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大鼠胰管中H⁺和HCO₃⁻转运体的膜定位

Membrane localization of H+ and HCO3- transporters in the rat pancreatic duct.

作者信息

Zhao H, Star R A, Muallem S

机构信息

Department of Physiology, University of Texas Southwestern Medical Center, Dallas 75235-9040.

出版信息

J Gen Physiol. 1994 Jul;104(1):57-85. doi: 10.1085/jgp.104.1.57.

Abstract

The pancreatic duct secretes alkaline fluid that is rich in HCO3- and poor in Cl-. The molecular mechanisms that mediate ductal secretion and are responsible for the axial gradients of Cl- and HCO3- along the ductal tree are not well understood because H+ and HCO3- transport by duct cells have not been characterized or localized. To address these questions, we microdissected the intralobular, main, and common segments of the rat pancreatic duct. H+ and HCO3- transporters were characterized and localized by following intracellular pH while perfusing the bath and the lumen of the ducts. In intralobular ducts, Na(+)-dependent and amiloride-sensitive recovery from acid load in the absence of HCO3- was used to localize a Na+/H+ exchanger to the basolateral membrane (BLM). Modification of Cl- gradients across the luminal (LM) and BLM in the presence of HCO3- showed the presence of Cl-/HCO3- exchangers on both membranes of intralobular duct cells. Measurement of the effect of Cl- on one side of the membrane on the rate and extent of pHi changes caused by removal and addition of Cl- to the opposite side suggested that both exchangers are present in the same cell. In the presence of HCO3-, intralobular duct cells used three separate mechanisms to extrude H+: (a) BLM-located Na+/H+ exchange, (b) Na(+)-independent vacuolar-type H+ pump, and (c) BLM-located, Na(+)-dependent, amiloride-insensitive, and 4',4'-diisothiocyanatostilbene-2,2'-disulfonic acid sensitive mechanism, possibly a Na(+)-dependent HCO3- transporter. The main and common segments of the duct displayed similar mechanisms and localization of H+ and HCO3- transporters to the extent studied in the present work. In addition to the transporters found in intralobular ducts, the main and common ducts showed Na+/H+ exchange activity in the LM. Three tests were used to exclude a significant luminal to basolateral Na+ leak as the cause for an apparent luminal Na+/H+ exchange in an HCO3- secreting cells: (a) addition of amiloride and removal of Na+ from the LM had a profound effect on Na+/H+ exchange activity on the BLM and vice versa; (b) inhibition of all transporters in the BLM by bathing the duct in the inert hydrocarbon Fluorinert FC-75 did not prevent cytosolic acidification caused by removal of luminal Na+; and (c) luminal Na+ did not activate the basolateral Na(+)-dependent HCO3- transporter. An Na(+)-independent, bafilomycin-sensitive H+ pumping activity was marginal in the absence of HCO3-.(ABSTRACT TRUNCATED AT 400 WORDS)

摘要

胰管分泌富含HCO3-而Cl-含量低的碱性液体。介导导管分泌并导致沿导管树的Cl-和HCO3-轴向梯度的分子机制尚未完全清楚,因为导管细胞的H+和HCO3-转运尚未得到表征或定位。为了解决这些问题,我们显微解剖了大鼠胰管的小叶内段、主段和共同段。通过在灌注浴液和导管管腔时跟踪细胞内pH值,对H+和HCO3-转运体进行了表征和定位。在小叶内导管中,在没有HCO3-的情况下,Na(+)-依赖性和amiloride敏感性的酸负荷恢复用于将Na+/H+交换体定位到基底外侧膜(BLM)。在存在HCO3-的情况下,跨管腔(LM)和BLM的Cl-梯度的改变表明小叶内导管细胞的两个膜上都存在Cl-/HCO3-交换体。测量膜一侧的Cl-对因向另一侧去除和添加Cl-而引起的pHi变化的速率和程度的影响表明,两种交换体都存在于同一细胞中。在存在HCO3-的情况下,小叶内导管细胞使用三种不同的机制来排出H+:(a)位于BLM的Na+/H+交换,(b)Na(+)-非依赖性空泡型H+泵,以及(c)位于BLM的、Na(+)-依赖性、amiloride不敏感且对4',4'-二异硫氰酸芪-2,2'-二磺酸敏感的机制,可能是一种Na(+)-依赖性HCO3-转运体。在本研究中所涉及的范围内,导管的主段和共同段显示出与H+和HCO3-转运体相似的机制和定位。除了在小叶内导管中发现的转运体之外,主导管和共同导管在LM中还显示出Na+/H+交换活性。使用了三项测试来排除显著的管腔到基底外侧的Na+泄漏是HCO3-分泌细胞中明显的管腔Na+/H+交换的原因:(a)添加amiloride并从LM中去除Na+对BLM上的Na+/H+交换活性有深远影响,反之亦然;(b)通过将导管浸泡在惰性烃氟化物FC-75中来抑制BLM中的所有转运体并不能阻止因去除管腔Na+而导致的胞质酸化;以及(c)管腔Na+不会激活基底外侧的Na(+)-依赖性HCO3-转运体。在没有HCO3-的情况下,一种Na(+)-非依赖性、巴弗洛霉素敏感的H+泵浦活性很微弱。(摘要截断于400字)

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