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三磷酸鸟苷对皂素通透的巨噬细胞和骨骼肌肌浆网中Ca2+释放及摄取的影响

Effect of guanosine triphosphate on the release and uptake of Ca2+ in saponin-permeabilized macrophages and the skeletal-muscle sarcoplasmic reticulum.

作者信息

Hamachi T, Hirata M, Kimura Y, Ikebe T, Ishimatsu T, Yamaguchi K, Koga T

出版信息

Biochem J. 1987 Feb 15;242(1):253-60. doi: 10.1042/bj2420253.

Abstract

The effects of GTP, with or without polyethylene glycol (PEG), on the release and uptake of Ca2+ were examined by using saponin-treated macrophages and sarcoplasmic reticulum isolated from skeletal muscles. The application of GTP in concentrations in the range 0.1-10 microM induced a gradual, small but sustained release of Ca2+ from the saponin-treated macrophages. The addition of PEG to GTP markedly enhanced the GTP-mediated Ca2+ release. GTP at the same concentration ranges used for Ca2+ release decreased the amount of Ca2+ uptake, at a steady state, but stimulated the rate of Ca2+ accumulation in the presence of oxalate, the Ca2+-precipitating anion. The addition of PEG abolished the GTP-evoked stimulation of Ca2+ accumulation in the presence of oxalate. The stimulating effect on the rate of Ca2+ accumulation by GTP and its elimination by PEG were not due to changes in the permeability of oxalate by either GTP or PEG, or both. The Ca2+-releasing effect of GTP without PEG was enhanced by eliminating the uptake activity by decreasing the content of ATP. These results indicate that GTP has an inherent activity to release Ca2+ from non-mitochondrial intracellular stores of saponin-treated macrophages, and PEG enhances the GTP-mediated Ca2+ release, partly owing to its eliminating effect on GTP-stimulated Ca2+ uptake activity. These effects of GTP observed with saponin-permeabilized macrophages were not apparent in the isolated skeletal-muscle sarcoplasmic reticulum.

摘要

采用皂素处理的巨噬细胞和从骨骼肌分离的肌浆网,研究了有无聚乙二醇(PEG)时鸟苷三磷酸(GTP)对Ca2+释放和摄取的影响。应用浓度范围为0.1 - 10 microM的GTP可诱导皂素处理的巨噬细胞逐渐、少量但持续地释放Ca2+。向GTP中添加PEG可显著增强GTP介导的Ca2+释放。用于Ca2+释放的相同浓度范围的GTP在稳态时会减少Ca2+摄取量,但在草酸盐(一种Ca2+沉淀阴离子)存在下会刺激Ca2+积累速率。添加PEG可消除草酸盐存在时GTP诱发的Ca2+积累刺激作用。GTP对Ca2+积累速率的刺激作用及其被PEG消除的作用,并非由于GTP或PEG或两者对草酸盐通透性的改变。通过降低ATP含量消除摄取活性可增强无PEG时GTP的Ca2+释放作用。这些结果表明,GTP具有从皂素处理的巨噬细胞的非线粒体细胞内储存中释放Ca2+的固有活性,而PEG可增强GTP介导的Ca2+释放,部分原因是其对GTP刺激的Ca2+摄取活性的消除作用。在皂素通透的巨噬细胞中观察到的GTP的这些作用,在分离的骨骼肌肌浆网中并不明显。

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