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Structure-Activity Relationship of Semicarbazone EGA Furnishes Photoaffinity Inhibitors of Anthrax Toxin Cellular Entry

机译:Semicarbazone EGA的结构-活性关系提供炭疽毒素细胞进入的光亲和性抑制剂。

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EGA, 1, prevents the entry of multiple viruses and bacterial toxins into mammalian cells by inhibiting vesicular trafficking. The cellular target of 1 is unknown, and a structure- activity relationship study was conducted in order to develop a strategy for target identification. A compound with midnanomolar potency was identified (2), and three photoaffinity labels were synthesized (3-5). For this series, the expected photochemistry of the phenyl azide moiety is a more important factor than the IC50 of the photoprobe in obtaining a successful photolabeling event. While 3 was the most effective reversible inhibitor of the series, it provided no protection to cells against anthrax lethal toxin (LT) following UV irradiation. Conversely, 5, which possessed weak bioactivity in the standard assay, conferred robust irreversible protection vs LT to cells upon UV photolysis.
机译:EGA 1通过抑制水泡运输来防止多种病毒和细菌毒素进入哺乳动物细胞。 1的细胞靶标是未知的,进行了结构-活性关系研究以开发用于靶标鉴定的策略。鉴定出具有中纳米分子效力的化合物(2),并合成了三个光亲和标记(3-5)。对于此系列,在获得成功的光标记事件中,苯叠氮基部分的预期光化学比光探针的IC50更重要。虽然3是该系列中最有效的可逆抑制剂,但在紫外线照射后,它不能为细胞提供抗炭疽致命毒素(LT)的保护。相反地​​,在标准测定中生物活性较弱的5对UV光解后的细胞赋予了强大的不可逆保护性。

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