BISALDEHYDE ALLOSTERIC EFFECTORS AS MOLECULAR RATCHETS AND PROBES

被引:29
作者
BOYIRI, T
SAFO, MK
DANSODANQUAH, RE
KISTER, J
POYART, C
ABRAHAM, DJ
机构
[1] VIRGINIA COMMONWEALTH UNIV,MED COLL VIRGINIA,SCH PHARM,DEPT MED CHEM,RICHMOND,VA 23298
[2] INSERM,U299,F-94275 LE KREMLIN BICETR,FRANCE
关键词
D O I
10.1021/bi00046a008
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
Four new series of monoaldehyde bisacids and bisaldehyde bisacids with varying chain lengths have been synthesized and evaluated as allosteric effecters of hemoglobin. Molecular modeling, oxygen equilibrium, and crystallographic studies were combined for structure/function studies. Crystallographic analyses of the bisaldehydes reveal that Schiff base interaction occurred exclusively between Val la and Lys 99 alpha of the opposite alpha chain even though the two terminal Val 1 alpha nitrogens are ideally spaced to also form cross-links. The reason for the observed mode of binding appears to be the influence of chain direction set by key substitutions on the bisaldehyde molecule. Even longer chain derivatives that could overcome the direction set by the key functional groups bind in the same manner. These studies support the general conclusion that long flexible molecules prefer to bind along cavity walls, like double-sided molecular sticky tape, rather than span large open spaces with few chances for interaction. The crosslinked bisaldehydes bind at the same site when incubated under both allosteric states and exhibit reduced cooperativity with a significant decrease in oxygen affinity. The chain length acts as a molecular ratchet and dictates the degree of allosteric effect observed. The tighter the cross-link, the greater the constraint on the tense- (T-) state and the stronger the allosteric effect that is produced. The monoaldehyde bisacids bind in the same fashion with Schiff base formation at Val 1 alpha while the acid that replaces the second aldehyde moiety forms a salt bridge with Lys 99 alpha of the opposite subunit. This class of molecules has weaker allosteric effector activity as would be expected with replacement of one covalent bond by a salt bridge. The importance of Lys 99 alpha on the allosteric equilibrium is confirmed.
引用
收藏
页码:15021 / 15036
页数:16
相关论文
共 26 条
[1]   HOW ALLOSTERIC EFFECTORS CAN BIND TO THE SAME PROTEIN RESIDUE AND PRODUCE OPPOSITE SHIFTS IN THE ALLOSTERIC EQUILIBRIUM [J].
ABRAHAM, DJ ;
SAFO, MK ;
BOYIRI, T ;
DANSODANQUAH, RE ;
KISTER, J ;
POYART, C .
BIOCHEMISTRY, 1995, 34 (46) :15006-15020
[2]   X-RAY-DIFFRACTION STUDY OF DI-LIGATED AND TETRA-LIGATED T-STATE HEMOGLOBIN FROM HIGH SALT CRYSTALS [J].
ABRAHAM, DJ ;
PEASCOE, RA ;
RANDAD, RS ;
PANIKKER, J .
JOURNAL OF MOLECULAR BIOLOGY, 1992, 227 (02) :480-492
[3]   ALLOSTERIC MODIFIERS OF HEMOGLOBIN - 2-[4-[[(3,5-DISUBSTITUTED ANILINO)CARBONYL]METHYL]PHENOXY]-2-METHYLPROPIONIC ACID-DERIVATIVES THAT LOWER THE OXYGEN-AFFINITY OF HEMOGLOBIN IN RED-CELL SUSPENSIONS, IN WHOLE-BLOOD, AND INVIVO IN RATS [J].
ABRAHAM, DJ ;
WIREKO, FC ;
RANDAD, RS ;
POYART, C ;
KISTER, J ;
BOHN, B ;
LIARD, JF ;
KUNERT, MP .
BIOCHEMISTRY, 1992, 31 (38) :9141-9149
[4]   INTRINSIC ACTIVITY AT THE MOLECULAR-LEVEL - ARIENS,E.J. CONCEPT VISUALIZED [J].
ABRAHAM, DJ ;
KISTER, J ;
JOSHI, GS ;
MARDEN, MC ;
POYART, C .
JOURNAL OF MOLECULAR BIOLOGY, 1995, 248 (04) :845-855
[5]   PHYSIOLOGICAL AND X-RAY STUDIES OF POTENTIAL ANTISICKLING AGENTS [J].
ABRAHAM, DJ ;
PERUTZ, MF ;
PHILLIPS, SEV .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA-BIOLOGICAL SCIENCES, 1983, 80 (02) :324-328
[6]   X-RAY-DIFFRACTION STUDY OF BINDING OF 2,3-DIPHOSPHOGLYCERATE TO HUMAN DEOXYHEMOGLOBIN [J].
ARNONE, A .
NATURE, 1972, 237 (5351) :146-&
[7]   SUBSTITUTED BENZALDEHYDES DESIGNED TO INCREASE THE OXYGEN-AFFINITY OF HUMAN-HEMOGLOBIN AND INHIBIT THE SICKLING OF SICKLE ERYTHROCYTES [J].
BEDDELL, CR ;
GOODFORD, PJ ;
KNEEN, G ;
WHITE, RD ;
WILKINSON, S ;
WOOTTON, R .
BRITISH JOURNAL OF PHARMACOLOGY, 1984, 82 (02) :397-407
[8]   COMPOUNDS DESIGNED TO FIT A SITE OF KNOWN STRUCTURE IN HUMAN HEMOGLOBIN [J].
BEDDELL, CR ;
GOODFORD, PJ ;
NORRINGTON, FE ;
WILKINSON, S ;
WOOTTON, R .
BRITISH JOURNAL OF PHARMACOLOGY, 1976, 57 (02) :201-209
[9]   MECHANISM FOR THE INCREASE IN SOLUBILITY OF DEOXYHEMOGLOBIN-S DUE TO CROSS-LINKING THE BETA-CHAINS BETWEEN LYSINE-82-BETA-1 AND LYSINE-82-BETA-2 [J].
CHATTERJEE, R ;
WALDER, RY ;
ARNONE, A ;
WALDER, JA .
BIOCHEMISTRY, 1982, 21 (23) :5901-5909
[10]  
EVANS P, 1985, MED RES COUNC LAB MO