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Serum factors alter the extent of dephosphorylation of ligands endocytosed via the mannose 6-phosphate/insulin-like growth factor II receptor

机译:血清因子改变通过甘露糖6-磷酸/胰岛素样生长因子II受体胞吞的配体的去磷酸化程度

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摘要

Mouse L-cells that contain the cation-independent (CI) mannose 6- phosphate (Man 6-P)/insulin-like growth factor (IGF) II receptor endocytose acid hydrolases and deliver these enzymes to lysosomes. The postendocytic loss of the Man 6-P recognition marker from the cell- associated acid hydrolases was assessed by CI-Man 6-P receptor affinity chromatography. 125I-labeled acid hydrolases internalized by L-cells grown at high density were delivered to lysosomes but were not dephosphorylated. In contrast, the same 125I-labeled hydrolases internalized by L-cells maintained at low density were delivered to lysosomes and were extensively dephosphorylated. The dephosphorylation at low density required 5 h for completion suggesting that the phosphatase responsible for the dephosphorylation is located within the lysosomal compartment. Transition from the high to low density state was rapid and was not inhibited by cycloheximide. Medium substitution experiments indicated that serum factors were necessary to maintain the L-cells in the dephosphorylation-competent (low density) state, and that serum-free conditions led to a dephosphorylation-incompetent (high density) state. Addition of IGF II to cells in serum-free medium allowed acid hydrolases subsequently introduced by endocytosis to be dephosphorylated. The results indicate that the removal of the Man 6-P recognition marker from endocytosed acid hydrolases is regulated by serum factors in the growth medium, including IGF II.
机译:小鼠L细胞包含不依赖阳离子的(CI)甘露糖6-磷酸(Man 6-P)/胰岛素样生长因子(IGF)II受体胞吞酸水解酶,并将这些酶传递至溶酶体。通过CI-Man 6-P受体亲和色谱法评估了与细胞相关的酸水解酶的Man 6-P识别标记的内吞后损失。被以高密度生长的L细胞内化的125 I标记的酸性水解酶被递送至溶酶体,但未被去磷酸化。相反,被维持在低密度的L细胞内化的相同的125I标记的水解酶被递送至溶酶体并被广泛地去磷酸化。低密度下的脱磷酸需要5小时才能完成,这表明负责脱磷酸作用的磷酸酶位于溶酶体区室中。从高密度状态到低密度状态的转变是迅速的,并且不受环己酰亚胺的抑制。培养基替代实验表明,血清因子是维持L细胞处于脱磷酸能力(低密度)状态所必需的,无血清条件导致脱磷酸能力(高密度)状态。在无血清培养基中向细胞中添加IGF II,可以使随后通过胞吞作用引入的酸性水解酶去磷酸化。结果表明,从内吞酸性水解酶中去除Man 6-P识别标记受生长培养基(包括IGF II)中血清因子的调节。

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