Rahman Shamma S, Moffitt Alexandra E J, Trease Andrew J, Foster Kirk W, Storck Matthew D, Band Hamid, Boesen Erika I
Department of Cellular and Integrative Physiology, University of Nebraska Medical Center, Omaha, Nebraska, USA.
The Eppley Institute for Research in Cancer, University of Nebraska Medical Center, Omaha, Nebraska, USA.
FASEB J. 2017 Dec;31(12):5217-5233. doi: 10.1096/fj.201601182RR. Epub 2017 Aug 4.
The Eps15-homology domain-containing (EHD) protein family comprises 4 members that regulate endocytic recycling. Although the kidney expresses all 4 EHD proteins, their physiologic roles are largely unknown. This study focused on EHD4, which we found to be expressed differentially across nephron segments with the highest expression in the inner medullary collecting duct. Under baseline conditions, [EHD4-knockout (KO)] mice on a C57Bl/6 background excreted a higher volume of more dilute urine than control C57Bl/6 wild-type (WT) mice while maintaining a similar plasma osmolality. Urine excretion after an acute intraperitoneal water load was significantly increased in EHD4-KO mice compared to WT mice, and although EHD4-KO mice concentrated their urine during 24-h water restriction, urinary osmolality remained significantly lower than in WT mice, suggesting that EHD4 plays a role in renal water handling. Total aquaporin 2 (AQP2) and phospho-S256-AQP2 (pAQP2) protein expression in the inner medulla was similar in the two groups in baseline conditions. However, localization of both AQP2 and pAQP2 in the renal inner medullary principal cells appeared more dispersed, and the intensity of apical membrane staining for AQP2 was reduced significantly (by ∼20%) in EHD4-KO mice compared to WT mice in baseline conditions, suggesting an important role of EHD4 in trafficking of AQP2. Together, these data indicate that EHD4 play important roles in the regulation of water homeostasis.-Rahman, S. S., Moffitt, A. E. J., Trease, A. J., Foster, K. W., Storck, M. D., Band, H., Boesen, E. I. EHD4 is a novel regulator of urinary water homeostasis.
含Eps15同源结构域(EHD)的蛋白家族由4个调节内吞循环的成员组成。虽然肾脏表达所有4种EHD蛋白,但其生理作用在很大程度上尚不清楚。本研究聚焦于EHD4,我们发现它在肾单位各节段的表达存在差异,在内髓集合管中表达最高。在基线条件下,C57Bl/6背景的EHD4基因敲除(KO)小鼠比对照C57Bl/6野生型(WT)小鼠排出更高容量的更稀释尿液,同时维持相似的血浆渗透压。与WT小鼠相比,EHD4-KO小鼠腹腔急性水负荷后尿排泄显著增加,并且虽然EHD4-KO小鼠在24小时限水期间浓缩尿液,但其尿渗透压仍显著低于WT小鼠,提示EHD4在肾脏水代谢中起作用。两组在基线条件下内髓中总水通道蛋白2(AQP2)和磷酸化丝氨酸256-AQP2(pAQP2)蛋白表达相似。然而,在基线条件下,与WT小鼠相比,EHD4-KO小鼠肾内髓主细胞中AQP2和pAQP2的定位似乎更分散,并且AQP2顶膜染色强度显著降低(约20%),提示EHD4在AQP2转运中起重要作用。这些数据共同表明EHD4在水稳态调节中起重要作用。-拉赫曼,S.S.,莫菲特,A.E.J.,特里西,A.J.,福斯特,K.W.,斯托克,M.D.,班德,H.,博森,E.I.EHD4是尿水稳态的新型调节因子。