STRUCTURAL REQUIREMENTS OF ALDEHYDES PRODUCED IN LPO FOR THE ACTIVATION OF THE HEAT-SHOCK GENES IN HELA-CELLS

被引:26
作者
ALLEVI, P
ANASTASIA, M
CAJONE, F
CIUFFREDA, P
SANVITO, AM
机构
[1] UNIV MILAN,IST PATOL GEN,CNR,CTR STUDIO PATOL CELLULARE,I-20133 MILAN,ITALY
[2] UNIV MILAN,DIPARTIMENTO CHIM & BIOCHIM MED,MILAN,ITALY
关键词
LIPID PEROXIDATION; (E)-4-HYDROXYALK-2-ENALS; (E)-4-HYDROXYNON-2-ENAL; HYDROXYALDEHYDES; (E)-4-HYDROXYNON-2-ENOIC ACID; (E)-5-HYDROXYNON-2-ENAL; HEAT-SHOCK PROTEINS; FREE RADICALS;
D O I
10.1016/0891-5849(94)00096-3
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
The ability of various aldehydes, some of which are produced in lipid peroxidation, to effect heat-shock gene expression and heat-shock proteins synthesis was evaluated in HeLa cells. Only (E)-4-hydroxyalk-2-enals were active both in racemic and homochiral form. Between the reported primary metabolic products of (E)-4-hydroxynon-2-enal, only the glutathione conjugates were active, whereas (E)-4-hydroxynon-2-enoic acid and 2-nonen-1,4-diol were inactive. Also, unnatural (E)-5-hydroxynon-2-enal and (E)-5-hydroxyhex-2-enal were active, whereas (E)-6-hydroxynon-2-enal was inactive. Thus, it was established that the active aldehydic compounds must possess an (E)-2 double bond and an hydroxy group in a position suitable for the formation of a cyclic hemiacetal in a possible adduct of these aldehydes with proteins. An irreversible binding to proteins could be the first step of the mechanism by which these compounds exert their biological activity.
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页码:107 / 116
页数:10
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