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首页> 外文期刊>The biochemical journal >Monensin inhibits recycling of macrophage mannose-glycoprotein receptors and ligand delivery to lysosomes
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Monensin inhibits recycling of macrophage mannose-glycoprotein receptors and ligand delivery to lysosomes

机译:莫能菌素抑制巨噬细胞甘露糖糖蛋白受体的再循环和配体向溶酶体的传递

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pBinding studies with cells that had been permeabilized with saponin indicate that alveolar macrophages have an intracellular pool of mannose-specific binding sites which is about 4-fold greater than the cell surface pool. Monensin, a carboxylic ionophore which mediates proton movement across membranes, has no effect on binding of ligand to macrophages but blocks receptor-mediated uptake of 125I-labelled beta-glucuronidase. Inhibition of uptake was concentration- and time-dependent. Internalization of receptor-bound ligand, after warming to 37 degrees C, was unaffected by monensin. Moreover, internalization of ligand in the presence of monensin resulted in an intracellular accumulation of receptor-ligand complexes. The monensin effect was not dependent on the presence of ligand, since incubation of macrophages with monensin at 37 degrees C without ligand resulted in a substantial decrease in cell-surface binding activity. However, total binding activity, measured in the presence of saponin, was much less affected by monensin treatment. Removal of monensin followed by a brief incubation at pH 6.0 and 37 degrees C, restored both cell-surface binding and uptake activity. Fractionation experiments indicate that ligands enter a low-density (endosomal) fraction within the first few minutes of uptake, and within 20 min transfer to the lysosomal fraction has occurred. Monensin blocks the transfer from endosomal to lysosomal fraction. Lysosomal pH, as measured by the fluorescein-dextran method, was increased by monensin in the same concentration range that blocked ligand uptake. The results indicate that monensin blockade of receptor-mediated endocytosis of mannose-terminated ligands by macrophages is due to entrapment of receptor-ligand complexes and probably receptors in the pre-lysosomal compartment. The inhibition is linked with an increase in the pH of acid intracellular vesicles./p
机译:>与已经用皂苷透化的细胞的结合研究表明,肺泡巨噬细胞具有甘露糖特异性结合位点的细胞内池,比细胞表面池大约4倍。莫能菌素是一种介导质子跨膜移动的羧基离子载体,对配体与巨噬细胞的结合没有影响,但会阻断受体介导的125 I标记的β-葡萄糖醛酸苷酶的摄取。摄取的抑制是浓度和时间依赖性的。加热至37℃后,受体结合的配体的内在化不受莫能菌素的影响。此外,在莫能菌素存在下配体的内在化导致受体-配体复合物的细胞内积累。莫能菌素的作用不取决于配体的存在,因为巨噬细胞与莫能菌素在没有配体的情况下于37℃孵育会导致细胞表面结合活性的显着降低。然而,在皂苷存在下测得的总结合活性受莫能菌素处理的影响要小得多。除去莫能菌素,然后在pH 6.0和37摄氏度下短暂孵育,恢复了细胞表面结合和摄取活性。分馏实验表明,配体在摄取的前几分钟内进入低密度(内体)级分,并在20分钟内转移至溶酶体级分。莫能菌素阻止从内体到溶酶体的转移。通过荧光素-葡聚糖方法测量的溶酶体pH在相同的浓度范围内被莫能菌素增加,该浓度范围阻止配体摄取。结果表明,莫能菌素通过巨噬细胞对甘露糖终止的配体的受体介导的内吞作用的阻断是由于受体-配体复合物和可能的受体在溶酶体区室中的捕获。抑制作用与酸性细胞内囊泡pH的升高有关。

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