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KOPPLE, JD.; SWENDSEID, ME. Evidence that histidine is an essential amino acid in normal and chronically uremic man.. J Clin Invest. May 1975, roč. 55, čís. 5, s. 881–91. Dostupné online. DOI10.1172/JCI108016. PMID1123426.
ZHENG, G.; SCHAEFER, M.; KARPLUS, M. Hemoglobin Bohr effects: atomic origin of the histidine residue contributions.. Biochemistry. Nov 2013, roč. 52, čís. 47, s. 8539–55. DOI10.1021/bi401126z. PMID24224786.
WANG, L.; SUN, N.; TERZYAN, S., et al. A histidine/tryptophan pi-stacking interaction stabilizes the heme-independent folding core of microsomal apocytochrome b5 relative to that of mitochondrial apocytochrome b5.. Biochemistry. Nov 2006, roč. 45, čís. 46, s. 13 750 – 13 759. DOI10.1021/bi0615689. PMID17105194.
ATTWOOD, PV. Histidine kinases from bacteria to humans.. Biochem Soc Trans. Aug 2013, roč. 41, čís. 4, s. 1023–8. DOI10.1042/BST20130019. PMID23863173.
SCHAFFRATH, R.; ABDEL-FATTAH, W.; KLASSEN, R., et al. The diphthamide modification pathway from Saccharomyces cerevisiae - revisited.. Mol Microbiol. Dec 2014, roč. 94, čís. 6, s. 1213–26. DOI10.1111/mmi.12845. PMID25352115.
nih.gov
ncbi.nlm.nih.gov
KOPPLE, JD.; SWENDSEID, ME. Evidence that histidine is an essential amino acid in normal and chronically uremic man.. J Clin Invest. May 1975, roč. 55, čís. 5, s. 881–91. Dostupné online. DOI10.1172/JCI108016. PMID1123426.
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ZHENG, G.; SCHAEFER, M.; KARPLUS, M. Hemoglobin Bohr effects: atomic origin of the histidine residue contributions.. Biochemistry. Nov 2013, roč. 52, čís. 47, s. 8539–55. DOI10.1021/bi401126z. PMID24224786.
WANG, L.; SUN, N.; TERZYAN, S., et al. A histidine/tryptophan pi-stacking interaction stabilizes the heme-independent folding core of microsomal apocytochrome b5 relative to that of mitochondrial apocytochrome b5.. Biochemistry. Nov 2006, roč. 45, čís. 46, s. 13 750 – 13 759. DOI10.1021/bi0615689. PMID17105194.
ATTWOOD, PV. Histidine kinases from bacteria to humans.. Biochem Soc Trans. Aug 2013, roč. 41, čís. 4, s. 1023–8. DOI10.1042/BST20130019. PMID23863173.
SCHAFFRATH, R.; ABDEL-FATTAH, W.; KLASSEN, R., et al. The diphthamide modification pathway from Saccharomyces cerevisiae - revisited.. Mol Microbiol. Dec 2014, roč. 94, čís. 6, s. 1213–26. DOI10.1111/mmi.12845. PMID25352115.