folA thyA knockout E. coli as a suitable surrogate model for evaluation of antifolate sensitivity against PfDHFR-TS

IF 2.1 3区 医学 Q2 PARASITOLOGY
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Abstract

A new superior bacteria complementation model was achieved for testing antifolate compounds and investigating antifolate resistance in the dihydrofolate reductase (DHFR) enzyme of the malaria parasite. Earlier models depended on the addition of trimethoprim (TMP) to chemically suppress the host Escherichia coli (Ec) DHFR function. However, incomplete suppression of EcDHFR and potential interference of antibiotics needed to maintain plasmids for complementary gene expression can complicate the interpretations. To overcome such limitations, the folA (F) and thyA (T) genes were genetically knocked out (Δ) in E. coli BL21(DE3). The resulting EcΔFΔT cells were thymidine auxotroph where thymidine supplementation or functional complementation with heterologous DHFR-thymidylate synthase (TS) is needed to restore the loss of gene functions. When tested against pyrimethamine (PYR) and its analogs designed to target Plasmodium falciparum (Pf) DHFR-TS, the 50 % inhibitory concentration values obtained from EcΔFΔT surrogates expressing wildtype (PfTM4) or double mutant (PfK1) DHFR-TS showed strong correlations to the results obtained from the standard in vitro P. falciparum growth inhibition assay. Interestingly, while TMP had little effect on the susceptibility to PYR and analogs in EcΔFΔT expressing PfDHFR-TS, it hypersensitized the chemically knockdown E. coli BL21(DE3) expressing PfTM4 DHFR-TS but desensitized the one carrying PfK1 DHFR-TS. The low intrinsic expression level of PfTM4 in E. coli BL21(DE3) by western blot analysis may explain the hypersensitive to antifolates of chemical knockdown bacteria surrogate. These results demonstrated the usefulness of EcΔFΔT surrogate as a new tool for antifolate antimalarial screening with potential application for investigation of antifolate resistance mechanism.

将 folA thyA 基因敲除大肠杆菌作为评估抗叶酸对 PfDHFR-TS 敏感性的合适替代模型。
在测试抗叶酸化合物和研究疟原虫二氢叶酸还原酶(DHFR)的抗叶酸耐药性方面,实现了一种新的高级细菌互补模型。早期的模型依赖于添加三甲氧苄啶(TMP)来化学抑制宿主大肠杆菌(Ec)的 DHFR 功能。然而,对 EcDHFR 的不完全抑制以及维持质粒以实现互补基因表达所需的抗生素的潜在干扰会使解释复杂化。为了克服这些限制,我们在大肠杆菌 BL21(DE3) 中基因敲除了 folA (F) 和 thyA (T) 基因 (Δ)。由此产生的 EcΔFΔT 细胞是胸苷辅助营养细胞,需要补充胸苷或与异源 DHFR 胸苷酸合成酶(TS)进行功能互补才能恢复基因功能的缺失。在针对恶性疟原虫(Pf)DHFR-TS设计的嘧啶(PYR)及其类似物进行测试时,从表达野生型(PfTM4)或双突变型(PfK1)DHFR-TS的EcΔFΔT代用品中获得的50%抑制浓度值与标准体外恶性疟原虫生长抑制试验的结果显示出很强的相关性。有趣的是,虽然 TMP 对表达 PfDHFR-TS 的 EcΔFΔT 对PYR 和类似物的敏感性几乎没有影响,但它却使表达 PfTM4 DHFR-TS 的化学敲除大肠杆菌 BL21(DE3) 超敏,但却使携带 PfK1 DHFR-TS 的大肠杆菌脱敏。通过 Western 印迹分析,BL21(DE3)中 PfTM4 的内在表达水平较低,这可能是化学基因敲除代用菌对抗菌素不敏感的原因。这些结果表明,EcΔFΔT替代物可作为抗叶酸类抗疟药筛选的新工具,并有可能应用于研究抗叶酸类药物的耐药机制。
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来源期刊
Acta tropica
Acta tropica 医学-寄生虫学
CiteScore
5.40
自引率
11.10%
发文量
383
审稿时长
37 days
期刊介绍: Acta Tropica, is an international journal on infectious diseases that covers public health sciences and biomedical research with particular emphasis on topics relevant to human and animal health in the tropics and the subtropics.
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