SET PHOTOCHEMISTRY OF FLAVIN CYCLOPROPYLAMINE SYSTEMS - MODELS FOR PROPOSED MONOAMINE-OXIDASE INHIBITION MECHANISMS

被引:29
作者
KIM, JM [1 ]
BOGDAN, MA [1 ]
MARIANO, PS [1 ]
机构
[1] UNIV MARYLAND,DEPT CHEM & BIOCHEM,COLLEGE PK,MD 20742
关键词
D O I
10.1021/ja00024a034
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Single electron transfer (SET) induced photochemical reactions of 3-methyllumiflavin (3-MLF) with the cyclo-propylamines, trans-2-phenylcyclopropylamine (1) and 1-phenylcyclopropylamine (4), have been explored with the aim of defining the nature of and mechanisms for the reaction pathways followed, The excited-state SET processes probed in this investigation were designed to model those proposed previously for inactivation of the flavine-containing enzyme, monoamine oxidase, by these same cyclopropylamines. Irradiation of 3-MLF in an N2-purged solution containing cyclopropylamine 4 leads to generation of the C-4a,N-5-propanodihydroflavin 14 as the major primary photoproduct. This substance, which is formed by an SET-promoted radical coupling mechanism, is transformed to the C-4a-(benzoylethyl)dihydroflavin 6 under hydrolytic conditions. Several other minor, cyclopropylamine-derived products are also generated in this reaction, again via radical pathways. In contrast, irradiation of an air-saturated solution of 3-MLF and 4 produces the epoxy ketone 8 efficiently. In this reaction, 3-MLF serves as an SET photosensitizer for the oxidative ring-opening reaction that converts 4 to 8. Finally, the C-4a,N-5-propanodihydroflavin adducts 17 and 18 are generated along with substances arising by secondary reaction of a primary product, cinnamaldehyde (20), when 3-MLF is irradiated in an N2-purged solution containing the cyclopropylamine 1. Mechanistic aspects of these bona ride SET flavin-cyclopropylamine reactions and their possible relationship to proposals made earlier about the nature of and mechanisms for monoamine oxidase inactivation by the same cyclopropylamines are discussed.
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页码:9251 / 9257
页数:7
相关论文
共 45 条
[1]  
ABLES RH, 1978, ENZYME ACTIVATED IRR, P1
[2]   THERMAL-MICHAEL REACTION .4. MECHANISM [J].
AUSTIN, EM ;
BROWN, HL ;
BUCHANAN, GL ;
RAPHAEL, RA .
TETRAHEDRON, 1969, 25 (22) :5517-&
[3]   CDNA CLONING OF HUMAN-LIVER MONOAMINE OXIDASE-A AND OXIDASE-B - MOLECULAR-BASIS OF DIFFERENCES IN ENZYMATIC-PROPERTIES [J].
BACH, AWJ ;
LAN, NC ;
JOHNSON, DL ;
ABELL, CW ;
BEMBENEK, ME ;
KWAN, SW ;
SEEBURG, PH ;
SHIH, JC .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1988, 85 (13) :4934-4938
[4]  
BRUICE TC, 1980, J AM CHEM SOC, V102, P1465
[5]   KINETIC STUDY OF FATE OF A COVALENT INTERMEDIATE OF TYPE PROPOSED TO BE INVOLVED IN FLAVIN CATALYSIS [J].
CLERIN, D ;
BRUICE, TC .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1974, 96 (17) :5571-5573
[6]  
CREIGHTON TE, 1984, PROTEINS STRUCTURES, P171
[7]  
ERWIN VG, 1967, J BIOL CHEM, V242, P4230
[8]   MOLECULAR LUMINESCENCE OF SOME ISOALLOXAZINES IN APOLAR SOLVENTS AT VARIOUS TEMPERATURES [J].
EWEG, JK ;
MULLER, F ;
VISSER, AJWG ;
VEEGER, C ;
BEBELAAR, D ;
VANVOORST, JDW .
PHOTOCHEMISTRY AND PHOTOBIOLOGY, 1979, 30 (04) :463-471
[9]  
GILSA S, 1974, BIOCHEMISTRY-US, V13, P589
[10]  
Goodman LS, 1975, PHARMACOL BASIS THER, P180