Regulation Progresses of Selenium Improving Intestinal and Extra-Intestinal Tissues Health Through Regulating Gut Microbiota. [PDF]
Fan Y +10 more
europepmc +1 more source
Towards Precision and Balance in Selenium Nutrition: From Innovation to Application. [PDF]
Huang J, Zhu K.
europepmc +1 more source
Architecture of the 8 MDa Hdr-Vhu-Fwd super-assembly in class I methanogens. [PDF]
Paul S +8 more
europepmc +1 more source
Ferreting Out Ferroptosis: Extending the Mechanism of Action of RSL3 to the Selenoproteome in Colorectal Cancer. [PDF]
Short SP.
europepmc +1 more source
Ferroptosis and Ferroptosis-related autophagy: new therapeutic targets for gastric cancer. [PDF]
Huang L +5 more
europepmc +1 more source
Late-Stage Aromatic C-H Bond Functionalization for Cysteine/Selenocysteine Bioconjugation. [PDF]
Zhao Z +7 more
europepmc +1 more source
Phosphine-mediated Reduction of a Selenocysteine Selenenyl Iodide to a Selenocysteine Selenol
Kuwano, Satoru, Fujisaki, Ko, Goto, Kei
openaire +1 more source
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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
openaire +4 more sources
Selenocysteine-containing proteins in mammals
Since the recent discovery of selenocysteine as the 21st amino acid in protein, the field of selenium biology has rapidly expanded. Twelve mammalian selenoproteins have been characterized to date and each contains selenocysteine that is incorporated in response to specific UGA code words.
Vadim N. Gladyshev, D L Hatfield
exaly +4 more sources

