地塞米松下调小鼠巨噬细胞溶酶体分泌:通过蛋白激酶C参与信号传导。

Journal of inflammation Pub Date : 1995-01-01
K Gewert, H Tapper, C Nauclér, R Sundler
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引用次数: 0

摘要

采用荧光光谱法观察地塞米松对大鼠胞浆和溶酶体pH值以及巨噬细胞分泌溶酶体内容物的影响。经dex预处理后,n -乙酰- β - d -氨基葡萄糖苷酶(NAG)对酶聚糖颗粒、溶酶性甲胺或H(+)- atp酶抑制剂巴菲霉素A1的分泌均受到抑制。甘露聚糖并没有逆转这种抑制作用,当监测预载荧光素标记的葡聚糖的分泌时,也可以看到这种抑制作用,这表明dex并没有通过增强溶酶体酶的再摄取来发挥作用。经dex处理后,酶多糖颗粒与巨噬细胞的结合减少,酶多糖诱导的磷脂酶C活化也减少。然而,酶san结合减少并不能单独解释磷脂酶C激活的抑制。同时,指数处理降低了胞浆pH值。这可能有助于抑制溶酶体分泌,但通过增加细胞外pH值来恢复胞质pH值并不能恢复分泌反应。蛋白激酶C (PKC)激活肽酯与甲胺联合诱导的溶酶体分泌比单独使用甲胺或其他促分泌剂诱导的分泌对dex的抗性更强。我们将此与之前的数据一起解释,表明dex通过减弱分泌反应所需的pkc介导的信号通路中的一个或多个步骤来抑制巨噬细胞溶酶体分泌。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Dexamethasone downregulates lysosomal secretion in mouse macrophages: involvement of signaling through protein kinase C.

Spectrofluorimetric methods were used to investigate the effects of dexamethasone (dex) on cytosolic and lysosomal pH and on macrophage secretion of lysosomal contents. Secretion of N-acetyl-beta-D-glucosaminidase (NAG) in response to zymosan particles, lysosomotropic methylamine, or the H(+)-ATPase inhibitor bafilomycin A1 was inhibited by pretreatment with dex. The inhibition was not reversed by mannan and was seen also when secretion of preloaded fluorescein-labelled dextran was monitored, demonstrating that dex did not exert its effect by enhancing the reuptake of lysosomal enzyme. The binding of zymosan particles to macrophages was diminished after dex treatment, as was the zymosan-induced phospholipase C activation. However, the decreased binding of zymosan did not alone account for the inhibition of phospholipase C activation. Also, cytosolic pH was lowered by dex treatment. This might contribute to the inhibition of lysosomal secretion, but restoration of cytosolic pH by an increase in extracellular pH did not restore the secretory response. Lysosomal secretion induced by a combination of protein kinase C (PKC)-activating phorbol ester and methylamine was more resistant to dex than secretion induced by methylamine alone, or other secretagogues. We interpret this, together with previous data, to indicate that dex inhibits macrophage lysosomal secretion by attenuating one or more step(s) in a PKC-mediated signaling pathway necessary for the secretory response.

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