Homoserín (Slovak Wikipedia)

Analysis of information sources in references of the Wikipedia article "Homoserín" in Slovak language version.

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doi.org

dx.doi.org

  • KAISER, Raymond; METZKA, Lorraine. Enhancement of Cyanogen Bromide Cleavage Yields for Methionyl-Serine and Methionyl-Threonine Peptide Bonds. Analytical Biochemistry, 1999-01-01, roč. 266, čís. 1, s. 1–8. Dostupné online [cit. 2022-12-07]. ISSN 0003-2697. DOI10.1006/abio.1998.2945. (po anglicky)
  • Studies on the Synthesis of l -Amino Acids: Part III. A Synthesis of l -Homoserine from l -Aspartic Acid. Agricultural and Biological Chemistry, September 1961, s. 678–679. Dostupné online. ISSN 0002-1369. DOI10.1080/00021369.1961.10857862. (po anglicky)
  • The Central Enzymes of the Aspartate Family of Amino Acid Biosynthesis. Accounts of Chemical Research, 2001, s. 339–349. DOI10.1021/ar000057q. PMID 11352712.
  • Multiplex Design of the Metabolic Network for Production of l-Homoserine in Escherichia coli. Applied and Environmental Microbiology, October 2020. DOI10.1128/AEM.01477-20. PMID 32801175.
  • Reduction of Feedback Inhibition in Homoserine Kinase (ThrB) of Corynebacterium glutamicum Enhances l-Threonine Biosynthesis. ACS Omega, January 2018, s. 1178–1186. DOI10.1021/acsomega.7b01597. PMID 30023797.
  • Metabolic engineering of E. coli for the production of O-succinyl-l-homoserine with high yield. 3 Biotech, July 2018, s. 310. DOI10.1007/s13205-018-1332-x. PMID 30002999.
  • The crystal structure of homoserine dehydrogenase complexed with l-homoserine and NADPH in a closed form. Journal of Biochemistry, February 2019, s. 185–195. DOI10.1093/jb/mvy094. PMID 30423116.
  • Homoserine as an Aspartic Acid Precursor for Synthesis of Proteoglycan Glycopeptide Containing Aspartic Acid and a Sulfated Glycan Chain. The Journal of Organic Chemistry, December 2016, s. 12052–12059. DOI10.1021/acs.joc.6b02441. PMID 27809505.

nih.gov

ncbi.nlm.nih.gov

  • The Central Enzymes of the Aspartate Family of Amino Acid Biosynthesis. Accounts of Chemical Research, 2001, s. 339–349. DOI10.1021/ar000057q. PMID 11352712.
  • Multiplex Design of the Metabolic Network for Production of l-Homoserine in Escherichia coli. Applied and Environmental Microbiology, October 2020. DOI10.1128/AEM.01477-20. PMID 32801175.
  • Reduction of Feedback Inhibition in Homoserine Kinase (ThrB) of Corynebacterium glutamicum Enhances l-Threonine Biosynthesis. ACS Omega, January 2018, s. 1178–1186. DOI10.1021/acsomega.7b01597. PMID 30023797.
  • Metabolic engineering of E. coli for the production of O-succinyl-l-homoserine with high yield. 3 Biotech, July 2018, s. 310. DOI10.1007/s13205-018-1332-x. PMID 30002999.
  • The crystal structure of homoserine dehydrogenase complexed with l-homoserine and NADPH in a closed form. Journal of Biochemistry, February 2019, s. 185–195. DOI10.1093/jb/mvy094. PMID 30423116.
  • Homoserine as an Aspartic Acid Precursor for Synthesis of Proteoglycan Glycopeptide Containing Aspartic Acid and a Sulfated Glycan Chain. The Journal of Organic Chemistry, December 2016, s. 12052–12059. DOI10.1021/acs.joc.6b02441. PMID 27809505.

oup.com

academic.oup.com

sciencedirect.com

  • KAISER, Raymond; METZKA, Lorraine. Enhancement of Cyanogen Bromide Cleavage Yields for Methionyl-Serine and Methionyl-Threonine Peptide Bonds. Analytical Biochemistry, 1999-01-01, roč. 266, čís. 1, s. 1–8. Dostupné online [cit. 2022-12-07]. ISSN 0003-2697. DOI10.1006/abio.1998.2945. (po anglicky)

worldcat.org