微生物学
生物
毒力
抗菌剂
溶组织内阿米巴
棘阿米巴
致病菌
毒素
细菌
细胞毒性T细胞
基因
原生动物
功能(生物学)
细胞毒性
毒力因子
溶解循环
抗菌肽
维罗细胞
肽序列
重组DNA
细胞培养
人类病原体
造孔毒素
细胞生物学
生物化学
蛋白质结构
微生物毒素
内阿米巴
大肠杆菌
化学
细菌遗传学
体外
血浆蛋白结合
蛋白质A
细胞致死膨胀毒素
细菌蛋白
病毒学
膜蛋白
细胞内寄生虫
抗感染药
作者
Michalek, M.,Sönnichsen, F.D.,Wechselberger, R.W.,Wienk, H.L.J.,Leippe, M.,et al., [No Value],NMR Spectroscopy,Sub NMR Spectroscopy
出处
期刊:DANS - Data Archiving and Networked Services - NARCIS - National Academic Research and Collaborations Information System
[Royal Netherlands Academy of Arts and Sciences]
日期:2013-01-01
被引量:74
摘要
Human pathogens often produce soluble protein toxins that generate pores inside membranes, resulting in the death of target cells and tissue damage. In pathogenic amoebae, this has been exemplified with amoebapores of the enteric protozoan parasite Entamoeba histolytica. Here we characterize acanthaporin, to our knowledge the first pore-forming toxin to be described from acanthamoebae, which are free-living, bacteria-feeding, unicellular organisms that are opportunistic pathogens of increasing importance and cause severe and often fatal diseases. We isolated acanthaporin from extracts of virulent Acanthamoeba culbertsoni by tracking its pore-forming activity, molecularly cloned the gene of its precursor and recombinantly expressed the mature protein in bacteria. Acanthaporin was cytotoxic for human neuronal cells and exerted antimicrobial activity against a variety of bacterial strains by permeabilizing their membranes. The tertiary structures of acanthaporin’s active monomeric form and inactive dimeric form, both solved by NMR spectroscopy, revealed a currently unknown protein fold and a pH-dependent trigger mechanism of activation.
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