首页> 美国卫生研究院文献>Biology of Reproduction >Segmental Expression of the Bradykinin Type 2 Receptor in Rat Efferent Ducts and Epididymis and Its Role in the Regulation of Aquaporin 9
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Segmental Expression of the Bradykinin Type 2 Receptor in Rat Efferent Ducts and Epididymis and Its Role in the Regulation of Aquaporin 9

机译:2型缓激肽受体在大鼠出气管和附睾中的节段表达及其在水通道蛋白9调控中的作用

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摘要

Water and solute transport in the efferent ducts and epididymis are important for the establishment of the appropriate luminal environment for sperm maturation and storage. Aquaporin 9 (AQP9) is the main water channel in the epididymis, but its regulation is still poorly understood. Components of the kinin-kallikrein system (KKS), leading to the production of bradykinin (BK), are highly expressed in the lumen of the male reproductive tract. We report here that the epididymal luminal fluid contains a significant amount of BK (2 nM). RT-PCR performed on epididymal epithelial cells isolated by laser capture microdissection (LCM) showed abundant BK type 2 receptor (Bdkrb2) mRNA expression but no type 1 receptor (Bdkrb1). Double-immunofluorescence staining for BDKRB2 and the anion exchanger AE2 (a marker of efferent duct ciliated cells) or the V-ATPase E subunit, official symbol ATP6V1E1 (a marker of epididymal clear cells), showed that BDKRB2 is expressed in the apical pole of nonciliated cells (efferent ducts) and principal cells (epididymis). Triple labeling for BDKRB2, AQP9, and ATP6V1E1 showed that BDKRB2 and AQP9 colocalize in the apical stereocilia of principal cells in the cauda epididymidis. While uniform Bdkrb2 mRNA expression was detected in the efferent ducts and along the epididymal tubule, marked variations were detected at the protein level. BDKRB2 was highest in the efferent ducts and cauda epididymidis, intermediate in the distal initial segment, moderate in the corpus, and undetectable in the proximal initial segment and the caput. Functional assays on tubules isolated from the distal initial segments showed that BK significantly increased AQP9-dependent glycerol apical membrane permeability. This effect was inhibited by BAPTA-AM, demonstrating the participation of calcium in this process. This study, therefore, identifies BK as an important regulator of AQP9.
机译:传出的导管和附睾中的水和溶质的运输对于建立合适的精子成熟和储存的腔环境很重要。水通道蛋白9(AQP9)是附睾中的主要水通道,但对其调节的了解仍很少。激肽激肽释放酶系统(KKS)的成分,导致缓激肽(BK)的产生,在男性生殖道管腔中高度表达。我们在这里报告,附睾腔液包含大量的BK(2 nM)。通过激光捕获显微切割术(LCM)分离的附睾上皮细胞进行的RT-PCR显示丰富的BK 2型受体(Bdkrb2)mRNA表达,但没有1型受体(Bdkrb1)。对BDKRB2和阴离子交换体AE2(传出导管纤毛细胞的标志物)或V-ATPase E亚基(官方符号ATP6V1E1(附睾透明细胞的标志物))进行双重免疫荧光染色,表明BDKRB2在BDKRB2的根尖表达非纤毛细胞(出气管)和原代细胞(附睾)。 BDKRB2,AQP9和ATP6V1E1的三重标记显示BDKRB2和AQP9共同位于附睾马尾神经元的主细胞的根尖纤毛中。虽然在传出的导管和附睾小管中检测到均匀的Bdkrb2 mRNA表达,但在蛋白质水平检测到明显的变化。 BDKRB2在传出的导管和附睾马尾肌中最高,在远端初始节段中间,在the体中等,在近端起始节段和帽状细胞中未检测到。从远端初始节段分离出的肾小管的功能分析表明,BK显着增加了AQP9依赖性甘油顶膜通透性。 BAPTA-AM抑制了这种作用,表明钙参与了该过程。因此,这项研究确定BK是AQP9的重要调节因子。

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