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溶酶体和胞质pH在巨噬细胞溶酶体酶分泌调节中的作用。

Role of lysosomal and cytosolic pH in the regulation of macrophage lysosomal enzyme secretion.

作者信息

Tapper H, Sundler R

机构信息

Department of Medical and Physiological Chemistry, University of Lund, Sweden.

出版信息

Biochem J. 1990 Dec 1;272(2):407-14. doi: 10.1042/bj2720407.

Abstract

Rapid and parallel secretion of lysosomal beta-N-acetylglucosaminidase and preloaded fluorescein-labelled dextran was initiated in macrophages by agents affecting intracellular pH (methylamine, chlorpromazine, and the ionophores monensin and nigericin). In order to evaluate the relative role of changes in lysosomal and cytosolic pH, these parameters were monitored by using pH-sensitive fluorescent probes [fluorescein-labelled dextran or 2',7'-bis(carboxyethyl)-5(6)-carboxyfluorescein]. All agents except chlorpromazine caused large increases in lysosomal pH under conditions where they induced secretion. By varying extracellular pH and ion composition, the changes in lysosomal and cytosolic pH could be dissociated. Secretion was then found to be significantly modulated by changes in cytosolic pH, being enhanced by alkalinization and severely inhibited by cytosolic acidification. However, changes in cytosolic pH in the absence of stimulus were unable to initiate secretion. Dissociation of the effects on lysosomal and cytosolic pH was also achieved by combining stimuli with either nigericin or acetate. Further support for a role of intracellular pH in the control of lysosomal enzyme secretion was provided by experiments where bicarbonate was included in the medium. The present study demonstrates that an increase in lysosomal pH is sufficient to initiate lysosomal enzyme secretion in macrophages and provides evidence for a significant regulatory role of cytosolic pH.

摘要

通过影响细胞内pH值的试剂(甲胺、氯丙嗪以及离子载体莫能菌素和尼日利亚菌素),可引发巨噬细胞中溶酶体β-N-乙酰氨基葡萄糖苷酶和预加载的荧光素标记葡聚糖的快速并行分泌。为了评估溶酶体和胞质pH值变化的相对作用,使用pH敏感荧光探针(荧光素标记葡聚糖或2',7'-双(羧乙基)-5(6)-羧基荧光素)对这些参数进行监测。除氯丙嗪外,所有试剂在诱导分泌的条件下均会导致溶酶体pH值大幅升高。通过改变细胞外pH值和离子组成,可使溶酶体和胞质pH值的变化分离。随后发现,分泌受到胞质pH值变化的显著调节,碱化可增强分泌,而胞质酸化则会严重抑制分泌。然而,在无刺激情况下胞质pH值的变化无法引发分泌。通过将刺激与尼日利亚菌素或乙酸盐结合,也实现了对溶酶体和胞质pH值影响的分离。在培养基中加入碳酸氢盐的实验进一步支持了细胞内pH值在溶酶体酶分泌控制中的作用。本研究表明,溶酶体pH值的升高足以引发巨噬细胞中溶酶体酶的分泌,并为胞质pH值的重要调节作用提供了证据。

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