Jelamskii S, Sun X C, Herse P, Bonanno J A
Indiana University School of Optometry, Bloomington 47405, USA.
Invest Ophthalmol Vis Sci. 2000 Feb;41(2):488-95.
To examine whether Na(+)-K(+)-2Cl(-) cotransport has the potential to contribute to corneal endothelial ion and fluid transport in cultured and fresh bovine corneal endothelial cells.
Cl- and Na+ sensitive fluorescent dyes were used to measure furosemide-dependent ion fluxes in cultured and fresh endothelial cells. Immunoblot analysis and immunofluorescence were used to determine expression and location of the Na(+)-K(+)-2Cl(-)cotransporter (NKCC1).
Application of furosemide (50-100 microM) reduced Cl- and Na+ influx in approximately 50% of trials using cultured cells and only 10% of trials with fresh cells; however, in all cases pretreatment with furosemide slowed Cl- efflux when cells were bathed in Cl(-)-free Ringer's. Double-sided perfusion of cultured cells indicated that furosemide-sensitive Cl- fluxes were located on the basolateral side. Immunoblot analysis revealed 174-kDa bands in both fresh and cultured cells, but the bands were denser in fresh endothelial cells. Immunofluorescence showed distinct lateral membrane staining in addition to significant amounts of perinuclear staining.
The Na(+)-K(+)-2Cl(-) cotransporter is present in both fresh and cultured bovine corneal endothelium, and the expression is apparently higher in the fresh cells. The cotransporter is present on the lateral membrane consistent with a role in loading endothelial cells with Cl-, thereby possibly contributing to a transendothelial Cl- flux. However, in the resting cell, net flux through the transporter is often not apparent.
研究钠-钾-2氯协同转运体是否有可能在培养的和新鲜的牛角膜内皮细胞中参与角膜内皮的离子和液体转运。
使用对氯离子和钠离子敏感的荧光染料来测量培养的和新鲜的内皮细胞中呋塞米依赖的离子通量。采用免疫印迹分析和免疫荧光法来确定钠-钾-2氯协同转运体(NKCC1)的表达和定位。
在使用培养细胞的大约50%的实验中,应用呋塞米(50 - 100微摩尔)可减少氯离子和钠离子内流,而在使用新鲜细胞的实验中只有10%出现这种情况;然而,在所有情况下,当细胞置于无氯林格氏液中时,用呋塞米预处理会减慢氯离子外流。对培养细胞进行双侧灌注表明,呋塞米敏感的氯离子通量位于基底外侧。免疫印迹分析显示新鲜细胞和培养细胞中均有一条174 kDa的条带,但新鲜内皮细胞中的条带更密集。免疫荧光显示除了大量的核周染色外,还有明显的侧膜染色。
钠-钾-2氯协同转运体存在于新鲜的和培养的牛角膜内皮中,且在新鲜细胞中的表达明显更高。该协同转运体存在于侧膜上,这与其在向内皮细胞加载氯离子中的作用一致,从而可能有助于跨内皮氯离子通量。然而,在静息细胞中,通过该转运体的净通量通常并不明显。