Duan D, Zhong J, Hermoso M, Satterwhite C M, Rossow C F, Hatton W J, Yamboliev I, Horowitz B, Hume J R
Centre of Biomedical Research Excellence, Department of Physiology and Cell Biology, University of Nevada School of Medicine, Reno, NV 89557-0046, USA.
J Physiol. 2001 Mar 1;531(Pt 2):437-44. doi: 10.1111/j.1469-7793.2001.0437i.x.
Intracellular dialysis of NIH/3T3 cells with a commercially available anti-ClC-3 polyclonal antibody (Ab) for approximately 30 min completely inhibited expressed guinea-pig ClC-3 currents (IgpClC-3), while intracellular dialysis with antigen-preabsorbed anti-ClC-3 Ab failed to affect IgpClC-3. Anti-ClC-3 Ab was used as a selective probe to examine the relationship between endogenous ClC-3 expression and native volume-sensitive outwardly rectifying anion channels (VSOACs) in guinea-pig cardiac cells, canine pulmonary arterial smooth muscle cells (PASMCs) and Xenopus laevis oocytes. Intracellular dialysis or injection of anti-ClC-3 Ab abolished native VSOAC function in cardiac cells and PASMCs and significantly reduced VSOACs in oocytes. In contrast, native VSOAC function was unaltered by antigen-preabsorbed anti-ClC-3 Ab. It is suggested that endogenous ClC-3 represents a major molecular entity responsible for native VSOACs in cardiac and smooth muscle cells and Xenopus oocytes. Anti-ClC-3 Ab should be a useful experimental tool to directly test the relationship between endogenous ClC-3 expression and native VSOAC function, and help resolve existing controversies related to the regulation and physiological role of native VSOACs in a wide variety of different cells.
用市售的抗 ClC-3 多克隆抗体(Ab)对 NIH/3T3 细胞进行细胞内透析约 30 分钟,可完全抑制表达的豚鼠 ClC-3 电流(IgpClC-3),而用抗原预吸附的抗 ClC-3 Ab 进行细胞内透析则不会影响 IgpClC-3。抗 ClC-3 Ab 被用作选择性探针,以研究豚鼠心脏细胞、犬肺动脉平滑肌细胞(PASMCs)和非洲爪蟾卵母细胞中内源性 ClC-3 表达与天然容积敏感性外向整流阴离子通道(VSOACs)之间的关系。细胞内透析或注射抗 ClC-3 Ab 可消除心脏细胞和 PASMCs 中的天然 VSOAC 功能,并显著降低卵母细胞中的 VSOACs。相比之下,抗原预吸附的抗 ClC-3 Ab 不会改变天然 VSOAC 功能。这表明内源性 ClC-3 是心脏和平滑肌细胞以及非洲爪蟾卵母细胞中天然 VSOACs 的主要分子实体。抗 ClC-3 Ab 应该是一种有用的实验工具,可直接测试内源性 ClC-3 表达与天然 VSOAC 功能之间的关系,并有助于解决与各种不同细胞中天然 VSOACs 的调节和生理作用相关的现有争议。