The kinetics of muscle haemoglobin
- 2 June 1936
- journal article
- research article
- Published by The Royal Society in Proceedings of the Royal Society of London. B. Biological Sciences
- Vol. 120 (818) , 366-388
- https://doi.org/10.1098/rspb.1936.0041
Abstract
The work of Hill (1933) and Theorell (1934) has shown that mammalian muscle haemoglobin has (1) a hyperbolic dissociation curve, (2) a molecular weight of 34,000, (3) no Bohr effect. In these properties therefore it approximates more closely than blood haemoglobin to an ideal “primitive” respiratory pigment and thus constitutes a more suitable compound for kinetic investigation. A comparison of the known properties of muscle and blood haemoglobins is given in Table I. The present work consists of determinations of the velocities of combination of oxygen and carbon monoxide with muscle haemoglobin and of the velocities of dissociation of the respective saturated compounds. The results show that, at the ordinary temperature, muscle haemoglobin satisfies the minimum postulates for a “primitive” respiratory pigment, namely: (a) bimolecular combination of gas with reduced pigment; (b) unimolecular dissociation of saturated pigment; (c) mutual independence of gas-binding groups; (d) small pHeffect.This publication has 12 references indexed in Scilit:
- The Oxygen Equilibrium of Hemoglobin and Its Structural InterpretationProceedings of the National Academy of Sciences, 1935
- The kinetics of hœmoglobin IV- General methods and theoretical basis for the reactions with carbon monoxideProceedings of the Royal Society of London. Series B, Containing Papers of a Biological Character, 1934
- Oxygen Affinity of Muscle HæmoglobinNature, 1933
- The kinetics of blood pigments: hæmocyanin and hæmoglobinThe Journal of Physiology, 1933
- A simple photoelectric colorimeterThe Journal of Physiology, 1933
- The molecular statistics of an enzyme actionProceedings of the Royal Society of London. Series B, Containing Papers of a Biological Character, 1931
- The equilibrium between oxygen and hæmoglobinThe Journal of Physiology, 1931
- Über die Katalytischen Wirkungen der Lebendigen SubstanzPublished by Springer Nature ,1928
- The laws of combination of hæmoglobin with carbon monoxide and oxygenThe Journal of Physiology, 1912
- The conditions of tissue respirationThe Journal of Physiology, 1909