A Pushkin, K P Yip, I Clark, N Abuladze, T H Kwon, S Tsuruoka, G J Schwartz, S Nielsen, I Kurtz
{"title":"NBC3在兔收集管中的表达:与液泡H+- atp酶共定位。","authors":"A Pushkin, K P Yip, I Clark, N Abuladze, T H Kwon, S Tsuruoka, G J Schwartz, S Nielsen, I Kurtz","doi":"10.1152/ajprenal.1999.277.6.F974","DOIUrl":null,"url":null,"abstract":"<p><p>We have recently cloned and characterized a unique sodium bicarbonate cotransporter, NBC3, which unlike other members of the NBC family, is ethylisopropylamiloride (EIPA) inhibitable, DIDS insensitive, and electroneutral (A. Pushkin, N. Abuladze, I. Lee, D. Newman, J. Hwang, and I. Kurtz. J. Biol. Chem. 274: 16569-16575, 1999). In the present study, a specific polyclonal antipeptide COOH-terminal antibody, NBC3-C1, was generated and used to determine the pattern of NBC3 protein expression in rabbit kidney. A major band of approximately 200 kDa was detected on immunoblots of rabbit kidney. Immunocytochemistry of rabbit kidney frozen sections revealed specific staining of the apical membrane of intercalated cells in both the cortical and outer medullary collecting ducts. The pattern of NBC3 protein expression in the collecting duct was nearly identical to the same sections stained with an antibody against the vacuolar H+-ATPase 31-kDa subunit. In addition, the NBC3-C1 antibody coimmunoprecipitated the vacuolar H+-ATPase 31-kDa subunit. Functional studies in outer medullary collecting ducts (inner stripe) showed that type A intercalated cells have an apical Na+-dependent base transporter that is EIPA inhibitable and DIDS insensitive. The data suggest that NBC3 participates in H+/base transport in the collecting duct. The close association of NBC3 and the vacuolar H+-ATPase in type A intercalated cells suggests a potential structural/functional interaction between the two transporters.</p>","PeriodicalId":7590,"journal":{"name":"American Journal of Physiology","volume":"277 6","pages":"F974-81"},"PeriodicalIF":0.0000,"publicationDate":"1999-12-01","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"https://sci-hub-pdf.com/10.1152/ajprenal.1999.277.6.F974","citationCount":"51","resultStr":"{\"title\":\"NBC3 expression in rabbit collecting duct: colocalization with vacuolar H+-ATPase.\",\"authors\":\"A Pushkin, K P Yip, I Clark, N Abuladze, T H Kwon, S Tsuruoka, G J Schwartz, S Nielsen, I Kurtz\",\"doi\":\"10.1152/ajprenal.1999.277.6.F974\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<p><p>We have recently cloned and characterized a unique sodium bicarbonate cotransporter, NBC3, which unlike other members of the NBC family, is ethylisopropylamiloride (EIPA) inhibitable, DIDS insensitive, and electroneutral (A. Pushkin, N. Abuladze, I. Lee, D. Newman, J. Hwang, and I. Kurtz. J. Biol. Chem. 274: 16569-16575, 1999). In the present study, a specific polyclonal antipeptide COOH-terminal antibody, NBC3-C1, was generated and used to determine the pattern of NBC3 protein expression in rabbit kidney. A major band of approximately 200 kDa was detected on immunoblots of rabbit kidney. Immunocytochemistry of rabbit kidney frozen sections revealed specific staining of the apical membrane of intercalated cells in both the cortical and outer medullary collecting ducts. The pattern of NBC3 protein expression in the collecting duct was nearly identical to the same sections stained with an antibody against the vacuolar H+-ATPase 31-kDa subunit. In addition, the NBC3-C1 antibody coimmunoprecipitated the vacuolar H+-ATPase 31-kDa subunit. Functional studies in outer medullary collecting ducts (inner stripe) showed that type A intercalated cells have an apical Na+-dependent base transporter that is EIPA inhibitable and DIDS insensitive. The data suggest that NBC3 participates in H+/base transport in the collecting duct. 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引用次数: 51
摘要
我们最近克隆并鉴定了一种独特的碳酸氢钠共转运体NBC3,它与NBC家族的其他成员不同,具有乙基异丙基酰胺(EIPA)抑制性,DIDS不敏感性和电中性(a . Pushkin, N. Abuladze, I. Lee, D. Newman, J. Hwang和I. Kurtz)。生物。化学。274:16569-16575,1999)。本研究制备了一种特异性的多克隆抗肽cooh末端抗体NBC3- c1,用于测定兔肾中NBC3蛋白的表达模式。在兔肾免疫印迹上检测到约200 kDa的主要条带。兔肾冷冻切片免疫细胞化学染色显示,肾皮质和外髓集管内嵌层细胞的顶膜均有特异性染色。收集管中NBC3蛋白的表达模式与空泡H+-ATPase 31-kDa亚基抗体染色的相同切片几乎相同。此外,NBC3-C1抗体共免疫沉淀液泡H+- atp酶31-kDa亚基。外髓集管(内条纹)的功能研究表明,A型插层细胞有一个依赖于Na+的根尖转运蛋白,该转运蛋白对EIPA具有抑制作用,对DIDS不敏感。结果表明,NBC3参与了集管中H+/碱的输运。在A型插层细胞中,NBC3和液泡H+- atp酶的密切结合表明这两种转运蛋白之间存在潜在的结构/功能相互作用。
NBC3 expression in rabbit collecting duct: colocalization with vacuolar H+-ATPase.
We have recently cloned and characterized a unique sodium bicarbonate cotransporter, NBC3, which unlike other members of the NBC family, is ethylisopropylamiloride (EIPA) inhibitable, DIDS insensitive, and electroneutral (A. Pushkin, N. Abuladze, I. Lee, D. Newman, J. Hwang, and I. Kurtz. J. Biol. Chem. 274: 16569-16575, 1999). In the present study, a specific polyclonal antipeptide COOH-terminal antibody, NBC3-C1, was generated and used to determine the pattern of NBC3 protein expression in rabbit kidney. A major band of approximately 200 kDa was detected on immunoblots of rabbit kidney. Immunocytochemistry of rabbit kidney frozen sections revealed specific staining of the apical membrane of intercalated cells in both the cortical and outer medullary collecting ducts. The pattern of NBC3 protein expression in the collecting duct was nearly identical to the same sections stained with an antibody against the vacuolar H+-ATPase 31-kDa subunit. In addition, the NBC3-C1 antibody coimmunoprecipitated the vacuolar H+-ATPase 31-kDa subunit. Functional studies in outer medullary collecting ducts (inner stripe) showed that type A intercalated cells have an apical Na+-dependent base transporter that is EIPA inhibitable and DIDS insensitive. The data suggest that NBC3 participates in H+/base transport in the collecting duct. The close association of NBC3 and the vacuolar H+-ATPase in type A intercalated cells suggests a potential structural/functional interaction between the two transporters.