Conformationally constrained analogues of diacylglycerol .12. Ultrapotent protein kinase C ligands based on a chiral 4,4-disubstituted heptono-1,4-lactone template

被引:33
作者
Lee, J
Sharma, R
Wang, SM
Milne, GWA
Lewin, NE
Szallasi, Z
Blumberg, PM
George, C
Marquez, VE
机构
[1] NCI, MED CHEM LAB, DEV THERAPEUT PROGRAM, DIV CANC TREATMENT, BETHESDA, MD 20892 USA
[2] NCI, CELLULAR CARCINOGENESIS & TUMOR PROMOT LAB, MOLEC MECH TUMOR PROMOT SECT, BETHESDA, MD 20892 USA
[3] USN, RES LAB, STRUCT MATTER LAB, WASHINGTON, DC 20375 USA
关键词
D O I
10.1021/jm950278f
中图分类号
R914 [药物化学];
学科分类号
100701 ;
摘要
Conformationally constrained analogues of diacylglycerol (DAG) built on a 5-[(acyloxy)methyl] 5-(hydroxymethyl)tetrahydro-2-furanon template (1, Chart 1) were shown previously to bind tightly to protein kinase Ca (PK-C alpha) in a stereospecific manner. These compounds, however, racemized readily through rapid acyl migration and lost biological potency. In order to circumvent this problem, the ''reversed ester'' analogues were designed as a new set of PK-C ligands. This reversal of the ester function produced some new DAG mimetics that are embedded in a C4 doubly-branched heptono-1,4-lactone template. The reversed ester analogues were impervious to racemization, and their chemically distinct branches facilitated the enantiospecific syntheses of all targets. Compound 2, the simplest; reversed ester analogue of 1 (Chart 1), exhibited a 3.5-fold reduction in binding sanity toward PK-C alpha which we attributed to the loss of a stabilizing gauche interaction that caused the ester branch in 2 to be more disordered than in the normal ester 1. However, conversion of the propanoyl branch of 2 into a propenoyl branch restored binding affinity (3 versus 5). As expected, the compounds bound to the enzyme with strict enantioselectivity (3 and 5 versus 4 and 6). Functionalization of the propenoyl-branched compounds as alpha-alkylidene lactones, in a manner which proved successful with the 5-[(acyloxy)methyl]-5-(hydroxymethyl)tetrahydro-2-furanone template (9 and 10), produced stable compounds with equivalent ultrapotent binding affinities for PK-C alpha (7 and 8). The additional incorporation of the propenoyl-branched carbonyl into a gamma-lactone ring was performed (11-14) not only to derive a possible additional entropic advantage but also to confirm the spatial disposition of this carbonyl function in the ligand-enzyme complex. Although no additional entropic advantage was derived, the high binding affinities displayed by compounds 11 and 12 helped to establish the correct orientation of the equivalent carbonyl group in PKC-bound DAG, As expected, these DAG analogues activated PK-C alpha. The most potent agonist, compound 8, stimulated phosphorylation of the a-pseudosubstrate peptide, and in primary mouse keratinocytes it caused inhibition of binding of epidermal growth factor with an ED(50) of approximately 1 mu M. In contrast to the phorbol esters, compound 8 did not induce acute edema or hyperplasia in skin of CD-1 mice, and its pattern of downregulation with several PK-C isozymes was different from that of phorbol 12-myristate 13-acetate (PMA).
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页码:36 / 45
页数:10
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