Poole B, Ohkuma S
J Cell Biol. 1981 Sep;90(3):665-9. doi: 10.1083/jcb.90.3.665.
The spectral characteristics of dextran, labeled with fluorescein, depend upon pH. We have loaded the lysosomes of mouse peritoneal macrophages with this fluorescence probe and used it to measure the intralysosomal pH under various conditions. The pH of the medium has no effect on the intralysosomal pH. Weakly basic substances in the medium cause a concentration-dependent increase in the intralysosomal pH. However, the concentration of base necessary to produce a significant change in the intralysosomal pH varies over a wide range for different bases. The active form of the base is the neutral, unprotonated form. Although most of these weak bases cause an increase in the volume of the lysosomes, increase in lysosomal volume itself causes only a minor perturbation of the intralysosomal pH. This was demonstrated in cells whose lysosomes were loaded with sucrose, and in cells vacuolated as a demonstrated in cells whose lysosomes were loaded with sucrose, and in cells vacuolated as a consequence of exposure to concanavalin A. The results of these studies are interpreted in terms of energy-dependent lysosomal acidification and leakage of protons out of the lysosomes in the form of protonated weak bases.
用荧光素标记的葡聚糖的光谱特性取决于pH值。我们已用这种荧光探针装载小鼠腹膜巨噬细胞的溶酶体,并用于测量各种条件下溶酶体内的pH值。培养基的pH值对溶酶体内的pH值没有影响。培养基中的弱碱性物质会导致溶酶体内pH值呈浓度依赖性增加。然而,不同碱基使溶酶体内pH值产生显著变化所需的碱浓度在很宽的范围内变化。碱的活性形式是中性的、未质子化的形式。尽管这些弱碱大多会导致溶酶体体积增加,但溶酶体体积增加本身只会对溶酶体内的pH值产生轻微干扰。这在溶酶体装载蔗糖的细胞以及因暴露于伴刀豆球蛋白A而空泡化的细胞中得到了证实。这些研究结果根据能量依赖的溶酶体酸化以及质子以质子化弱碱的形式从溶酶体中泄漏来解释。