INHIBITION OF TYROSINE-HYDROXYLASE BY R AND S ENANTIOMERS OF SALSOLINOL, 1-METHYL-6,7-DIHYDROXY-1,2,3,4-TETRAHYDROISOQUINOLINE

被引:57
作者
MINAMI, M
TAKAHASHI, T
MARUYAMA, W
TAKAHASHI, A
DOSTERT, P
NAGATSU, T
NAOI, M
机构
[1] NAGOYA UNIV,SCH MED,DEPT NEUROL,GOKISO CHO,SHOW KU,NAGOYA,AICHI 466,JAPAN
[2] KONAN WOMENS COLL,DEPT FOOD & NUTR,KONAN,JAPAN
[3] FARMITALIA CARLO ERBA SPA,RES & DEV,ERBAMONT GRP,MILAN,ITALY
[4] FUJITA HLTH UNIV,SCH MED,INST COMPREHENS MED,DIV MOLEC GENET II & NEUROCHEM,TOYOAKE,JAPAN
[5] NAGOYA INST TECHNOL,DEPT BIOSCI,NAGOYA,AICHI 466,JAPAN
关键词
TYROSINE HYDROXYLASE; SALSOLINOL; TETRAHYDROBIOPTERIN; NEUROTOXIN; ALLOSTERIC EFFECT;
D O I
10.1111/j.1471-4159.1992.tb10951.x
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
Salsolinol is one of the dopamine-derived tetrahydroisoquinolines and is synthesized from pyruvate or acetaldehyde and dopamine. As it cannot cross the blood-brain harrier, salsolinol as the R enantiomer in the brain is considered to be synthesized in situ in dopaminergic neurons. Effects of R and S enantiomers of salsolinol on kinetic properties of tyrosine hydroxylase [tyrosine, tetrahydrobiopterin:oxygen oxidoreductase (3-hydroxylating); EC 1.14.16.2], the rate-limiting enzyme of catecholamine biosynthesis, were examined. The naturally occurring cofactor of tyrosine hydroxylase, L-erythro-5,6,7,8-tetrahydrobioptein, was found to induce allostery to the enzyme polymers and to change the affinity to the biopterin itself. Using L-erytho-5,6,7,8-tetrahydrobiopterin, tyrosine hydroxylase recognized the stereochemical structures of the salsolinols differently. The asymmetric center of salsolinol at C-1 played an important role in changing the affinity to L-tyrosine. The allostery of tyrosine hydroxylase toward biopterin cofactors disappeared. and at low concentrations of biopterin such as in brain tissue, the affinity to the cofactor changed markedly. A new type of inhibition of tyrosine hydroxylase, by depleting the allosteric effect of the endogenous biopterin, was found. It is suggested that under physiological conditions. such a conformational change may alter the regulation of DOPA biosynthesis in the brain.
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收藏
页码:2097 / 2101
页数:5
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