Hemoglobin senses body temperature
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Summary
An amorphous hemoglobin–water gel formed in the spherical trail, the residual partial sphere of the aspirated RBC, and a sudden fluidization of the gel occurs at Tc, which senses body temperature which must be inscribed in the primary structure of hemoglobin and possibly other proteins.
- Type
- article
- Published
- 2009-02-24
- Cited by
- 24
- References
- 117
- OpenAlex
- https://openalex.org/W19238378
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:25055109
Keywords
Copper, Cysteine, Chemistry, Computer science, Biochemistry
References
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- Quaternary structure dependence of kinetic hole burning and conformational substates interconversion in hemoglobin.
- Chaos in protein dynamics
- Microscopic photometric quantification of stiffness and relaxation time of red blood cells in a flow chamber
- Selective amphipathic nature of chlorpromazine binding to plasma membrane bilayers.
Cited by
- Primary thermosensory events in cells.
- Thermal-induced force release in oxyhemoglobin
- Spin-selective interaction of magnetic ortho-H2O isomers with yeast cells
- From powder to solution: hydration dependence of human hemoglobin dynamics correlated to body temperature.
- Picosecond dynamics in haemoglobin from different species: a quasielastic neutron scattering study.
- Effect of quantum differences of ortho and para H2O spin-isomers on water properties: Biophysical aspect
- Functional characteristics of yeast cells in nutrient aqueous solution enriched with ortho-H2O isomers
- Ortho-para spin conversion of H2O in aqueous solutions as a quantum factor of the Konovalov paradox
- Specific properties of the mitochondrial oxidative phosphorylation system operating as a supercomplex
- Effects of spermine NONOate and ATP on protein aggregation: light scattering evidences
- Effects of spermine NONOate and ATP on the thermal stability of hemoglobin
- Observation of a Large-Scale Superstructure in Concentrated Hemoglobin Solutions by Using Small Angle Neutron Scattering
- Dynamics in Biological Systems as seen by QENS
- Macromolecular dynamics in red blood cells investigated using neutron spectroscopy
- Thermal fluctuations of haemoglobin from different species: adaptation to temperature via conformational dynamics
- Thermal-induced proteinquake in oxyhemoglobin
- Mechanisms for the control of local tissue blood flow during thermal interventions: influence of temperature‐dependent ATP release from human blood and endothelial cells
- Multiple increase in productivity of the yeast at reducing the fraction of D2O in water
- The molecular origin of body temperature in homeothermic species
- Soft Materials in Technology and Biology – Characteristics, Properties, and Parameter Identification
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