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水通道蛋白-1在人肾中的表达

Aquaporin-1 water channel expression in human kidney.

作者信息

Maunsbach A B, Marples D, Chin E, Ning G, Bondy C, Agre P, Nielsen S

机构信息

Department of Cell Biology, University of Aarhus, Denmark.

出版信息

J Am Soc Nephrol. 1997 Jan;8(1):1-14. doi: 10.1681/ASN.V811.

Abstract

The pattern of aquaporin-1 water channel protein (AQP1) expression in the human kidney was analyzed by immunocytochemistry using semi-thin and optimized high-resolution immunoelectron microscopy based on freeze-substituted and Lowicryl HM20 embedded tissue. In addition, in situ hybridization was used to determine AQP1 mRNA distribution. Immunoblots revealed a 28-kd band and a 35- to 45-kd band corresponding to unglycosylated and glycosylated AQP1. Glomerular capillary endothelium exhibited extensive AQP1 labeling, whereas glomerular podocytes and Bowman's capsule epithelium were unlabeled. AQP1 was localized in the proximal tubule, including the neck region directly connected to the glomerulus. However, there was a marked difference in the level of expression between cross-sections of the convoluted part and the proximal straight tubules, the latter displaying the most intense labeling. AQP1 labeling continued uninterrupted from the proximal straight tubule into descending thin limbs in outer medulla. Abrupt transitions from heavily labeled to unlabeled segments of thin limbs were observed, primarily in the inner medulla. This may represent the transition from the water-permeable thin descending limb to the water-impermeable thin ascending limb. In addition, heavy labeling of fenestrated endothelium was also observed in peritubular capillaries in cortex, outer medulla, and inner medulla. Immunolabeling controls were negative. In situ hybridization documented a marked difference in AQP1 mRNA levels within the proximal tubule, with the greatest AQP1 mRNA expression in straight proximal tubules. Glomeruli also showed marked signals, and descending thin limbs exhibited extensive expression in exact concordance with the immunocytochemical results. It was concluded that: (1) AQP1 is present in all proximal tubule segments, including segment 1 and the neck region, but there is a pronounced difference in expression levels with respect to both protein and mRNA levels; (2) AQP1 labeling is observed in the endothelium of fenestrated peritubular capillaries, as well as fenestrated glomerular capillaries; (3) AQP1 labeling continues directly from proximal tubules to descending thin limbs; and (4) abrupt transitions from labeled to unlabeled thin limb epithelium are noted.

摘要

利用基于冷冻替代和Lowicryl HM20包埋组织的半薄及优化的高分辨率免疫电子显微镜免疫细胞化学方法,分析了水通道蛋白-1(AQP1)在人肾中的表达模式。此外,采用原位杂交法确定AQP1 mRNA的分布。免疫印迹显示一条28-kd条带和一条35至45-kd条带,分别对应未糖基化和糖基化的AQP1。肾小球毛细血管内皮呈现广泛的AQP1标记,而肾小球足细胞和鲍曼囊上皮未被标记。AQP1定位于近端小管,包括直接与肾小球相连的颈部区域。然而,在近曲小管和近端直小管的横断面之间,表达水平存在显著差异,后者显示出最强的标记。AQP1标记从近端直小管持续不间断地延伸至外髓质的降支细段。在细段中观察到从标记强烈的部分到未标记部分的突然转变,主要在内髓质。这可能代表从水通透的降支细段到水不通透的升支细段的转变。此外,在皮质、外髓质和内髓质的肾小管周围有孔内皮中也观察到强烈标记。免疫标记对照为阴性。原位杂交证明近端小管内AQP1 mRNA水平存在显著差异,近端直小管中AQP1 mRNA表达最高。肾小球也显示出明显的信号,降支细段呈现广泛表达,与免疫细胞化学结果完全一致。得出以下结论:(1)AQP1存在于所有近端小管节段,包括节段1和颈部区域,但在蛋白质和mRNA水平上表达水平存在明显差异;(2)在有孔的肾小管周围毛细血管内皮以及有孔的肾小球毛细血管中观察到AQP1标记;(3)AQP1标记从近端小管直接延续至降支细段;(4)注意到细段上皮从标记到未标记的突然转变。

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