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Fluorescein analogs inhibit SecA ATPase: the first sub-µM inhibitor of bacterial protein translocation

机译:荧光素类似物抑制Seca ATPase:细菌蛋白易位的第一亚微米抑制剂

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摘要

SecA is a central component of the general secretion system that is essential for bacterial growth and thus an ideal target for the development of antimicrobial agents. A series of fluorescein analogs were first screened against the ATPase activity using the truncated unregulated SecA catalytic domain. Rose Bengal (RB) and Erythrosin B (EB) were found to be potent inhibitors with IC50 values of 0.5 µM and 2 µM, respectively. RB and EB inhibit the catalytic SecA ATPase more than the F1F0-proton ATPase. We used three assays to test the effect of these compounds on full length SecA ATPase: in solution (intrinsic ATPase), in membrane preparation, and translocation ATPase. RB and EB show the following trend in terms of IC50 values: translocation ATPase < membrane ATPase < intrinsic ATPase. Very importantly, the potency of these fluorescein analogs in inhibiting the truncated SecA ATPase correlates with their ability to inhibit the biologically relevant protein translocation activity of SecA. The in vitro translocation of proOmpA precursors into membrane vesicles is strongly inhibited by RB with IC50 of about 0.25 µM, making RB the most potent inhibitor of SecA ATPases and SecA-dependent protein translocation thus far. The ability of these compounds to inhibit SecA directly translates into antibacterial effects as well. Our findings show the value of fluorescein analogs as probes for mechanistic studies of SecA functions, and for the potential development of new antimicrobial agents with SecA as the target.
机译:Seca是一般分泌系统的中央分量,对细菌生长至关重要,因此是抗微生物剂的理想靶标。首先使用截短的未调节的Seca催化结构域对ATP酶活性筛选一系列荧光素类似物。发现玫瑰孟加拉(RB)和eryhrosinb(EB)是具有0.5μm和2μm的IC 50值的有效抑制剂。 RB和EB抑制催化SECA ATP酶的大于F1F0-质子ATP酶。我们使用了三种测定来测试这些化合物对全长Seca ATP酶的影响:在溶液(内在ATP酶)中,膜制备和易位ATP酶。 RB和EB在IC 50值方面显示下列趋势:易位ATPase <膜ATP酶<固有静止ATP酶。非常重要的是,这些荧光素类似物在抑制截短的Seca ATPase中的效力与它们抑制Seca的生物相关蛋白质易位活动的能力相关。通过约0.25μm的Rb,Proompa前体的体外易位被膜囊泡的RB强烈抑制,使RB是SECA ATPASS和SECA依赖性蛋白质易位的RB最有效的抑制剂。这些化合物抑制Seca的能力也直接转化为抗菌效果。我们的研究结果显示荧光素类似物作为SECA功能机械研究的探讨,以及SECA作为目标的新抗微生物剂的潜在发展。

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