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N-取代咔唑衍生物的抗菌活性及其作用机制的阐明。

Elucidation of antimicrobial activity and mechanism of action by N-substituted carbazole derivatives.

作者信息

Clausen Johannes D, Kjellerup Lasse, Cohrt Karen O'Hanlon, Hansen John Bondo, Dalby-Brown William, Winther Anne-Marie L

机构信息

Pcovery ApS, Ole Maaløes Vej 3, 2200 Copenhagen N, Denmark.

Pcovery ApS, Ole Maaløes Vej 3, 2200 Copenhagen N, Denmark; Department of Plant and Environmental Sciences, University of Copenhagen, DK-1871 Frederiksberg, Denmark.

出版信息

Bioorg Med Chem Lett. 2017 Oct 1;27(19):4564-4570. doi: 10.1016/j.bmcl.2017.08.067. Epub 2017 Sep 1.

Abstract

Compounds belonging to a carbazole series have been identified as potent fungal plasma membrane proton adenosine triphophatase (H-ATPase) inhibitors with a broad spectrum of antifungal activity. The carbazole compounds inhibit the adenosine triphosphate (ATP) hydrolysis activity of the essential fungal H-ATPase, thereby functionally inhibiting the extrusion of protons and extracellular acidification, processes that are responsible for maintaining high plasma membrane potential. The compound class binds to and inhibits the H-ATPase within minutes, leading to fungal death after 1-3h of compound exposure in vitro. The tested compounds are not selective for the fungal H-ATPase, exhibiting an overlap of inhibitory activity with the mammalian protein family of P-type ATPases; the sarco(endo)plasmic reticulum calcium ATPase (Ca-ATPase) and the sodium potassium ATPase (Na,K-ATPase). The ion transport in the P-type ATPases is energized by the conversion of ATP to adenosine diphosphate (ADP) and phosphate and a general inhibitory mechanism mediated by the carbazole derivative could therefore be blocking of the active site. However, biochemical studies show that increased concentrations of ATP do not change the inhibitory activity of the carbazoles suggesting they act as allosteric inhibitors. Furthermore decreased levels of intracellular ATP would suggest that the compounds inhibit the H-ATPase indirectly, but Candida albicans cells exposed to potent H-ATPase-inhibitory carbazoles result in increased levels of intracellular ATP, indicating direct inhibition of H-ATPase.

摘要

属于咔唑系列的化合物已被鉴定为强效真菌质膜质子腺苷三磷酸酶(H-ATPase)抑制剂,具有广谱抗真菌活性。咔唑化合物抑制必需的真菌H-ATPase的三磷酸腺苷(ATP)水解活性,从而在功能上抑制质子的外排和细胞外酸化,这些过程负责维持高的质膜电位。该化合物类别在数分钟内结合并抑制H-ATPase,在体外暴露于化合物1-3小时后导致真菌死亡。所测试的化合物对真菌H-ATPase没有选择性,与P型ATPases的哺乳动物蛋白家族(肌质(内质)网钙ATPase(Ca-ATPase)和钠钾ATPase(Na,K-ATPase))表现出抑制活性的重叠。P型ATPases中的离子转运由ATP转化为二磷酸腺苷(ADP)和磷酸来提供能量,因此咔唑衍生物介导的一般抑制机制可能是阻断活性位点。然而,生化研究表明,ATP浓度的增加不会改变咔唑的抑制活性,这表明它们作为变构抑制剂起作用。此外,细胞内ATP水平的降低表明这些化合物间接抑制H-ATPase,但暴露于强效H-ATPase抑制性咔唑的白色念珠菌细胞导致细胞内ATP水平升高,表明对H-ATPase的直接抑制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/59a7/5609566/998ece2d24c7/fx1.jpg

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