral root formation, root hair length, shoot branching, and apical dominance.
HOS2 is identical to the FIERY1 gene previously described.
The nuclear exoribonucleases XRN2 (show XRN2 Proteins) and XRN3 the nucleotidase/phosphatase FIERY1 are endogenous posttranscriptional gene silencing suppressors.
FRY1 modifies hypocotyl length in a light-dependent fashion and affects light signaling through its 3'(2')5'-bisphosphate nucleotidase activity.
High INPP1 (show INPP1 Proteins) expression is associated with cancer aggressiveness.
results suggest that genetic variability at rs669838-IMPA2,rs4853694-INPP1, rs1732170-GSK3b and rs11921360-GSK3b genes is associated with a higher risk of attempting suicide in bipolar patients.
association study performed between the 5' regulatory region of the serotonin transporter (show SLC6A4 Proteins) gene (5-HTTLPR (show SLC6A4 Proteins)), the inositol polyphosphate 1-phosphatase (show INPP1 Proteins) gene (INPP1 (show INPP1 Proteins)) and bipolar disorder using our sample of proband/parent trios
Inositol polyphosphate 1-phosphatase (show INPP1 Proteins) is a novel antihypertrophic factor.
This gene encodes the enzyme inositol polyphosphate-1-phosphatase, one of the enzymes involved in phosphatidylinositol signaling pathways. This enzyme removes the phosphate group at position 1 of the inositol ring from the polyphosphates inositol 1,4-bisphosphate and inositol 1,3,4-trisphophosphate.
, inositol polyphosphate 1-phosphatase