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抑制病原菌:人胆碱激酶抑制剂作为抗菌剂的潜力。

ChoK-ing the Pathogenic Bacteria: Potential of Human Choline Kinase Inhibitors as Antimicrobial Agents.

机构信息

School of Health Sciences, Health Campus, Universiti Sains Malaysia, 16150 Kubang Kerian, Kelantan, Malaysia.

出版信息

Biomed Res Int. 2020 Jul 9;2020:1823485. doi: 10.1155/2020/1823485. eCollection 2020.

Abstract

Novel antimicrobial agents are crucial to combat antibiotic resistance in pathogenic bacteria. Choline kinase (ChoK) in bacteria catalyzes the synthesis of phosphorylcholine, which is subsequently incorporated into the cell wall or outer membrane. In certain species of bacteria, phosphorylcholine is also used to synthesize membrane phosphatidylcholine. Numerous human ChoK inhibitors (ChoKIs) have been synthesized and tested for anticancer properties. Inhibition of . ChoK by human ChoKIs showed a promising effect by distorting the cell wall and retarded the growth of this pathogen. Comparison of amino acid sequences at the catalytic sites of putative choline kinases from pathogenic bacteria and human enzymes revealed striking sequence conservation that supports the potential application of currently available ChoKIs for inhibiting bacterial enzymes. We also propose the combined use of ChoKIs and nanoparticles for targeted delivery to the pathogen while shielding the human host from any possible side effects of the inhibitors. More research should focus on the verification of putative bacterial ChoK activities and the characterization of ChoKIs with active enzymes. In conclusion, the presence of ChoK in a wide range of pathogenic bacteria and the distinct function of this enzyme has made it an attractive drug target. This review highlighted the possibility of "choking" bacterial ChoKs by using human ChoKIs.

摘要

新型抗菌药物对于对抗致病菌的抗生素耐药性至关重要。细菌中的胆碱激酶(ChoK)催化磷酸胆碱的合成,随后磷酸胆碱被整合到细胞壁或外膜中。在某些细菌物种中,磷酸胆碱也用于合成膜磷脂酰胆碱。已经合成了许多人源 ChoK 抑制剂(ChoKIs)并测试了它们的抗癌特性。人源 ChoKIs 通过扭曲细胞壁和减缓这种病原体的生长来抑制 ChoK,显示出有希望的效果。对来自致病菌和人酶的假定胆碱激酶的催化部位的氨基酸序列进行比较,发现了惊人的序列保守性,这支持了当前可用的 ChoKIs 抑制细菌酶的潜在应用。我们还提出将 ChoKIs 与纳米颗粒联合使用,以靶向递送至病原体,同时保护人体宿主免受抑制剂可能产生的任何副作用。应更多地关注假定细菌 ChoK 活性的验证以及具有活性酶的 ChoKIs 的表征。总之,ChoK 在广泛的致病菌中的存在及其独特的功能使其成为一个有吸引力的药物靶标。本综述强调了使用人源 ChoKIs“扼杀”细菌 ChoK 的可能性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3b13/7368946/25fae44fccec/BMRI2020-1823485.001.jpg

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