Gawenis Lara R, Franklin Craig L, Simpson Janet E, Palmer Bradley A, Walker Nancy M, Wiggins Tarra M, Clarke Lane L
Dalton Cardiovascular Research Center, Research Park, University of Missouri-Columbia, Columbia, Missouri 65211, USA.
Gastroenterology. 2003 Oct;125(4):1148-63. doi: 10.1016/s0016-5085(03)01212-5.
Unlike the intestine of normal subjects, small-intestinal epithelia of cystic fibrosis patients and cystic fibrosis transmembrane conductance regulator protein-null (CFTR(-)) mice do not respond to stimulation of intracellular cyclic adenosine monophosphate with inhibition of electroneutral NaCl absorption. Because CFTR-mediated anion secretion has been associated with changes in crypt cell volume, we hypothesized that CFTR-mediated cell volume reduction in villus epithelium is required for intracellular cyclic adenosine monophosphate inhibition of Na(+)/H(+) exchanger (primarily Na(+)/H(+) exchanger 3) activity in the proximal small intestine.
Transepithelial (22)Na flux across the jejuna of CFTR(+), CFTR(-), the basolateral membrane Na(+)/K(+)/2Cl(-) co-transporter protein NKCC1(+), and NKCC1(-) mice were correlated with changes in epithelial cell volume of the midvillus region.
Stimulation of intracellular cyclic adenosine monophosphate resulted in cessation of Na(+)/H(+) exchanger-mediated Na(+) absorption (J(ms)(NHE)) in CFTR(+) jejunum but had no effect on J(ms)(NHE) across CFTR(-) jejunum. Cell volume indices indicated an approximately 30% volume reduction of villus epithelial cells in CFTR(+) jejunum but no changes in CFTR(-) epithelium after intracellular cyclic adenosine monophosphate stimulation. In contrast, cell shrinkage induced by hypertonic medium inhibited J(ms)(NHE) in both CFTR(+) and CFTR(-) mice. Bumetanide treatment to inhibit Cl(-) secretion by blockade of the Na(+)/K(+)/2Cl(-) co-transporter, NKCC1, of stimulated CFTR(+) jejunum prevented maximal volume reduction of villus epithelium and recovered approximately 40% of J(ms)(NHE). Likewise, J(ms)(NHE) and cell volume were unaffected by intracellular cyclic adenosine monophosphate stimulation in NKCC1(-) jejuna.
These findings show a previously unrecognized role of functional CFTR expressed in villus epithelium: regulation of Na(+)/H(+) exchanger 3-mediated Na(+) absorption by alteration of epithelial cell volume.
与正常受试者的小肠不同,囊性纤维化患者和囊性纤维化跨膜传导调节蛋白缺失(CFTR(-))小鼠的小肠上皮细胞在受到细胞内环磷酸腺苷刺激时,不会抑制电中性氯化钠吸收。由于CFTR介导的阴离子分泌与隐窝细胞体积变化有关,我们推测绒毛上皮细胞中CFTR介导的细胞体积减小是细胞内环磷酸腺苷抑制近端小肠钠/氢交换体(主要是钠/氢交换体3)活性所必需的。
将CFTR(+)、CFTR(-)、基底外侧膜钠/钾/2氯共转运蛋白NKCC1(+)和NKCC1(-)小鼠空肠的跨上皮(22)钠通量与绒毛中部区域上皮细胞体积变化进行关联分析。
细胞内环磷酸腺苷刺激导致CFTR(+)空肠中钠/氢交换体介导的钠吸收(J(ms)(NHE))停止,但对CFTR(-)空肠的J(ms)(NHE)没有影响。细胞体积指数显示,CFTR(+)空肠中绒毛上皮细胞体积减少约30%,而细胞内环磷酸腺苷刺激后CFTR(-)上皮细胞体积无变化。相反,高渗培养基诱导的细胞收缩在CFTR(+)和CFTR(-)小鼠中均抑制J(ms)(NHE)。布美他尼治疗通过阻断受刺激的CFTR(+)空肠的钠/钾/2氯共转运蛋白NKCC1来抑制氯分泌,可防止绒毛上皮细胞最大程度的体积减小,并恢复约40%的J(ms)(NHE)。同样,NKCC1(-)空肠中细胞内环磷酸腺苷刺激对J(ms)(NHE)和细胞体积无影响。
这些发现表明绒毛上皮细胞中表达的功能性CFTR具有先前未被认识到的作用:通过改变上皮细胞体积来调节钠/氢交换体3介导的钠吸收。