PMID: 1202228Sep 8, 1975Paper

The amino acid sequence of myoglobin from skeletal muscles of red deer (Cervus elaphus)

Journal of Molecular Evolution
W Votsch, F A Anderer

Abstract

Red deer myoglobin has been fragmented by restricted tryptic digestion and by treatment with cyanogen bromide. The fragments have been separated by gel permeation. The core peptide derived from cyanogen bromide cleavage have been further digested with trypsin and the resulting peptides have been separated on Dowex 1X2. All fragments have been characterized by their amino acid composition, by determination of their N-terminal sequence using automatic Edman degradation and of their C-terminal sequence following the kinetics of amino acid cleavage by carboxypeptidases A and B. The complete sequence has been found to be identical with the already known sequence of sheep myoglobin except for residue 145 which is Gln in red deer globin and Glu in sheep globin. Reinvestigation of the corresponding sequence in sheep globin has shown that residue 145 of sheep globin is also Gln.

References

Jul 1, 1970·Zeitschrift Für Naturforschung. Teil B. Anorganische Chemie, Organische Chemie, Biochemie, Biophysik, Biologie·H HagenmaierW Vötsch
Feb 1, 1972·Zeitschrift Für Naturforschung. Teil B. Anorganische Chemie, Organische Chemie, Biochemie, Biophysik, Biologie·W Vötsch, F A Anderer
Feb 29, 1972·Biochimica Et Biophysica Acta·J JollèsP Jollès
Jun 9, 1972·European Journal of Biochemistry·K K HanC Kopeyan
Sep 1, 1968·The Biochemical Journal·H B Dixon, R N Perham
Sep 23, 1969·Journal of Chromatography·K Bünnig, R Hamm
Mar 1, 1967·European Journal of Biochemistry·P Edman, G Begg
Jun 10, 1971·FEBS Letters·K HanG Biserte
Oct 1, 1959·Biochimica Et Biophysica Acta·F W TEALE

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Citations

Jul 1, 1980·Journal of Molecular Evolution·R A BogardtF R Gurd
Jun 15, 2013·Science·Scott MircetaMichael Berenbrink
May 27, 1977·Biochimica Et Biophysica Acta·O Castillo, H Lehmann

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