Studies on ornithine decarboxylase antizyme. 1988

S Hayashi, and Y Murakami, and S Matsufuji, and M Nishiyama, and R Kanamoto, and T Kameji
Department of Nutrition, Jikei University School of Medicine, Tokyo, Japan.

UI MeSH Term Description Entries
D011488 Protein Deficiency A nutritional condition produced by a deficiency of proteins in the diet, characterized by adaptive enzyme changes in the liver, increase in amino acid synthetases, and diminution of urea formation, thus conserving nitrogen and reducing its loss in the urine. Growth, immune response, repair, and production of enzymes and hormones are all impaired in severe protein deficiency. Protein deficiency may also arise in the face of adequate protein intake if the protein is of poor quality (i.e., the content of one or more amino acids is inadequate and thus becomes the limiting factor in protein utilization). (From Merck Manual, 16th ed; Harrison's Principles of Internal Medicine, 12th ed, p406) Deficiency, Protein,Deficiencies, Protein,Protein Deficiencies
D011506 Proteins Linear POLYPEPTIDES that are synthesized on RIBOSOMES and may be further modified, crosslinked, cleaved, or assembled into complex proteins with several subunits. The specific sequence of AMINO ACIDS determines the shape the polypeptide will take, during PROTEIN FOLDING, and the function of the protein. Gene Products, Protein,Gene Proteins,Protein,Protein Gene Products,Proteins, Gene
D006801 Humans Members of the species Homo sapiens. Homo sapiens,Man (Taxonomy),Human,Man, Modern,Modern Man
D000818 Animals Unicellular or multicellular, heterotrophic organisms, that have sensation and the power of voluntary movement. Under the older five kingdom paradigm, Animalia was one of the kingdoms. Under the modern three domain model, Animalia represents one of the many groups in the domain EUKARYOTA. Animal,Metazoa,Animalia
D014176 Protein Biosynthesis The biosynthesis of PEPTIDES and PROTEINS on RIBOSOMES, directed by MESSENGER RNA, via TRANSFER RNA that is charged with standard proteinogenic AMINO ACIDS. Genetic Translation,Peptide Biosynthesis, Ribosomal,Protein Translation,Translation, Genetic,Protein Biosynthesis, Ribosomal,Protein Synthesis, Ribosomal,Ribosomal Peptide Biosynthesis,mRNA Translation,Biosynthesis, Protein,Biosynthesis, Ribosomal Peptide,Biosynthesis, Ribosomal Protein,Genetic Translations,Ribosomal Protein Biosynthesis,Ribosomal Protein Synthesis,Synthesis, Ribosomal Protein,Translation, Protein,Translation, mRNA,mRNA Translations

Related Publications

S Hayashi, and Y Murakami, and S Matsufuji, and M Nishiyama, and R Kanamoto, and T Kameji
January 1983, Methods in enzymology,
S Hayashi, and Y Murakami, and S Matsufuji, and M Nishiyama, and R Kanamoto, and T Kameji
January 1988, Advances in experimental medicine and biology,
S Hayashi, and Y Murakami, and S Matsufuji, and M Nishiyama, and R Kanamoto, and T Kameji
January 1995, Essays in biochemistry,
S Hayashi, and Y Murakami, and S Matsufuji, and M Nishiyama, and R Kanamoto, and T Kameji
March 1998, Biochimica et biophysica acta,
S Hayashi, and Y Murakami, and S Matsufuji, and M Nishiyama, and R Kanamoto, and T Kameji
April 2000, Proceedings of the National Academy of Sciences of the United States of America,
S Hayashi, and Y Murakami, and S Matsufuji, and M Nishiyama, and R Kanamoto, and T Kameji
May 1999, Gene,
S Hayashi, and Y Murakami, and S Matsufuji, and M Nishiyama, and R Kanamoto, and T Kameji
August 2011, The Journal of biological chemistry,
S Hayashi, and Y Murakami, and S Matsufuji, and M Nishiyama, and R Kanamoto, and T Kameji
January 1980, The International journal of biochemistry,
S Hayashi, and Y Murakami, and S Matsufuji, and M Nishiyama, and R Kanamoto, and T Kameji
January 2009, Genes to cells : devoted to molecular & cellular mechanisms,
S Hayashi, and Y Murakami, and S Matsufuji, and M Nishiyama, and R Kanamoto, and T Kameji
April 1983, Journal of neurochemistry,
Copied contents to your clipboard!