Maric Christine, Casley David, Harris Peter J, Alcorn Daine
Department of Anatomy and Cell Biology, University of Melbourne, Victoria, Australia.
Department of Medicine (Austin and Repatriation Medical Centre), University of Melbourne, Victoria, Australia.
J Am Soc Nephrol. 2001 Mar;12(3):450-455. doi: 10.1681/ASN.V123450.
Angiotensin II (Ang II) AT(1A) receptors are localized to renomedullary interstitial cells (RMIC) in the inner stripe of the outer medulla but not in the inner medulla. Thus, there seems to be a correlation between decreases in AT(1A) receptor binding to RMIC and increases in interstitial osmolality, suggesting that osmolality is important in determining Ang II binding to RMIC. Cultured RMIC were incubated in media of differing osmolalities (330, 630, 930, and 1230 mOsm/kg H(2)O). (125)I-[Sar(1), Ile(8)] Ang II binding to AT(1A) receptors on RMIC grown in hyperosmolal media (930 mOsm/kg H(2)O) was reduced compared with isoosmolal (330 mOsm/kg H(2)O) media and was progressively reduced with further increases of osmolality. Similar studies were performed using bradykinin (BK) as a control peptide. Binding of the BK receptor ligand (125)I-[HPP-Hoe 140] to B(2) receptors was not affected by varying osmolality of the media. Reverse transcriptase-PCR demonstrated the presence of the mRNA expression for both AT(1A) and B(2) receptors at each osmolality. The conclusion is that osmolality modulates Ang II binding to RMIC; in these cells, this phenomenon is restricted to Ang II as BK binding is not affected. Osmolality-induced changes in Ang II binding may modulate the actions of this peptide on RMIC and provide an important mechanism by which these cells modulate renal medullary function.
血管紧张素II(Ang II)的AT(1A)受体定位于外髓质内带的肾髓质间质细胞(RMIC),而内髓质中则没有。因此,AT(1A)受体与RMIC结合的减少与间质渗透压的增加之间似乎存在相关性,这表明渗透压在决定Ang II与RMIC的结合中很重要。将培养的RMIC置于不同渗透压(330、630、930和1230 mOsm/kg H₂O)的培养基中培养。与等渗(330 mOsm/kg H₂O)培养基相比,在高渗培养基(930 mOsm/kg H₂O)中生长的RMIC上,(125)I-[Sar(1), Ile(8)] Ang II与AT(1A)受体的结合减少,并且随着渗透压的进一步升高而逐渐减少。使用缓激肽(BK)作为对照肽进行了类似的研究。BK受体配体(125)I-[HPP-Hoe 140]与B(2)受体的结合不受培养基渗透压变化的影响。逆转录聚合酶链反应表明,在每个渗透压下均存在AT(1A)和B(2)受体的mRNA表达。结论是渗透压调节Ang II与RMIC的结合;在这些细胞中,这种现象仅限于Ang II,因为BK的结合不受影响。渗透压诱导的Ang II结合变化可能调节该肽对RMIC的作用,并提供这些细胞调节肾髓质功能的重要机制。