首页> 外文期刊>Journal of cell biology >Second messengers regulate endosomal acidification in Swiss 3T3 fibroblasts.
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Second messengers regulate endosomal acidification in Swiss 3T3 fibroblasts.

机译:第二信使调节瑞士3T3成纤维细胞的内体酸化。

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Acidification of the endosomal pathway is important for ligand and receptor sorting, toxin activation, and protein degradation by lysosomal acid hydrolases. Fluorescent probes and imaging methods were developed to measure pH to better than 0.2 U accuracy in individual endocytic vesicles in Swiss 3T3 fibroblasts. Endosomes were pulse labeled with transferrin (Tf), alpha 2-macroglobulin (alpha 2M), or dextran, each conjugated with tetramethylrhodamine and carboxyfluorescein (for pH 5-8) or dichlorocarboxyfluorescein (for pH 4-6); pH in individual labeled vesicles was measured by ratio imaging using a cooled CCD camera and novel image analysis software. Tf-labeled endosomes acidified to pH 6.2 +/- 0.1 with a t1/2 of 4 min at 37 degrees C, and remained small and near the cell periphery. Dextran- and alpha 2M-labeled endosomes acidified to pH 4.7 +/- 0.2, becoming larger and moving toward the nucleus over 30 min; approximately 15% of alpha 2M-labeled endosomes were strongly acidic (pH less than 5.5) at only 1 min after labeling. Replacement of external Cl by NO3 or isethionate strongly and reversibly inhibited acidification. Addition of ouabain (1 mM) at the time of labeling strongly enhanced acidification in the first 5 min; Tf-labeled endosomes acidified to pH 5.3 without a change in morphology. Activation of phospholipase C by vasopressin (50 nM) enhanced acidification of early endosomes; activation of protein kinase C by PMA (100 nM) enhanced acidification strongly, whereas elevation of intracellular Ca by A23187 (1 microM) had no effect on acidification. Activation of protein kinase A by CPT-cAMP (0.5 mM) or forskolin (50 microM) inhibited acidification. Lysosomal pH was not affected by ouabain or the protein kinase activators. These results establish a methodology for quantitative measurement of pH in individual endocytic vesicles, and demonstrate that acidification of endosomes labeled with Tf and alpha 2M (receptor-mediated endocytosis) and dextran (fluid-phase endocytosis) is sensitive to intracellular anion composition, Na/K pump inhibition, and multiple intracellular second messengers.
机译:内体途径的酸化对于通过溶酶体酸水解酶进行的配体和受体分选,毒素激活和蛋白质降解非常重要。开发了荧光探针和成像方法,以测量瑞士3T3成纤维细胞中单个内吞小泡的pH值,使其精度优于0.2U。用转铁蛋白(Tf),α2-巨球蛋白(α2M)或右旋糖酐对内体进行脉冲标记,每种都与四甲基若丹明和羧基荧光素(对于pH 5-8)或二氯羧基荧光素(对于pH 4-6)缀合;使用冷却的CCD相机和新型图像分析软件通过比率成像法测量单个标记囊泡中的pH。 Tf标记的内体在37摄氏度下以4分钟的t1 / 2酸化至pH 6.2 +/- 0.1,并保持很小并靠近细胞外围。右旋糖酐和α2M标记的内体酸化至pH 4.7 +/- 0.2,变大并在30分钟内移向核。标记后仅1分钟,约15%的alpha 2M标记的内体呈强酸性(pH小于5.5)。用NO3或羟乙磺酸盐替代外部Cl强烈且可逆地抑制了酸化。标记时添加哇巴因(1 mM)在头5分钟内大大增强了酸化作用; Tf标记的内体酸化至pH 5.3,形态无变化。血管加压素(50 nM)激活磷脂酶C增强了早期内体的酸化; PMA(100 nM)对蛋白激酶C的激活强烈增强了酸化作用,而A23187(1 microM)引起的细胞内Ca升高对酸化作用没有影响。 CPT-cAMP(0.5 mM)或福司可林(50 microM)激活蛋白激酶A抑制了酸化。溶酶体的pH值不受哇巴因或蛋白激酶激活剂的影响。这些结果建立了定量测定单个内吞小泡中pH值的方法,并证明了用Tf和α2M(受体介导的内吞作用)和右旋糖酐(流体相内吞作用)标记的内体的酸化对细胞内阴离子成分Na /钾泵抑制和多个细胞内第二信使。

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