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1.
Potent and orally bioavailable noncysteine-containing inhibitors of protein farnesyltransferase. 总被引:1,自引:0,他引:1
D J Augeri D Janowick D Kalvin G Sullivan J Larsen D Dickman H Ding J Cohen J Lee R Warner P Kovar S Cherian B Saeed H Zhang S Tahir S C Ng H Sham S H Rosenberg 《Bioorganic & medicinal chemistry letters》1999,9(8):1069-1074
Potent and orally bioavailable nonthiol-containing inhibitors of protein farnesyltransferase are described. Oral bioavailability was achieved by replacement of the pyridyl ether moiety of 1 with a 2-substituted furan ether to give 4. Potency was regained with 2,5-disubstituted furan ethers while maintaining the bioavailability inherent in 4. p-Chlorophenylfuran ether 24 is 0.7 nM in vitro (FTase) and is 32% bioavailable in the mouse, 30% bioavailable in rats, and 21% bioavailable in dogs. 相似文献
2.
Nguyen DN Stump CA Walsh ES Fernandes C Davide JP Ellis-Hutchings M Robinson RG Williams TM Lobell RB Huber HE Buser CA 《Bioorganic & medicinal chemistry letters》2002,12(9):1269-1273
Compound 1 has been shown to be a dual prenylation inhibitor with FPTase (IC50=2 nM) and GGPTase-I (IC50=95 nM). Analogues of 1, which replaced the cyanophenyl group with various biaryls, led to the discovery of highly potent dual FPTase/GGPTase-I inhibitors. 4-trifluoromethylphenyl, trifluoropentynyl, and trifluoropentyl were identified as good p-cyano replacements. 相似文献
3.
J L Goldstein M S Brown S J Stradley Y Reiss L M Gierasch 《The Journal of biological chemistry》1991,266(24):15575-15578
The protein farnesyltransferase from rat brain was previously shown to be inhibited competitively by tetrapeptides that conform to the consensus Cys-A1-A2-X, where A1 and A2 are aliphatic amino acids and X is methionine, serine, or phenylalanine. In the current studies we use a thin layer chromatography assay to show that most of these tetrapeptides are themselves farnesylated by the purified enzyme. Two classes of tetrapeptides are not farnesylated and therefore act as true inhibitors: 1) those that contain an aromatic residue at the A2 position and 2) those that contain penicillamine (beta,beta-dimethylcysteine) in place of cysteine. The most potent of these pure inhibitors was Cys-Val-Phe-Met, which inhibited farnesyltransferase activity by 50% at less than 0.1 microM. These data indicate that the inclusion of bulky aromatic or methyl residues in a tetrapeptide can abolish prenyl group transfer without blocking binding to the enzyme. This information should be useful in the design of peptides or peptidomimetics that inhibit farnesylation and thus block the action of p21ras proteins in animal cells. 相似文献
4.
Olepu S Suryadevara PK Rivas K Yokoyama K Verlinde CL Chakrabarti D Van Voorhis WC Gelb MH 《Bioorganic & medicinal chemistry letters》2008,18(2):494-497
A new class of 2-oxo-tetrahydro-1,8-naphthyridine-based protein farnesyltransferase inhibitors were synthesized and found to inhibit protein farnesyltransferase from the malaria parasite with potencies in the low nanomolar range. The compounds were much less potent on mammalian protein prenyltransferases. Two of the compounds block the growth of malaria in culture with potencies in the sub-micromolar range. Some of the compounds were found to be much more metabolically stable than previously described tetrahydroquinoline-based protein farnesyltransferase inhibitors. 相似文献
5.
R W Marquis Y Ru D S Yamashita H J Oh J Yen S K Thompson T J Carr M A Levy T A Tomaszek C F Ijames W W Smith B Zhao C A Janson S S Abdel-Meguid K J D'Alessio M S McQueney D F Veber 《Bioorganic & medicinal chemistry》1999,7(4):581-588
Cathepsin K (EC 3.4.22.38) is a cysteine protease of the papain superfamily which is selectively expressed within the osteoclast. Several lines of evidence have pointed to the fact that this protease may play an important role in the degradation of the bone matrix. Potent and selective inhibitors of cathepsin K could be important therapeutic agents for the control of excessive bone resorption. Recently a series of peptide aldehydes have been shown to be potent inhibitors of cathepsin K. In an effort to design more selective and metabolically stable inhibitors of cathepsin K, a series of electronically attenuated alkoxymethylketones and thiomethylketones inhibitors have been synthesized. The X-ray co-crystal structure of one of these analogues in complex with cathepsin K shows the inhibitor binding in the primed side of the enzyme active site with a covalent interaction between the active site cysteine 25 and the carbonyl carbon of the inhibitor. 相似文献
6.
Investigations on the structure-activity relationships of benzophenone-based bisubstrate analogue farnesyltransferase inhibitors yielded a bisubstrate analogue farnesyltransferase inhibitor lacking any prenylic or peptidic substructures with nanomolar activity. This represents a considerable progress in comparison to those non-prenylic, non-peptidic bisubstrate analogue farnesyltransferase inhibitors we have described before which utilized AAX-peptidomimetic substructures different from the benzophenone since those inhibitors displayed activity only in the micromolar range. 相似文献
7.
Bolchi C Pallavicini M Bernini SK Chiodini G Corsini A Ferri N Fumagalli L Straniero V Valoti E 《Bioorganic & medicinal chemistry letters》2011,21(18):5408-5412
Mimetics of the C-terminal CAAX tetrapeptide of Ras protein were designed replacing internal dipeptide AA with 4-amino-2-phenylbenzoic acid and cysteine (C) with 2-amino-4-thiazolyl-, 2-mercapto-4-thiazolyl-, 2-mercapto-4-imidazolyl- and 2-methylmercapto-4-thiazolyl-acetic or propionic acid. The compound in which C is replaced by 2-amino-4-thiazolylacetic acid inhibited FTase activity in the low nanomolar range and showed antiproliferative effect on rat aortic smooth muscle cells interfering with Ras farnesylation. On the basis of these results, 2-aminothiazole can be considered as an alternative to heterocycles, such as pyridine and imidazole, normally used in FTase inhibitors designed as non-thiol CAAX mimetics. 相似文献
8.
James J. Kowalczyk Karen Ackermann Ana Maria Garcia Michael D. Lewis 《Bioorganic & medicinal chemistry letters》1995,5(24):3073-3078
Compounds in which cysteine of the tetrapeptide CVFM has been replaced with a phenolic benzyl substituent inhibit farnesylation of H-ras protein by farnesyl transferase (FTase). In the most potent inhibitors (e.g., 5-chloro-2-hydroxybenzyl-VFM, IC50 = 0.5 μM, approx. 8 times less active than CVFM) the phenolic hydroxyl is ortho to the methylene linker. Inhibitory activity is influenced by substitution on the phenol ring. 相似文献
9.
Protein farnesyltransferase (FTase) is a key enzyme responsible for the lipid modification of a large and important number of proteins including Ras. Recent demonstrations that inhibitors of this enzyme block the growth of a variety of human tumors point to the importance of this enzyme in human tumor formation. In this paper, we report that a mutant form of human FTase, Y361L, exhibits increased resistance to farnesyltransferase inhibitors, particularly a tricyclic compound, SCH56582, which is a competitive inhibitor of FTase with respect to the CAAX (where C is cysteine, A is an aliphatic amino acid, and X is the C-terminal residue that is preferentially serine, cysteine, methionine, glutamine or alanine) substrates. The Y361L mutant maintains FTase activity toward substrates ending with CIIS. However, the mutant also exhibits an increased affinity for peptides terminating with CIIL, a motif that is recognized by geranylgeranyltransferase I (GGTase I). The Y361L mutant also demonstrates activity with Ha-Ras and Cdc42Hs proteins, substrates of FTase and GGTase I, respectively. In addition, the Y361L mutant shows a marked sensitivity to a zinc chelator HPH-5 suggesting that the mutant has altered zinc coordination. These results demonstrate that a single amino acid change at a residue at the active site can lead to the generation of a mutant resistant to FTase inhibitors. Such a mutant may be valuable for the study of the effects of FTase inhibitors on tumor cells. 相似文献
10.
Dinsmore CJ Bergman JM Wei DD Zartman CB Davide JP Greenberg IB Liu D O'Neill TJ Gibbs JB Koblan KS Kohl NE Lobell RB Chen IW McLoughlin DA Olah TV Graham SL Hartman GD Williams TM 《Bioorganic & medicinal chemistry letters》2001,11(4):537-540
The evaluation of SAR associated with the insertion of carbonyl groups at various positions of N-arylpiperazinone farnesyltransferase inhibitors is described herein. 1-Aryl-2,3-diketopiperazine derivatives exhibited the best balance of potency and pharmacokinetic profile relative to the parent 1-aryl-2-piperazinones. 相似文献
11.
Ohkanda J Lockman JW Yokoyama K Gelb MH Croft SL Kendrick H Harrell MI Feagin JE Blaskovich MA Sebti SM Hamilton AD 《Bioorganic & medicinal chemistry letters》2001,11(6):761-764
Malaria continues to represent a very serious health problem in the tropics. The current methods of clinical treatment are showing deficiencies due to the increased incidence of resistance in the parasite. In the present paper we report the design, synthesis, and evaluation of potential antimalarial agents against a novel target, protein farnesyltransferase. We show that the most potent compounds are active against Plasmodium falciparum in vitro at submicromolar concentrations. 相似文献
12.
Cristina-Maria Abuhaie Alina Ghinet Amaury Farce Joëlle Dubois Benoît Rigo Elena Bîcu 《Bioorganic & medicinal chemistry letters》2013,23(21):5887-5892
A new family of 30 benzoylated N-ylides 4 and 5 was synthesized and evaluated for the inhibitory activity on human protein farnesyltransferase. Most of these novel compounds possessed in vitro inhibition potencies in the micromolar range. The nature of the substituents on the pyridine and phenyl units proved to be important in determining inhibitory activity and generally, the replacement of the cyanoacrylonitrile function by a cyanoethylacrylate group decreased the biological potential on farnesyltransferase. These results completed our SAR study on this original class of N-ylides. 相似文献
13.
Curtin ML Florjancic AS Cohen J Gu WZ Frost DJ Muchmore SW Sham HL 《Bioorganic & medicinal chemistry letters》2003,13(7):1367-1371
A series of imidazole-containing biphenyls was prepared and evaluated in vitro for inhibition of FTase and cellular Ras processing. Several of these analogues, such as 21, are potent inhibitors of FTase (<1nM), FTase/GGTase selective (>300-fold) and cellularly active (相似文献
14.
Potent selective inhibitors of protein kinase C 总被引:21,自引:0,他引:21
P D Davis C H Hill E Keech G Lawton J S Nixon A D Sedgwick J Wadsworth D Westmacott S E Wilkinson 《FEBS letters》1989,259(1):61-63
A series of potent, selective inhibitors of protein kinase C has been derived from the structural lead provided by the microbial broth products, staurosporine and K252a. Our inhibitors block PCK in intact cells (platelets and T cells), and prevent the proliferation of mononuclear cells in response to interleukin 2 (IL2). 相似文献
15.
The cystatins: protein inhibitors of cysteine proteinases. 总被引:41,自引:0,他引:41
The last decade has witnessed enormous progress of protein inhibitors of cysteine proteinases concerning their structures, functions and evolutionary relationships. Although they differ in their molecular properties and biological distribution, they are structurally related proteins. All three inhibitory families, the stefins, the cystatins and the kininogens, are members of the same superfamily. Recently determined crystal structures of chicken cystatin and human stefin B established a new mechanism of interaction between cysteine proteinases and their inhibitors which is fundamentally different from the standard mechanism for serine proteinases and their inhibitors. 相似文献
16.
Roush WR Cheng J Knapp-Reed B Alvarez-Hernandez A McKerrow JH Hansell E Engel JC 《Bioorganic & medicinal chemistry letters》2001,11(20):2759-2762
A new family of potent N-alkoxyvinylsulfonamide inhibitors of cruzain have been developed. Inhibitor 13 has a second order inactivation rate constant of 6,480,000s(-1)M(-1) versus cruzain, and is also highly effective against Trypanosoma cruzi trypomastigotes in a tissue culture assay. 相似文献
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Angibaud P Bourdrez X Devine A End DW Freyne E Ligny Y Muller P Mannens G Pilatte I Poncelet V Skrzat S Smets G Van Dun J Van Remoortere P Venet M Wouters W 《Bioorganic & medicinal chemistry letters》2003,13(9):1543-1547
The evaluation of structure-activity relationships associated with the modification of the R115777 quinolinone ring moiety displaying potent in vitro inhibiting activity is described. 相似文献
20.
Bergman JM Abrams MT Davide JP Greenberg IB Robinson RG Buser CA Huber HE Koblan KS Kohl NE Lobell RB Graham SL Hartman GD Williams TM Dinsmore CJ 《Bioorganic & medicinal chemistry letters》2001,11(11):1411-1415
A series of aryloxy substituted piperazinones with dual farnesyltransferase/geranylgeranyltransferase-I inhibitory activity was prepared. These compounds were found to have potent inhibitory activity in vitro and are promising agents for the inhibition of Ki-Ras signaling. 相似文献