Foliar application of selenium increased selenium accumulation, speciation, and bioaccessibility, as well as the yield and nutritional quality of sweet maize. [PDF]
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Altered transposon element-derived genes distort oxygen-free radical scavenger systems in FXD. [PDF]
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Characterization and enzymatic function of thioredoxin glutathione reductase in Orientobilharzia turkestanicum isolated from Xizang. [PDF]
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Adapt or Perish: Efficient Selenocysteine Insertion Is Critical for Metastasizing Cancer Cells. [PDF]
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3S-DB identifies an RNA repository facilitating stop codon readthrough for selenocysteine insertion and selenoproteome expansion. [PDF]
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Recent advances in site-specific modifications of peptides and proteins. [PDF]
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Selenium and Selenocysteine in Protein Chemistry
Angewandte Chemie - International Edition, 2017AbstractSelenocysteine, the selenium‐containing analogue of cysteine, is the twenty‐first proteinogenic amino acid. Since its discovery almost fifty years ago, it has been exploited in unnatural systems even more often than in natural systems. Selenocysteine chemistry has attracted the attention of many chemists in the field of chemical biology owing ...
Norman Metanis
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Selenocysteine is recognized as the 21st amino acid in ribosome-mediated protein synthesis and its specific incorporation is directed by the UGA codon. Unique tRNAs that have complementary UCA anticodons are aminoacylated with serine, the seryl-tRNA is converted to selenocysteyl-tRNA and the latter binds specifically to a special elongation factor and
K, Forchhammer, K, Boesmiller, A, Böck
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About 50 years ago, research on the biological function of the element selenium was initiated by the report of J. Pinsent that generation of formate dehydrogenase activity by Escherichia coli requires the presence of both selenite and molybdate in the growth medium.
Böck, A. +1 more
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