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首页> 外文期刊>The Journal of Membrane Biology: An International Journal for Studies on the Structure, Function & Genesis of Biomembranes >COBRA VENOM CYTOTOXIN FREE OF PHOSPHOLIPASE A, AND PTS EFFECT ON MODEL MEMBRANES AND T LEUKEMIA CELLS
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COBRA VENOM CYTOTOXIN FREE OF PHOSPHOLIPASE A, AND PTS EFFECT ON MODEL MEMBRANES AND T LEUKEMIA CELLS

机译:不含磷脂酶A的眼镜蛇毒细胞毒素和PTS对模型膜和T白血病细胞的影响

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摘要

Membrane-active toxins from snake venom have been used previously to study protein-lipid interactions and to probe the physical and biochemical states of biomembranes. To extend these studies, we have isolated from Naja naja kaowthia (cobra) venom a cytotoxin free of detectable phospholipase A(2) (PLA(2)). The amino acid composition, pI (10.2), and net charge of the cytotoxin compares well with membrane-active toxins isolated from venoms of other cobras. The cytotoxin, shown by a spin label method, associates with PLA(2) in buffers at pH values between 7.0 and 5.0, but not at pH 4.0. It is suggested that cytotoxin and PLA(2) (pI close to 4.8) associate electrostatically in the native venom. The effect of the cytotoxin on model phospholipid membranes was studied by EPR of spin probes in oriented lipid multilayers and H-1-NMR of sonicated liposomes. The cytotoxin did not significantly affect the packing of lipids in pure phosphatidylcholine (PC) membranes and in PC membranes containing 10 mol% phosphatidic acid (PA) or cardiolipin (CL). However, the cytotoxin induced an increase in membrane permeability and formation of nonbilayer structures in PC membranes containing 40 mol% of PA or CL. The purified cytotoxin was cytocidal to Jurkat cells, but had little effect on normal human lymphocytes. However, both Jurkat cells and normal lymphocytes were killed equivalently when treated with 10(-9) M PLA(2) and 10(-5) M cytotoxin in combination. From its effect on model membranes and Jurkat cells, it is suggested that purified cytotoxin preferentially targets and disrupts membranes that are rich in acidic phospholipids on the extracellular side of the plasma membrane. [References: 50]
机译:蛇毒中的膜活性毒素先前已用于研究蛋白质-脂质相互作用,并探测生物膜的物理和生化状态。为了扩展这些研究,我们从眼镜蛇毒液中分离了无可检测磷脂酶A(2)(PLA(2))的细胞毒素。氨基酸组成,pI(10.2)和细胞毒素的净电荷与从其他眼镜蛇毒液中分离出的膜活性毒素相比具有很好的对比性。通过自旋标记法显示的细胞毒素在pH值介于7.0和5.0之间而不与pH 4.0的缓冲液中的PLA(2)结合。建议细胞毒素和PLA(2)(pI接近4.8)在天然毒液中静电结合。通过定向脂质多层中的自旋探针的EPR和超声处理的脂质体的H-1-NMR,研究了细胞毒素对模型磷脂膜的影响。细胞毒素对纯磷脂酰胆碱(PC)膜和含有10 mol%磷脂酸(PA)或心磷脂(CL)的PC膜中的脂质堆积没有明显影响。然而,细胞毒素在含有40 mol%PA或CL的PC膜中诱导了膜通透性的增加和非双层结构的形成。纯化的细胞毒素对Jurkat细胞具有杀细胞作用,但对正常人淋巴细胞几乎没有影响。但是,联合使用10(-9)M PLA(2)和10(-5)M细胞毒素处理时,Jurkat细胞和正常淋巴细胞均被杀死。从其对模型膜和Jurkat细胞的影响来看,建议纯化的细胞毒素优先靶向并破坏质膜细胞外侧富含酸性磷脂的膜。 [参考:50]

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