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人肾中低分子量激肽原和缓激肽B2受体mRNA的细胞定位

Cellular localization of low-molecular-weight kininogen and bradykinin B2 receptor mRNAs in human kidney.

作者信息

Song Q, Wang D Z, Harley R A, Chao L, Chao J

机构信息

Department of Biochemistry and Molecular Biology, Medical University of South Carolina, Charleston 29425, USA.

出版信息

Am J Physiol. 1996 Jun;270(6 Pt 2):F919-26. doi: 10.1152/ajprenal.1996.270.6.F919.

Abstract

Kininogen is the precursor of the kinin peptide, which binds to kinin receptors and mediates a broad spectrum of physiological effects. To understand the function of kinin in the kidney, we have identified the cellular localization of the human low-molecular-weight (LMW) kininogen and bradykinin B2 receptor mRNAs in the human kidney by in situ hybridization histochemistry. Kininogen mRNA was found in the juxtaglomerular cells, mesangial areas, epithelium of parietal and visceral (podocytes) layers of Bowman's capsule, proximal and distal tubules, thin and thick segments of Henle's loop, collecting ducts, and the endothelial cells of the blood vessels. B2 receptor mRNA was colocalized with kininogen mRNA in the kidney except the podocytes. The most intense signals were observed in the distal tubules and collecting ducts for both kininogen and B2 receptor mRNAs. No signals were observed in the interstitial cells and macula densa. Control sections did not stain with either the kininogen or B2 receptor sense riboprobe. A Northern blot showed that the expression of LMW kininogen is in the liver and the kidney. Reverse transcription-polymerase chain reaction Southern blot showed expression of B2 receptor mRNA in the endothelial cells, renal proximal tubular cells, and kidney. Our results show the sites of action of kinin in the human kidney and provide further insight into the physiological role of the kallikrein-kinin system on renal function.

摘要

激肽原是激肽肽的前体,激肽肽与激肽受体结合并介导广泛的生理效应。为了解激肽在肾脏中的功能,我们通过原位杂交组织化学确定了人低分子量(LMW)激肽原和缓激肽B2受体mRNA在人肾脏中的细胞定位。在肾小球旁细胞、系膜区、鲍曼囊壁层和脏层(足细胞)上皮、近端和远端小管、髓袢细段和粗段、集合管以及血管内皮细胞中发现了激肽原mRNA。除足细胞外,B2受体mRNA在肾脏中与激肽原mRNA共定位。在远端小管和集合管中观察到激肽原和B2受体mRNA的信号最强。在间质细胞和致密斑中未观察到信号。对照切片用激肽原或B2受体正义核糖探针均未染色。Northern印迹显示LMW激肽原在肝脏和肾脏中表达。逆转录-聚合酶链反应Southern印迹显示B2受体mRNA在内皮细胞、肾近端小管细胞和肾脏中表达。我们的结果显示了激肽在人肾脏中的作用部位,并进一步深入了解了激肽释放酶-激肽系统对肾功能的生理作用。

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