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阳离子逆向流动支持溶酶体酸化。

A cation counterflux supports lysosomal acidification.

作者信息

Steinberg Benjamin E, Huynh Kassidy K, Brodovitch Alexandre, Jabs Sabrina, Stauber Tobias, Jentsch Thomas J, Grinstein Sergio

机构信息

Program in Cell Biology, Hospital for Sick Children, Toronto, Canada M5G 1X8.

出版信息

J Cell Biol. 2010 Jun 28;189(7):1171-86. doi: 10.1083/jcb.200911083. Epub 2010 Jun 21.

Abstract

The profound luminal acidification essential for the degradative function of lysosomes requires a counter-ion flux to dissipate an opposing voltage that would prohibit proton accumulation. It has generally been assumed that a parallel anion influx is the main or only counter-ion transport that enables acidification. Indeed, defective anion conductance has been suggested as the mechanism underlying attenuated lysosome acidification in cells deficient in CFTR or ClC-7. To assess the individual contribution of counter-ions to acidification, we devised means of reversibly and separately permeabilizing the plasma and lysosomal membranes to dialyze the cytosol and lysosome lumen in intact cells, while ratiometrically monitoring lysosomal pH. Replacement of cytosolic Cl(-) with impermeant anions did not significantly alter proton pumping, while the presence of permeant cations in the lysosomal lumen supported acidification. Accordingly, the lysosomes were found to acidify to the same pH in both CFTR- and ClC-7-deficient cells. We conclude that cations, in addition to chloride, can support lysosomal acidification and defects in lysosomal anion conductance cannot explain the impaired microbicidal capacity of CF phagocytes.

摘要

溶酶体降解功能所必需的深度腔内酸化需要一种抗衡离子通量来消散会阻止质子积累的反向电压。一般认为,平行的阴离子内流是实现酸化的主要或唯一的抗衡离子转运方式。事实上,阴离子传导缺陷已被认为是囊性纤维化跨膜传导调节因子(CFTR)或氯离子通道蛋白7(ClC-7)缺陷细胞中溶酶体酸化减弱的潜在机制。为了评估抗衡离子对酸化的单独贡献,我们设计了可逆且分别通透质膜和溶酶体膜的方法,以透析完整细胞中的细胞质和溶酶体腔,同时通过比率法监测溶酶体pH值。用非渗透性阴离子替代细胞质中的Cl⁻并没有显著改变质子泵浦,而溶酶体腔内存在渗透性阳离子则支持酸化。因此,在CFTR和ClC-7缺陷细胞中,溶酶体都能酸化到相同的pH值。我们得出结论,除了氯离子外,阳离子也可以支持溶酶体酸化,溶酶体阴离子传导缺陷不能解释囊性纤维化吞噬细胞杀菌能力受损的原因。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7fec/2894458/68e0bd7a614c/JCB_200911083_GS_Fig1.jpg

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