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双膦酸盐药物进入胞质溶胶需要在液相内吞作用后使囊泡酸化。

Cytosolic entry of bisphosphonate drugs requires acidification of vesicles after fluid-phase endocytosis.

作者信息

Thompson Keith, Rogers Michael J, Coxon Fraser P, Crockett Julie C

机构信息

Bone Research Group, Department of Medicine and Therapeutics, University of Aberdeen, Institute of Medical Sciences, Foresterhill, Aberdeen AB252ZD, UK.

出版信息

Mol Pharmacol. 2006 May;69(5):1624-32. doi: 10.1124/mol.105.020776. Epub 2006 Feb 24.

Abstract

Bisphosphonates such as alendronate and zoledronate are blockbuster drugs used to inhibit osteoclast-mediated bone resorption. Although the molecular mechanisms by which bisphosphonates affect osteoclasts are now evident, the exact route by which they are internalized by cells is not known. To clarify this, we synthesized a novel, fluorescently labeled analog of alendronate (AF-ALN). AF-ALN was rapidly internalized into intracellular vesicles in J774 macrophages and rabbit osteoclasts; uptake of AF-ALN or [14C]zoledronate was stimulated by the presence of Ca2+ and Sr2+ and could be inhibited by addition of EGTA or clodronate, both of which chelate calcium ions. Both EGTA and clodronate also prevented the bisphosphonate-induced inhibition of Rap1A prenylation, an effect that was reversed by addition of Ca2+. In J774 cells and osteoclasts, vesicular AF-ALN colocalized with dextran (but not wheat germ agglutinin or transferrin), and uptake of AF-ALN or [14C]zoledronate was inhibited by dansylcadaverine, indicating that fluid-phase endocytosis is involved in the initial internalization of bisphosphonate into vesicles. Endosomal acidification then seems to be absolutely required for exit of bisphosphonate from vesicles and entry into the cytosol, because monensin and bafilomycin A1, both inhibitors of endosomal acidification, did not inhibit vesicular uptake of AF-ALN or internalization of [14C]zoledronate but prevented the inhibitory effect of alendronate or zoledronate on Rap1A prenylation. Taken together, these results demonstrate that cellular uptake of bisphosphonate drugs requires fluid-phase endocytosis and is enhanced by Ca2+ ions, whereas transfer from endocytic vesicles into the cytosol requires endosomal acidification.

摘要

双膦酸盐类药物如阿仑膦酸盐和唑来膦酸盐是用于抑制破骨细胞介导的骨吸收的重磅药物。尽管双膦酸盐影响破骨细胞的分子机制现已明确,但它们被细胞内化的确切途径尚不清楚。为阐明这一点,我们合成了一种新型的、荧光标记的阿仑膦酸盐类似物(AF-ALN)。AF-ALN在J774巨噬细胞和兔破骨细胞中迅速内化到细胞内囊泡中;Ca2+和Sr2+的存在刺激了AF-ALN或[14C]唑来膦酸盐的摄取,而添加EGTA或氯膦酸盐可抑制摄取,这两种物质都能螯合钙离子。EGTA和氯膦酸盐还都能阻止双膦酸盐诱导的Rap1A异戊二烯化抑制作用,添加Ca2+可逆转这种作用。在J774细胞和破骨细胞中,囊泡状AF-ALN与葡聚糖共定位(但不与麦胚凝集素或转铁蛋白共定位),丹磺酰尸胺抑制了AF-ALN或[14C]唑来膦酸盐的摄取,表明液相内吞作用参与了双膦酸盐最初内化到囊泡的过程。然后,内体酸化似乎是双膦酸盐从囊泡中排出并进入细胞质所绝对必需的,因为内体酸化抑制剂莫能菌素和巴弗洛霉素A1既不抑制AF-ALN的囊泡摄取或[14C]唑来膦酸盐的内化,但却阻止了阿仑膦酸盐或唑来膦酸盐对Rap1A异戊二烯化的抑制作用。综上所述,这些结果表明双膦酸盐药物的细胞摄取需要液相内吞作用,并且Ca2+离子可增强摄取,而从内吞囊泡向细胞质的转运则需要内体酸化。

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