Development of improved inhibitors of wall teichoic acid biosynthesis with potent activity against Staphylococcus aureus
摘要:
A small molecule (1835F03) that inhibits Staphylococcus aureus wall teichoic acid biosynthesis, a proposed antibiotic target, has been discovered. Rapid, parallel, solution-phase synthesis was employed to generate a focused library of analogs, providing detailed information about structure-activity relationships and leading to the identification of targocil, a potent antibiotic. (C) 2010 Elsevier Ltd. All rights reserved.
作者:Alexandre V. Ivachtchenko、Elena S. Golovina、Madina G. Kadieva、Angela G. Koryakova、Sergiy M. Kovalenko、Oleg D. Mitkin、Ilya M. Okun、Irina M. Ravnyeyko、Sergey E. Tkachenko、Oleg V. Zaremba
DOI:10.1021/cc1000049
日期:2010.7.12
Here we present the solution phase parallel synthesis of a combinatorial library consisting of 776 new substituted 3-phenylsulfonyl-[1,2,3]triazolo[1,5-a]quinazolines and a study of the relation of their structure with a 5-HT6 receptor antagonistic activity in a functional cell (HEK 293) analysis and radioligand competitive binding. We have found highly active and selective 5-HT6R antagonists. The most active 5-HT6R antagonists have IC50 < 100 nM in a functional assay, and K-i < 10 nM in a binding assay, which is 100 times higher than the activity with respect to other serotonin receptors.
Development of improved inhibitors of wall teichoic acid biosynthesis with potent activity against Staphylococcus aureus
作者:Kyungae Lee、Jennifer Campbell、Jonathan G. Swoboda、Gregory D. Cuny、Suzanne Walker
DOI:10.1016/j.bmcl.2010.01.036
日期:2010.3
A small molecule (1835F03) that inhibits Staphylococcus aureus wall teichoic acid biosynthesis, a proposed antibiotic target, has been discovered. Rapid, parallel, solution-phase synthesis was employed to generate a focused library of analogs, providing detailed information about structure-activity relationships and leading to the identification of targocil, a potent antibiotic. (C) 2010 Elsevier Ltd. All rights reserved.
Photoinduced synthesis of 2-sulfonylacetonitriles with the insertion of sulfur dioxide under ultraviolet irradiation
3-azido-2-methylbut-3-en-2-ol under ultraviolet irradiation at room temperature is achieved, giving rise to 2-(arylsulfonyl)acetonitriles in moderate to good yields. Alkyl iodide is also workable under these conditions. This transformation proceeds smoothly undermildconditions with a broad substrate scope. Various functional groups are compatible including amino, ester, halo, and trifluoromethyl groups. No metal catalyst