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Design, synthesis and antibacterial activity of minor groove binders: the role of non-cationic tail groups

机译:小沟粘合剂的设计,合成和抗菌活性:非阳离子尾基的作用

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摘要

he design and synthesis of a new class of minor groove binder (MGBs) in which, the cationic tail group has been replaced by a neutral, polar variant including cyanoguanidine, nitroalkene, and trifluoroacetamide groups. Antibacterial activity (against Gram positive bacteria) was found for both the nitroalkene and trifluoroacetamide groups. For the case of the nitroalkene tail group, strong binding of a minor groove binder containing this tail group was demonstrated by both DNA footprinting and melting temperature measurements, showing a correlation between DNA binding and antibacterial activity. The compounds have also been evaluated for binding to the hERG ion channel to determine whether non-cationic but polar substituents might have an advantage compared with conventional cationic tail groups in avoiding hERG binding. In this series of compounds, it was found that whilst non-cationic compounds generally had lower affinity to the hERG ion channel, all of the compounds studied bound weakly to the hERG ion channel, probably associated with the hydrophobic head groups.
机译:他设计并合成了一种新型的小沟粘合剂(MGB),其中阳离子尾基已被包括氰基胍,硝基烯基和三氟乙酰胺基团在内的中性极性变体取代。对硝基烯烃和三氟乙酰胺基团都发现了抗菌活性(针对革兰氏阳性细菌)。对于硝基烯烃尾基,通过DNA足迹和熔解温度测量证明了含有该尾基的小沟结合剂的牢固结合,显示了DNA结合与抗菌活性之间的相关性。还已经评估了化合物与hERG离子通道的结合,以确定非阳离子但极性取代基与常规阳离子尾基相比在避免hERG结合方面是否具有优势。在这一系列化合物中,发现虽然非阳离子化合物通常对hERG离子通道的亲和力较低,但所有研究的化合物均与hERG离子通道的结合较弱,可能与疏水性头基相关。

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