196:. His work in this area concerned both "classical" steady-state kinetics, such as pH-dependence, as well as study of transients in the mechanism. In recognition of his contributions to the study of alcohol dehydrogenase Pettersson was invited to write a review on the topic in collaboration with
208:
In parallel with his study of alcohol dehydrogenase, Pettersson developed methods in enzyme kinetics based on mathematical modelling and valid statistical analysis. On the basis of this expertise he has written a text book (in
Swedish) on enzyme kinetics.
220:
Pettersson developed mathematical models of multi-enzyme systems, most notably the Calvin cycle, and he entered into the controversy over whether direct transfer of the product of an enzyme-catalysed reaction to an enzyme of which it is the substrate
178:. This paper has had virtually no influence on the progress of biochemistry, having never been cited in half a century except for once by its author, but it marked the beginning of the work on enzymes and kinetics for which Pettersson is best known.
212:
In a number of papers
Pettersson argued against the interpretations of their kinetic data proposed by other authors, in relation for example to wheat-germ hexokinase and hexokinase from rat liver.
920:
849:"Transient-state kinetic evidence against a channelled transfer of glyceraldehyde 3-phosphate from aldolase to glyceraldehyde-3-phosphate dehydrogenase"
812:
Pettersson, G. (1991). "No convincing evidence is available for metabolite channelling between enzymes forming dynamic complexes".
508:
Kvassman, J; Pettersson, G. (1976). "Kinetic transients in reduction of aldehydes catalysed by liver alcohol dehydrogenase".
915:
621:"Generalized theoretical treatment of transient-state kinetics of enzymic reaction systems far from equilibrium"
580:"Kinetics of product inhibition in the ternary-complex mechanism for enzyme reactions involving two substrates"
186:
The major experimental focus of
Pettersson's work on the kinetics of enzyme-catalysed reactions was the enzyme
192:
930:
222:
889:
187:
174:
169:), and his early research was mainly concerned with fumigatin and other products of fungal metabolism.
257:
G. Pettersson, 1966. Studies on the biosynthesis of fungal toluquinones. PhD Thesis. Lund
University.
925:
190:, principally the enzyme from horse liver, but to some degree from other sources, such as the insect
772:
225:) is a real phenomenon adequately supported by the experimental results claimed to demonstrate it.
490:
172:
The turning point in
Pettersson's career came in the wake of a kinetic study of an enzyme from
870:
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521:
234:
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49:
825:
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McKinley-McKee, J. S.; Winberg, J. O.; Pettersson, G. (1991). "Mechanism of action of
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486:
441:
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646:
529:
135:
154:
45:
739:
543:
Pettersson, G.; Klinman, J. P. (1987). "Liver alcohol dehydrogenase".
679:"Mechanistic origin of the kinetic cooperativity of hexokinase type L
150:
108:
724:"Mechanistic origin of the sigmoidal rate behaviour of glucokinase"
661:
241:
is critically discussed from a scientific and kinetic perspective.
258:
237:
and has published a critical book against alarmists, in which the
114:
895:
158:
461:, AMP, and adenosine to horse liver alcohol dehydrogenase"
773:"A mathematical-model of the Calvin photosynthesis cycle"
233:
After retirement, Pettersson has studied the question of
161:
at Lund
University in 1966 on the basis of a thesis on
107:
96:
88:
73:
65:
57:
28:
21:
115:Studies on the biosynthesis of fungal toluquinones
891:Falskt Alarm: Klimatfrågan ur vetenskaplig aspekt
8:
771:Pettersson, G.; Ryde-Pettersson, U. (1988).
455:Gunnarsson, P. O.; Pettersson, G. (1974).
303:Pettersson, G. (1963). "Toluquinones from
18:
864:
788:
747:
698:
636:
595:
476:
400:
381:"Hydroxyquinone–NADH oxidoreductase from
355:
287:
250:
847:Arias, W. M.; Pettersson, G. (1996).
7:
385:. II. Kinetic studies on the enzyme"
921:People connected to Lund University
457:"pH-Dependence of binding of Pt(CN)
790:10.1111/j.1432-1033.1988.tb14242.x
700:10.1111/J.1432-1033.1986.Tb09374.X
522:10.1111/j.1432-1033.1976.tb10884.x
92:Biochemistry (especially kinetics)
14:
866:10.1111/J.1432-1033.1996.0675U.X
638:10.3891/Acta.Chem.Scand.32B-0437
597:10.3891/acta.chem.scand.26-3935
402:10.3891/acta.chem.scand.20-0666
357:10.3891/Acta.Chem.Scand.19-0414
336:"New phenolic metabolites from
321:10.3891/Acta.Chem.Scand.17-1771
289:10.3891/Acta.Chem.Scand.17-1323
259:http://libris.kb.se/bib/1174668
204:Analysis of enzyme kinetic data
666:(in Swedish). Lund University.
1:
826:10.1016/S0022-5193(05)80512-0
894:(in Swedish). Archived from
478:10.1016/0014-5793(74)80663-0
61:Lund University (Ph.D. 1966)
272:"Biosynthesis of fumigatin"
947:
557:10.3109/10409238609113616
153:. He was born in 1937 in
125:
81:
428:alcohol dehydrogenase".
157:, Sweden. He gained his
888:Pettersson, G. (2012).
722:Pettersson, G. (1986).
677:Pettersson, G. (1986).
660:Pettersson, G. (1975).
619:Pettersson, G. (1978).
578:Pettersson, G. (1972).
426:Drosophila melanogaster
379:Pettersson, G. (1966).
334:Pettersson, G. (1965).
270:Pettersson, G. (1963).
193:Drosophila melanogaster
223:metabolite channelling
16:Biochemist from Sweden
383:Aspergillus fumigatus
305:Aspergillus fumigatus
188:alcohol dehydrogenase
182:Alcohol dehydrogenase
175:Aspergillus fumigatus
69:Alcohol dehydrogenase
916:Swedish biochemists
625:Acta Chem. Scand. B
216:Multienzyme systems
77:Ulf Ryde-Pettersson
545:Crit. Rev. Biochem
338:Gliocladium roseum
740:10.1042/Bj2330347
590:(10): 3935–3942.
430:Biochem. Internat
239:greenhouse effect
129:
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83:Scientific career
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167:natural products
132:Gösta Pettersson
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39:24 November 1937
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229:Global warming
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163:toluquinones
143:biochemistry
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97:Institutions
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926:1937 births
910:Categories
728:Biochem. J
245:References
35:1937-11-24
465:FEBS Lett
139:professor
58:Education
495:38196610
366:14298279
136:emeritus
103:, Sweden
74:Children
52:, Sweden
875:8774712
834:1753770
799:3137030
758:3954739
749:1153034
709:3943521
606:4631804
565:3304836
487:4859594
442:1804107
411:4289501
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151:Sweden
134:is an
120:(1966)
118:
109:Thesis
89:Fields
491:S2CID
159:Ph.D.
871:PMID
830:PMID
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754:PMID
705:PMID
643:PMID
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483:PMID
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362:PMID
29:Born
861:doi
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744:PMC
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