首页> 美国卫生研究院文献>Biochemical Journal >Assembly of flammutoxin a cytolytic protein from the edible mushroom Flammulina velutipes into a pore-forming ring-shaped oligomer on the target cell.
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Assembly of flammutoxin a cytolytic protein from the edible mushroom Flammulina velutipes into a pore-forming ring-shaped oligomer on the target cell.

机译:将可食用蘑菇金针菇的细胞溶解蛋白火苗毒素装配到靶细胞上的成孔环状寡聚体中。

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摘要

Flammutoxin has been previously isolated as a cardiotoxic and cytolytic polypeptide of 22 or 32 kDa from the fruiting bodies of the edible mushroom Flammulina velutipes. In the present study, we purified flammutoxin as a single haemolytic protein of 31 kDa and studied the mode of its cytolytic action. (1) Flammutoxin caused efflux of potassium ions from human erythrocytes and swelling of the cells before haemolysis. (2) Flammutoxin did not lyse human erythrocytes in the presence of non-electrolytes with hydrodynamic diameters of >5.0 nm, although it caused leakage of potassium ions and swelling of the cells under the same conditions. (3) Experiments including solubilization of cell-bound toxin with 2% (w/v) SDS at 20 degrees C and subsequent Western immunoblots showed that flammutoxin formed a band corresponding to 180 kDa under the conditions where it lysed erythrocytes. (4) Electron microscopy of flammutoxin-treated human erythrocytes revealed the presence of a ring-shaped structure with outer and inner diameters of 10 and 5 nm, respectively, on the cells. (5) A ring-shaped toxin oligomer of the same dimensions was solubilized from the toxin-treated human erythrocytes with 2% (w/v) SDS at 20 degrees C and isolated by a sucrose-gradient ultracentrifugation. These data indicated that flammutoxin assembles into a ring-shaped oligomer possessing a hydrophilic pore of 4-5 nm on target cells.
机译:以前已经从食用蘑菇金针菇的子实体中分离出作为一种具有22或32 kDa的心脏毒性和细胞溶解性多肽的黄曲霉素毒素。在当前的研究中,我们纯化了作为31 kDa的单个溶血蛋白的火苗毒素,并研究了其溶细胞作用的模式。 (1)溶血前,黄曲霉毒素引起人红细胞中钾离子外流和细胞肿胀。 (2)在有动态直径> 5.0 nm的非电解质存在的情况下,弗拉莫他辛不会裂解人的红细胞,尽管在相同条件下会引起钾离子泄漏和细胞肿胀。 (3)实验包括在20摄氏度下用2%(w / v)SDS溶解细胞结合毒素,随后进行Western免疫印迹分析,结果表明,火红毒素在裂解红细胞的条件下形成了一条对应于180 kDa的条带。 (4)用火苗毒素处理的人红细胞的电子显微镜显示,在细胞上存在环形结构,其外径和内径分别为10和5 nm。 (5)在20℃下从具有2%(w / v)SDS的经毒素处理的人红细胞中溶解相同尺寸的环形毒素低聚物,并通过蔗糖梯度超速离心分离。这些数据表明,火苗毒素在靶细胞上组装成具有4-5nm亲水孔的环状低聚物。

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