首页> 外文期刊>Peptides: An International Journal >Permeabilization of mitochondria and red blood cells by polycationic peptides BTM-P1 and retro-BTM-P1.
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Permeabilization of mitochondria and red blood cells by polycationic peptides BTM-P1 and retro-BTM-P1.

机译:聚阳离子肽BTM-P1和Retro-BTM-P1使线粒体和红细胞通透。

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摘要

Mitochondrial and plasma membrane permeabilization by polycationic peptides BTM-P1 and retro-BTM-P1 were studied. BTM-P1 was more active than its retro-analog. In the sucrose medium, the capacity of BTM-P1 to permeabilize mitochondria was lower than in salt media. In contrast, retro-BTM-P1 showed the lowest activity in the KCl medium. The efficacy of both peptides to permeabilize red blood cells was higher in the sucrose medium and depended on the nature of salt in high ionic strength media. BTM-P1, but not retro-BTM-P1, induced biphasic change in light dispersion of red blood cells with artificially generated high transmembrane potential: the initial phase of fast cell shrinkage preceded the subsequent phase of cell swelling. The shrunken red blood cells demonstrated increased sensitivity to BTM-P1 that might be explained by the cell suicide mechanism via phosphatidylserine exposure at the cell surface. As a working hypothesis, we assume that some peptide topology characteristics, such as the orientation and values of the total and local electrical dipole moments, interacting with the membrane dipole potential, as well as the asymmetric distribution of polar and non-polar side chains are important factors affecting the membrane-permeabilizing activity of polycationic peptides.
机译:研究了聚阳离子肽BTM-P1和Retro-BTM-P1对线粒体和质膜的透化作用。 BTM-P1比其逆向模拟更活跃。在蔗糖培养基中,BTM-P1渗透线粒体的能力低于在盐培养基中。相反,retro-BTM-P1在KCl培养基中显示最低的活性。两种肽在蔗糖培养基中通透红细胞的功效更高,并且取决于高离子强度培养基中盐的性质。 BTM-P1而非红血球BTM-P1诱导了具有人工产生的高跨膜电位的红细胞光分散性的双相变化:快速细胞收缩的初始阶段先于随后的细胞肿胀阶段。收缩的红​​细胞显示出对BTM-P1的敏感性增加,这可能是通过细胞表面磷脂酰丝氨酸暴露引起的细胞自杀机制所解释的。作为可行的假设,我们假设某些肽的拓扑特征,例如总和局部电偶极矩的方向和值,与膜偶极电势相互作用以及极性和非极性侧链的不对称分布是影响聚阳离子肽膜通透活性的重要因素。

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