Selenocysteine incorporation directed from the 3'UTR: characterization of eukaryotic EFsec and mechanistic implications.
about
SECIS elements in the coding regions of selenoprotein transcripts are functional in higher eukaryotesIdentification and functional characterization of the candidate tumor suppressor gene TRIT1 in human lung cancer.Selective up-regulation of human selenoproteins in response to oxidative stressRegulation and function of selenoproteins in human diseaseExpanding the repertoire of the eukaryotic selenoproteome.Trends in selenium biochemistry.Galectin-1 is an interactive protein of selenoprotein M in the brain.Intracellular trafficking of micronutrients: from gene regulation to nutrient requirements.Correlation between selenium concentrations and glutathione peroxidase activity in serum and human prostate tissue.Regulation of gene expression by stop codon recoding: selenocysteine.Selenium and chronic diseases: a nutritional genomics perspective.Impact of trivalent arsenicals on selenoprotein synthesisA quantitative model for the rate-limiting process of UGA alternative assignments to stop and selenocysteine codons.Selenium uptake, translocation, assimilation and metabolic fate in plants.Arsenic trioxide and auranofin inhibit selenoprotein synthesis: implications for chemotherapy for acute promyelocytic leukaemia.Selenium in the Therapy of Neurological Diseases. Where is it Going?Translational redefinition of UGA codons is regulated by selenium availabilityNovel structural determinants in human SECIS elements modulate the translational recoding of UGA as selenocysteine.Secondary structure and stability of the selenocysteine insertion sequences (SECIS) for human thioredoxin reductase and glutathione peroxidase.Interplay between selenium levels, selenoprotein expression, and replicative senescence in WI-38 human fibroblasts.Impact of dietary selenium intake on cardiac health: experimental approaches and human studies.Bioavailability of selenium from the selenotrisulphide derivative of lipoic acid.SECIS-binding protein 2 interacts with the SMN complex and the methylosome for selenoprotein mRNP assembly and translation.Functional analysis of the interplay between translation termination, selenocysteine codon context, and selenocysteine insertion sequence-binding protein 2.Effects of sodium selenite on c-Jun N-terminal kinase signalling pathway induced by oxidative stress in human chondrocytes and c-Jun N-terminal kinase expression in patients with Kashin-Beck disease, an endemic osteoarthritis.
P2860
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P2860
Selenocysteine incorporation directed from the 3'UTR: characterization of eukaryotic EFsec and mechanistic implications.
description
2001 nî lūn-bûn
@nan
2001 թուականի Յունուարին հրատարակուած գիտական յօդուած
@hyw
2001 թվականի հունվարին հրատարակված գիտական հոդված
@hy
2001年の論文
@ja
2001年論文
@yue
2001年論文
@zh-hant
2001年論文
@zh-hk
2001年論文
@zh-mo
2001年論文
@zh-tw
2001年论文
@wuu
name
Selenocysteine incorporation d ...... and mechanistic implications.
@ast
Selenocysteine incorporation d ...... and mechanistic implications.
@en
Selenocysteine incorporation d ...... and mechanistic implications.
@nl
type
label
Selenocysteine incorporation d ...... and mechanistic implications.
@ast
Selenocysteine incorporation d ...... and mechanistic implications.
@en
Selenocysteine incorporation d ...... and mechanistic implications.
@nl
prefLabel
Selenocysteine incorporation d ...... and mechanistic implications.
@ast
Selenocysteine incorporation d ...... and mechanistic implications.
@en
Selenocysteine incorporation d ...... and mechanistic implications.
@nl
P2093
P356
P1433
P1476
Selenocysteine incorporation d ...... and mechanistic implications.
@en
P2093
Carlson BA
Copeland PR
Driscoll DM
Grundner-Culemann E
Hatfield DL
Mansell JB
Martin GW 3rd
P356
10.1002/BIOF.5520140104
P577
2001-01-01T00:00:00Z