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通过荧光显微镜观察光反应性溴化乙锭类似物在布氏锥虫中的亚细胞定位。

Subcellular localization of photoreactive ethidium analogs in Trypanosoma brucei by fluorescence microscopy.

作者信息

Cox B A, Yielding L W, Yielding K L

出版信息

J Parasitol. 1984 Oct;70(5):694-702.

PMID:6512635
Abstract

To identify the in vivo targets of the trypanocide, ethidium bromide, the fluorescent staining of T. brucei was examined for a series of ethidium analogs using fluorescence microscopy. Determination of the biological targets for most drugs is limited by the reversible nature of their interactions. To overcome this limitation, photoaffinity (azido) analogs of ethidium, which are capable of covalent attachment with photoactivation, were used to identify the ethidium binding sites within the parasites. Two of these compounds, when covalently attached, demonstrated an enhancement of fluorescent staining and were selective for the kinetoplast at low drug concentrations. These compounds were also those found previously to have the highest trypanocidal activity. Propidium, a phenanthridinium analog identical to ethidium except for a larger, more ionic substitution at R5, showed more nonspecific binding as determined by its general staining of the cytoplasm.

摘要

为了确定杀锥虫剂溴化乙锭在体内的作用靶点,使用荧光显微镜检查了一系列溴化乙锭类似物对布氏锥虫的荧光染色情况。大多数药物生物靶点的确定受到其相互作用可逆性的限制。为克服这一限制,使用了能够通过光活化进行共价结合的溴化乙锭光亲和(叠氮)类似物来鉴定寄生虫体内的溴化乙锭结合位点。其中两种化合物共价结合后,在低药物浓度下对动质体表现出荧光染色增强且具有选择性。这些化合物也是先前发现具有最高杀锥虫活性的化合物。碘化丙啶是一种菲啶类似物,与溴化乙锭相同,只是在R5处有一个更大、更具离子性的取代基,通过其对细胞质的普遍染色确定,它表现出更多的非特异性结合。

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