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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Intramitochondrial accumulation of cationic Atto520-biotin proceeds via voltage-dependent slow permeation through lipid membrane
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Intramitochondrial accumulation of cationic Atto520-biotin proceeds via voltage-dependent slow permeation through lipid membrane

机译:阳离子Atto520-生物素的线粒体内累积通过脂质膜上的电压依赖性缓慢渗透而进行

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Conjugation to penetrating cations is a general approach for intramitochondrial delivery of physiologically active compounds, supported by a high membrane potential of mitochondria having negative sign on the matrix side. By using fluorescence correlation spectroscopy, we found here that Atto520-biotin, a conjugate of a fluorescent cationic rhodamine-based dye with the membrane-impermeable vitamin biotin, accumulated in energized mitochondria in contrast to biotin-rhodamine 110. The energy-dependent uptake of Atto520-biotin by mitochondria, being slower than that of the conventional mitochondrial dye tetramethyl-rhodamine ethyl ester, was enhanced by the hydrophobic anion tetraphenylborate (TPB). Atto520-biotin also exhibited accumulation in liposomes driven by membrane potential resulting from potassium ion gradient in the presence valinomycin. The induction of electrical current across planar bilayer lipid membrane by Atto520-biotin proved the ability of the compound to permeate through lipid membrane in a cationic form. Atto520-biotin stained mitochondria in a culture of L929 cells, and the staining was enhanced in the presence of TPB. Therefore, the fluorescent Atto520 moiety can serve as a vehicle for intramitochondrial delivery of hydrophilic drugs. Of importance for biotin-streptavidin technology, binding of Atto520-biotin to streptavidin was found to cause quenching of its fluorescence similar to the case of fluorescein-4-biotin. (C) 2015 Elsevier B.V. All rights reserved.
机译:与穿透性阳离子的结合是用于线粒体内递送生理活性化合物的一般方法,线粒体具有较高的膜电势,在基质侧具有负号,可支持这种活性。通过使用荧光相关光谱,我们在这里发现Atto520-生物素,一种基于荧光阳离子罗丹明的染料与膜不可渗透的维生素生物素的共轭物,与生物素-若丹明110相比,聚集在充满活力的线粒体中。线粒体的Atto520-生物素比常规的线粒体染料四甲基罗丹明乙酯慢,而疏水性四苯基硼酸根(TPB)增强了生物素。在存在缬氨霉素的情况下,由钾离子梯度产生的膜电位驱动Atto520-生物素在脂质体中的积累。 Atto520-生物素在平面双层脂质膜上的电流感应证明了该化合物以阳离子形式渗透脂质膜的能力。 L929细胞培养物中Atto520-生物素染色的线粒体,在TPB存在下染色增强。因此,荧光Atto520部分可以用作线粒体内亲水药物递送的载体。对于生物素-链霉抗生物素蛋白技术很重要,发现Atto520-生物素与链霉抗生物素蛋白的结合会导致其荧光猝灭,类似于荧光素-4-生物素的情况。 (C)2015 Elsevier B.V.保留所有权利。

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