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Journal Abstract Search


127 related items for PubMed ID: 7408841

  • 1. Isomeric incorporation of the haem into monomeric haemoglobins of Chironomus thummi thummi 3. Comparative study of components, I, III and IV.
    Krümpelmann D, Ribbing W, Rüterjans H.
    Eur J Biochem; 1980; 108(1):103-9. PubMed ID: 7408841
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  • 2. Isomeric incorporation of the Haem into monomeric haemoglobins of Chironomus thummi thummi. 2. The Bohr effect of the component III explained on a molecular basis and functional differences between the two isomeric structures.
    Ribbing W, Rüterjans H.
    Eur J Biochem; 1980; 108(1):89-102. PubMed ID: 7408856
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  • 3. Isomeric incorporation of the haem into monomeric haemoglobins of Chironomus thummi thummi. 1. Isolation of chemically homogeneous haemoglobins. Evidence for the isomerism of the haem in the component III.
    Ribbing W, Rüterjans H.
    Eur J Biochem; 1980; 108(1):79-87. PubMed ID: 7408855
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  • 4. Ligand-dependent Bohr effect of Chrionomus hemoglobins.
    Steffens G, Buse G, Wollmer A.
    Eur J Biochem; 1977 Jan 03; 72(1):201-6. PubMed ID: 12977
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  • 5. Proton-magnetic-resonance investigation of the dynamics of the conformational transition in allosteric monomeric insect hemoglobins.
    Chacko VP, La Mar GN, Gersonde K, Sick H.
    Eur J Biochem; 1986 Dec 01; 161(2):375-81. PubMed ID: 3780749
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  • 9. Bohr effect in monomeric insect haemoglobins controlled by O2 off-rate and modulated by haem-rotational disorder.
    Gersonde K, Sick H, Overkamp M, Smith KM, Parish DW.
    Eur J Biochem; 1986 Jun 02; 157(2):393-404. PubMed ID: 3709540
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  • 11. Solution NMR study of the structural basis of the Bohr effect in the monomeric hemoglobins from Chironomus thummi thummi.
    Zhang W, Gersonde K, La Mar GN.
    Biochemistry; 1997 Feb 18; 36(7):1689-98. PubMed ID: 9048552
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  • 12. Dynamic properties of monomeric insect erythrocruorin III from Chironomus thummi-thummi: relationships between structural flexibility and functional complexity.
    Di Iorio EE, Tavernelli I, Yu W.
    Biophys J; 1997 Nov 18; 73(5):2742-51. PubMed ID: 9370468
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  • 13. Conformation-controlled trans-effect of the proximal histidine in haemoglobins. An electron spin resonance study of monomeric nitrosyl-57Fe-haemoglobins.
    Overkamp M, Twilfer H, Gersonde K.
    Z Naturforsch C Biosci; 1976 Nov 18; 31(9-10):524-33. PubMed ID: 185829
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  • 16. Proton nuclear magnetic resonance investigation of the nature of solution conformational equilibria of monomeric insect deoxyhemoglobins.
    La Mar GN, Anderson RR, Budd DL, Smith KM, Langry KC, Gersonde K, Sick H.
    Biochemistry; 1981 Jul 21; 20(15):4429-36. PubMed ID: 7284332
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  • 19. [Hemoglobin, XXXI. Analysis or the primary structure of the monomeric hemoglobin CTT I (erythrocruorin) of Chironomus thummi thummi, Diptera].
    Kleinschmidt T, von der Mark-Neuwirth H, Braunitzer G.
    Hoppe Seylers Z Physiol Chem; 1980 Jul 21; 361(3):401-11. PubMed ID: 7380386
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  • 20. Bohr-effect and pH-dependence of electron spin resonance spectra of a cobalt-substituted monomeric insect haemoglobin.
    Gersonde K, Twilfer H, Overkamp M.
    Biophys Struct Mech; 1982 Jul 21; 8(3):189-211. PubMed ID: 6284268
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