EFFECT OF HYDROXYPENTENAL ON METABOLISM OF NORMAL AND MALIGNANT CELLS

被引:34
作者
BICKIS, IJ
SCHAUENSTEIN, E
TAUFER, M
机构
[1] McGill University Surgical Clinic, Montreal General Hospital, Montreal
[2] Institut für Biochemie der Karl-Franzens-Universität, Graz
来源
MONATSHEFTE FUR CHEMIE | 1969年 / 100卷 / 03期
关键词
D O I
10.1007/BF00900595
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Hydroxypentenal (4-hydroxy-2,3-trans-pentenal) strongly inhibits tricarboxylic acid cycle oxidations, glycolysis and the incorporation of radioactive precursors into DNA, RNA, protein and lipids of ascites tumor cells. It does not inhibit, however, the decarboxylation of glucose by the pentose phosphate cycle. All the observed inhibitions can be prevented by addition of GSH to the incubation medium. The inhibition of glycolysis and oxygen uptake can also be reversed by addition of CySH to aldehyde treated cells. The metabolism of cells in normal tissues (spleen, thymus, jejunum) is inhibited in similar manner, but about four times higher concentration of hydroxypentenal is necessary to obtain the same degree of inhibition as in tumor cells. High concentrations of hydroxypentenal (1 m M and more) cause cell disintegration (stalagmosis). The double bond of hydroxypentenal reacts avidly with SH groups of GSH and CySH, forming a covalent bond. By a similar reaction hydroxypentenal inhibits also the activity of crystalline glyceraldehyde-3-phosphate dehydrogenase. The latter inhibition can be reversed by high concentrations of CySH. Five other crystalline SH-enzymes, however, were not significantly affected. Nevertheless, the indications are that hydroxypentenal inhibits cell metabolism mainly by its reactions with respective SH enzymes and/or SH cofactors (CoA, lipoic acid, GSH). The relative resistance of normal cell metabolism probably may be the result of higher contents of low molecular SH-compounds, providing a better protection of functional SH-groups of enzymes. © 1969 Springer-Verlag.
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页码:1077 / +
页数:1
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[21]  
JOHNSTONE RM, 1963, METABOLIC INHIBITORS, V2, P99
[22]  
KYLIANEK A, 1968, THESIS U GRAZ
[23]  
LOHR GW, 1964, DEUT MED WOCHENSCHR, V89, P171
[24]   INTERRELATIONSHIP BETWEEN GUANOSINE TRIPHOSPHATASE AND AMINO ACID POLYMERIZATION [J].
NISHIZUKA, Y ;
LIPMANN, F .
ARCHIVES OF BIOCHEMISTRY AND BIOPHYSICS, 1966, 116 (1-3) :344-+
[25]  
RATZENHOFER M, 1964, Beitr Pathol Anat, V130, P243
[26]  
REINCHARD P, 1961, J BIOL CHEM, V236, P1150
[27]  
ROITT JM, 1965, BIOCHEM J, V63, P300
[28]  
SCHAUENS.E, 1967, J LIPID RES, V8, P417
[29]   UBER DIE REAKTION VON DELTA9,12-LINOLSAUREESTER IN WASSER .6. CHROMATOGRAPHISCHE UNTERSUCHUNGEN UBER DIE ZUSAMMENSETZUNG DES PRAPARATES LHPO UND DIE ISOLIERUNG DER EINZELNEN TUMORWIRKSAMEN HYDROPEROXYDKOMPONENTEN [J].
SCHAUENSTEIN, E ;
ESTERBAU.H .
MONATSHEFTE FUR CHEMIE, 1963, 94 (01) :164-&
[30]   LINKAGE OF 4-HYDROXY-2,3-ENALS TO PROTEIN SH GROUPS [J].
SCHAUENSTEIN, E ;
DORNER, F ;
SONNENBI.J .
ZEITSCHRIFT FUR NATURFORSCHUNG PART B-CHEMIE BIOCHEMIE BIOPHYSIK BIOLOGIE UND VERWANDTEN GEBIETE, 1968, B 23 (03) :316-+