Murtazina Rakhilya, Kovbasnjuk Olga, Zachos Nicholas C, Li Xuhang, Chen Yueping, Hubbard Ann, Hogema Boris M, Steplock Deborah, Seidler Ursula, Hoque Kazi M, Tse Chung Ming, De Jonge Hugo R, Weinman Edward J, Donowitz M
Department of Medicine, Johns Hopkins University School of Medicine, Baltimore, Maryland 21205, USA.
J Biol Chem. 2007 Aug 24;282(34):25141-51. doi: 10.1074/jbc.M701910200. Epub 2007 Jun 19.
The multi-PDZ domain containing protein Na(+)/H(+) Exchanger Regulatory Factor 1 (NHERF1) binds to Na(+)/H(+) exchanger 3 (NHE3) and is associated with the brush border (BB) membrane of murine kidney and small intestine. Although studies in BB isolated from kidney cortex of wild type and NHERF1(-/-) mice have shown that NHERF1 is necessary for cAMP inhibition of NHE3 activity, a role of NHERF1 in NHE3 regulation in small intestine and in intact kidney has not been established. Here a method using multi-photon microscopy with the pH-sensitive dye SNARF-4F (carboxyseminaphthorhodafluors-4F) to measure BB NHE3 activity in intact murine tissue and use it to examine the role of NHERF1 in regulation of NHE3 activity. NHE3 activity in wild type and NHERF1(-/-) ileum and wild type kidney cortex were inhibited by cAMP, whereas the cAMP effect was abolished in kidney cortex of NHERF1(-/-) mice. cAMP inhibition of NHE3 activity in these two tissues is mediated by different mechanisms. In ileum, a protein kinase A (PKA)-dependent mechanism accounts for all cAMP inhibition of NHE3 activity since the PKA antagonist H-89 abolished the inhibitory effect of cAMP. In kidney, both PKA-dependent and non-PKA-dependent mechanisms were involved, with the latter reproduced by the effect on an EPAC (exchange protein directly activated by cAMP) agonist (8-(4-chlorophenylthio)-2'O-Me-cAMP). In contrast, the EPAC agonist had no effect in proximal tubules in NHERF1(-/-) mice. These data suggest that in proximal tubule, NHERF1 is required for all cAMP inhibition of NHE3, which occurs through both EPAC-dependent and PKA-dependent mechanisms; in contrast, cAMP inhibits ileal NHE3 only by a PKA-dependent pathway, which is independent of NHERF1 and EPAC.
含有多个PDZ结构域的蛋白钠氢交换调节因子1(NHERF1)与钠氢交换体3(NHE3)结合,并与小鼠肾脏和小肠的刷状缘(BB)膜相关。尽管对从野生型和NHERF1基因敲除小鼠肾皮质分离的BB的研究表明,NHERF1是cAMP抑制NHE3活性所必需的,但NHERF1在小肠和完整肾脏中对NHE3调节的作用尚未明确。本文介绍一种使用多光子显微镜和pH敏感染料SNARF-4F(羧基半萘罗丹明-4F)来测量完整小鼠组织中BB的NHE3活性,并用于研究NHERF1在NHE3活性调节中作用的方法。野生型和NHERF1基因敲除回肠以及野生型肾皮质中的NHE3活性受到cAMP抑制,而在NHERF1基因敲除小鼠的肾皮质中cAMP的作用消失。这两个组织中cAMP对NHE3活性的抑制是由不同机制介导的。在回肠中,蛋白激酶A(PKA)依赖性机制解释了cAMP对NHE3活性的所有抑制作用,因为PKA拮抗剂H-89消除了cAMP的抑制作用。在肾脏中,PKA依赖性和非PKA依赖性机制均参与其中,后者可通过对一种EPAC(直接由cAMP激活的交换蛋白)激动剂(8-(4-氯苯硫基)-2'-O-甲基-cAMP)的作用重现。相反,EPAC激动剂对NHERF1基因敲除小鼠的近端小管没有影响。这些数据表明,在近端小管中,NHERF1是cAMP对NHE3所有抑制作用所必需的,其通过EPAC依赖性和PKA依赖性机制发生;相比之下,cAMP仅通过PKA依赖性途径抑制回肠NHE3,该途径独立于NHERF1和EPAC。