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钠/氢交换体缺陷型小鼠腮腺中液体分泌和氯化钠吸收存在缺陷。

Defective fluid secretion and NaCl absorption in the parotid glands of Na+/H+ exchanger-deficient mice.

作者信息

Park K, Evans R L, Watson G E, Nehrke K, Richardson L, Bell S M, Schultheis P J, Hand A R, Shull G E, Melvin J E

机构信息

Center for Oral Biology, Rochester Institute of Biomedical Sciences, and the Eastman Department of Dentistry, University of Rochester Medical Center, Rochester, New York 14642, USA.

出版信息

J Biol Chem. 2001 Jul 20;276(29):27042-50. doi: 10.1074/jbc.M102901200. Epub 2001 May 17.

Abstract

Multiple Na(+)/H(+) exchangers (NHEs) are expressed in salivary gland cells; however, their functions in the secretion of saliva by acinar cells and the subsequent modification of the ionic composition of this fluid by the ducts are unclear. Mice with targeted disruptions of the Nhe1, Nhe2, and Nhe3 genes were used to study the in vivo functions of these exchangers in parotid glands. Immunohistochemistry indicated that NHE1 was localized to the basolateral and NHE2 to apical membranes of both acinar and duct cells, whereas NHE3 was restricted to the apical region of duct cells. Na(+)/H(+) exchange was reduced more than 95% in acinar cells and greater than 80% in duct cells of NHE1-deficient mice (Nhe1(-/-)). Salivation in response to pilocarpine stimulation was reduced significantly in both Nhe1(-/-) and Nhe2(-/-) mice, particularly during prolonged stimulation, whereas the loss of NHE3 had no effect on secretion. Expression of Na(+)/K(+)/2Cl(-) cotransporter mRNA increased dramatically in Nhe1(-/-) parotid glands but not in those of Nhe2(-/-) or Nhe3(-/-) mice, suggesting that compensation occurs for the loss of NHE1. The sodium content, chloride activity and osmolality of saliva in Nhe2(-/-) or Nhe3(-/-) mice were comparable with those of wild-type mice. In contrast, Nhe1(-/-) mice displayed impaired NaCl absorption. These results suggest that in parotid duct cells apical NHE2 and NHE3 do not play a major role in Na(+) absorption. These results also demonstrate that basolateral NHE1 and apical NHE2 modulate saliva secretion in vivo, especially during sustained stimulation when secretion depends less on Na(+)/K(+)/2Cl(-) cotransporter activity.

摘要

多种钠氢交换体(NHEs)在唾液腺细胞中表达;然而,它们在腺泡细胞分泌唾液以及随后导管对该液体离子成分的修饰过程中的功能尚不清楚。利用Nhe1、Nhe2和Nhe3基因靶向破坏的小鼠来研究这些交换体在腮腺中的体内功能。免疫组织化学表明,NHE1定位于腺泡细胞和导管细胞的基底外侧膜,NHE2定位于顶端膜,而NHE3局限于导管细胞的顶端区域。在NHE1缺陷小鼠(Nhe1(-/-))的腺泡细胞中,钠氢交换减少了95%以上,在导管细胞中减少了80%以上。在Nhe1(-/-)和Nhe2(-/-)小鼠中,毛果芸香碱刺激引起的唾液分泌显著减少,尤其是在长时间刺激期间,而NHE3的缺失对分泌没有影响。钠钾2氯协同转运体mRNA的表达在Nhe1(-/-)腮腺中显著增加,但在Nhe2(-/-)或Nhe3(-/-)小鼠的腮腺中没有增加,这表明对NHE1的缺失发生了代偿。Nhe2(-/-)或Nhe3(-/-)小鼠唾液中的钠含量、氯活性和渗透压与野生型小鼠相当。相比之下,Nhe1(-/-)小鼠表现出氯化钠吸收受损。这些结果表明,在腮腺导管细胞中,顶端的NHE2和NHE3在钠吸收中不发挥主要作用。这些结果还表明,基底外侧的NHE1和顶端的NHE2在体内调节唾液分泌,特别是在持续刺激期间,此时分泌对钠钾2氯协同转运体活性的依赖性较小。

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