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kw.\*:("Efecto Bohr")

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A new hemoglobin variant, Hb mito [β144(HC 1) Lys→Glu], with increased oxygen affinityHARANO, K; HARANO, T; UEDA, S et al.FEBS letters. 1985, Vol 192, Num 1, pp 75-78, issn 0014-5793Article

Functional properties of hemoglobin in human red cells. II: Determination of the Bohr effectKISTER, J; MARDEN, M. C; BOHN, B et al.Respiration physiology. 1988, Vol 73, Num 3, pp 363-378, issn 0034-5687Article

Specifically carboxymethylated hemoglobin as an analogue of carbamino hemoglobin: solution and X-ray studies of carboxymethylated hemoglobin and X-ray studies of carbamino hemoglobinFANTL, W. J; DI DONATO, A; MANNING, J. M et al.The Journal of biological chemistry (Print). 1987, Vol 262, Num 26, pp 12700-12713, issn 0021-9258Article

Estimation of human fetal-placental unit metabolic rate by application of the Bohr principleBONDS, D. R; CROSBY, L. O; CHEEK, T. G et al.Journal of developmental physiology. 1986, Vol 8, Num 1, pp 49-54, issn 0141-9846Article

The Bohr effect of the blood in rainbow trout (Salmo gairdnerii). A comparative study with human blood, using precise oxygen equilibrium curves and the Adair modelVORGER, P.Comparative biochemistry and physiology. A. Comparative physiology. 1985, Vol 82, Num 4, pp 915-924, issn 0300-9629Article

A proton nuclear magnetic resonance investigation of the anion Bohr effect of human normal adult hemoglobinRUSSU, I. M; SHING-SHING WU; HO, N. T et al.Biochemistry (Easton). 1989, Vol 28, Num 12, pp 5298-5306, issn 0006-2960, 9 p.Article

The oxygen uptake of Sarotherodon niloticus L. and the oxygen binding properties of its blood and hemolysate (Pisces: Cichlidae)VERHEYEN, E; BLUST, R; DOUMEN, C et al.Comparative biochemistry and physiology. A. Comparative physiology. 1985, Vol 81, Num 2, pp 423-426, issn 0300-9629Article

Cooperative hydrogen ligand binding inducing the Bohr effect in human hemoglobin. A general methodologyFORLANI, L; MARINI, A.Cellular and molecular biology. 1993, Vol 39, Num 1, pp 21-34, issn 0145-5680Article

Use of ionic and zwitterionic (Tris/BisTris and HEPES) buffers in studies on hemoglobin functionWEBER, R. E.Journal of applied physiology (1985). 1992, Vol 72, Num 4, pp 1611-1615, issn 8750-7587Article

Do biomolecules process information differently than synthetic organic molecules?HONG, F. T.Biosystems. 1992, Vol 27, Num 4, pp 189-194, issn 0303-2647Conference Paper

Roles of the β146 histidyl residue in the molecular basis of the Bohr effect of hemoglobin : a proton nuclear magnetic resonance studyBUSCH, M. R; MACE, J. E; HO, N. T et al.Biochemistry (Easton). 1991, Vol 30, Num 7, pp 1865-1877, issn 0006-2960, 13 p.Article

An investigation of the nature of Bohr, root, and Haldane effects in Octopus dofleini hemocyaninMILLER, K. I; MANGUM, C. P.Journal of comparative physiology. B, Biochemical, systemic, and environmental physiology. 1988, Vol 158, Num 5, pp 547-552, issn 0174-1578Article

Isolation of human haemoglobin variants with altered Bohr effect: application to haemoglobin RainierROCHETTE, J; BAUDIN, V; BOHN, B et al.Journal of chromatography. 1986, Vol 369, Num 1, pp 143-149, issn 0021-9673Article

Raman dispersion spectroscopy probes heme distortions in deoxyHb-trout IV involved in its T-state Bohr effectSCHWEITZER-STENNER, R; BOSENBECK, M; DREYBRODT, W et al.Biophysical journal. 1993, Vol 64, Num 4, pp 1194-1209, issn 0006-3495Article

Time-resolved UV resonance Raman study on Bohr effects of hemoglobinKAMINAKA, S; KITAGAWA, T.Journal of the American Chemical Society. 1992, Vol 114, Num 9, pp 3256-3260, issn 0002-7863Article

Effects of anions on the molecular basis of the Bohr effect of hemoglobinBUSCH, M. R; CHIEN HO.Biophysical chemistry. 1990, Vol 37, Num 1-3, pp 313-322, issn 0301-4622, 10 p.Article

Influence of anions and protons on the adair coefficients of haemoglobins A and cowtown (His HC3(146)β→Leu)SHIH, D. T.-B; PERUTZ, M. F.Journal of molecular biology. 1987, Vol 195, Num 2, pp 419-422, issn 0022-2836Article

Evolution of vertebrate haemoglobins : Histidine side chains, specific buffer value and Bohr effectBERENBRINK, Michael.Respiratory physiology & neurobiology. 2006, Vol 154, Num 1-2, pp 165-184, issn 1569-9048, 20 p.Article

Preparation of hemoglobin derivatives selectively or randomly modified at amino groupsMANNING, J. M.Methods in enzymology. 1994, Vol 231, pp 225-246, issn 0076-6879Article

Functional properties of the two major hemoglobin components from Leporinus friderici (pisces)PETERSEN, C. G; SCHWANTES, A. R; DE LUCA, P. H et al.Comparative biochemistry and physiology. B. Comparative biochemistry. 1989, Vol 94, Num 4, pp 823-827, issn 0305-0491, 5 p.Article

Human whole-blood O2 affinity: effect of CO2KWANT, G; OESEBURG, B; ZWART, A et al.Journal of applied physiology (1985). 1988, Vol 64, Num 6, pp 2400-2409, issn 8750-7587Article

Training induced effects on blood volume, erythrocyte turnover and haemoglobin oxygen binding propertiesSCHMIDT, W; MAASSEN, N; TROST, F et al.European journal of applied physiology and occupational physiology. 1988, Vol 57, Num 4, pp 490-498, issn 0301-5548Article

Respiratory properties of the neonatal blood of the common brushtail possum (Trichosurus vulpecula)CALVERT, S. J; HOLLAND, R. A. B; GEMMELL, R. T et al.Physiological zoology. 1994, Vol 67, Num 2, pp 407-417, issn 0031-935XArticle

Effect of metabolic acidosis on pulmonary gas exchange of artificially ventilated dogsFRANS, A; CLERBAUX, T; WILLEMS, E et al.Journal of applied physiology (1985). 1993, Vol 74, Num 5, pp 2301-2308, issn 8750-7587Article

Reduction of oxylabile CO2 in human blood by lactateBÖNING, D; SCHÜNEMANN, H. J; MAASSEN, N et al.Journal of applied physiology (1985). 1993, Vol 74, Num 2, pp 710-714, issn 8750-7587Article

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