Mammalian alkaline phosphatases are allosteric enzymes

被引:104
作者
Hoylaerts, MF
Manes, T
Millan, JL
机构
[1] BURNHAM INST,LA JOLLA CANC RES CTR,LA JOLLA,CA 92037
[2] KATHOLIEKE UNIV LEUVEN,CTR MOL & VASC BIOL,B-3001 LOUVAIN,BELGIUM
[3] UMEA UNIV,DEPT MED GENET,S-90185 UMEA,SWEDEN
关键词
D O I
10.1074/jbc.272.36.22781
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
Mammalian alkaline phosphatases (APs) are zinc-containing metalloenzymes encoded by a multigene family and functional as dimeric molecules, Using human placental AP (FLAP) as a paradigm, we have investigated whether the monomers in a given FLAP dimer are subject to cooperativity during catalysis following an allosteric model or act via a half-of-sites model, in which at any time only one single monomer is operative. Wild type and mutant FLAP homodimers and heterodimers were produced by stably transfecting Chinese hamster ovary cells with mutagenized FLAP cDNAs followed by enzyme extraction, purification, and characterization [Gly(429)]PLAP manifested negative cooperativity when partially metalated as a consequence of the reduced affinity of the incompletely metalated AP monomers for the substrate, Upon full metalation with Zn2+, however the negative cooperativity disappeared, To distinguish between an allosteric and a half-of-sites model, a [Gly(429)]PLAP-[Ser(84)]PLAP heterodimer was produced by combining monomers displaying high and low sensitivity to the uncompetitive inhibitor L-Leu as well as a [Gly(429)]PLAP-[Ala(92)]PLAP heterodimer combining a catalytically active and inactive monomer, respectively. The L-Leu inhibition profile of the [Gly(429)]PLAP-[Ser(84)]PLAP heterodimer was intermediate to that for each homodimer as predicted by the allosteric model. Likewise, the [Gly(429)]PLAP-[Ala(92)]PLAP heterodimer was catalytically active, confirming that AP monomers act independently of each other, Although heterodimers are structurally asymmetrical, they migrate in starch gels with a smaller than expected weighted electrophoretic mobility, are more stable to heat denaturation than expected, and are more sensitive to L-Leu inhibition than predicted by a strict noncooperative model, We conclude that fully metalated mammalian APs: are noncooperative allosteric enzymes but that the stability and catalytic properties of each monomer are controlled by the conformation of the second AP subunit.
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页码:22781 / 22787
页数:7
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