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Structure and function of a unique pore-forming protein from a pathogenic acanthamoeba

机译:病原棘阿米巴独特的成孔蛋白的结构和功能

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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.
机译:人类病原体经常产生可溶性蛋白质毒素,该毒素在膜内产生孔,导致靶细胞死亡和组织损伤。在致病性变形虫中,已经以肠原生动物寄生虫组织解脂变形虫(Entamoeba histolytica)的变形虫为例。在此,据我们所知,棘孢菌素是棘孢杆菌中描述的第一种成孔毒素,它是一种自由生活,以细菌为食的单细胞生物,是越来越重要的机会性病原体,会导致严重的甚至致命的疾病。我们通过追踪强毒棘孢棘皮提取物的孔形成活性,从其提取物中分离出棘孢菌素,分子克隆其前体基因,并在细菌中重组表达成熟蛋白。 Acanthaporin对人神经元细胞具有细胞毒性,并通过透化其膜而对多种细菌产生抗微生物活性。棘孢菌素的活性单体形式和非活性二聚体形式的三级结构均通过NMR光谱解析,揭示了目前未知的蛋白质折叠和pH依赖的激活触发机制。

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