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正常人类泌尿系统发育中Sonic刺猬信号通路的免疫组织化学分析

Immunohistochemical analysis of Sonic hedgehog signalling in normal human urinary tract development.

作者信息

Jenkins Dagan, Winyard Paul J D, Woolf Adrian S

机构信息

Nephro-Urology, and Clinical and Molecular Genetics Units, UCL Institute of Child Health, UK.

出版信息

J Anat. 2007 Nov;211(5):620-9. doi: 10.1111/j.1469-7580.2007.00808.x. Epub 2007 Sep 11.

Abstract

Studies of mouse mutants have demonstrated that Sonic hedgehog (SHH) signalling has a functional role in morphogenesis and differentiation at multiple sites within the forming urinary tract, and urinary tract malformations have been reported in humans with mutations that disrupt SHH signalling. However, there is only strikingly sparse and fragmentary information about the expression of SHH and associated signalling genes in normal human urinary tract development. We used immunohistochemistry to demonstrate that SHH protein was localised in distinct urinary tract epithelia in developing normal humans, in the urothelium of the nascent bladder and in kidney medullary collecting ducts. The expression patterns of the SHH-transducing proteins Patched (PTCH) and Smoothened (SMO) were consistent with long-range paracrine signalling associated with detrusor smooth muscle differentiation in the urogenital sinus. In the developing kidney, SHH and PTCH were expressed in epithelia of the collecting system between 16-26 weeks--surprisingly, SMO was not detected. Analysis of cell proliferation and Cyclin B1 immunohistochemistry at 26 weeks, as compared with a 28 week sample in which SHH expression was down-regulated, was consistent with the idea that SHH and PTCH might influence medullary collecting duct growth by regulating the subcellular localisation of Cyclin B1 independently of SMO. Collectively, these descriptive results generate new hypotheses regarding SHH signal transduction in human urinary tract development and help to explain the varied urinary tract malformation phenotypes noted in individuals with mutations in the SHH pathway.

摘要

对小鼠突变体的研究表明,音猬因子(SHH)信号在发育中的泌尿道内多个部位的形态发生和分化中发挥功能作用,并且在人类中,已报道有破坏SHH信号的突变会导致泌尿道畸形。然而,关于SHH及相关信号基因在正常人类泌尿道发育中的表达,仅有极其稀少且零碎的信息。我们运用免疫组织化学方法证明,在发育中的正常人类体内,SHH蛋白定位于不同的泌尿道上皮,新生膀胱的尿路上皮以及肾髓质集合管中。SHH转导蛋白Patched(PTCH)和Smoothened(SMO)的表达模式与泌尿生殖窦中与逼尿肌平滑肌分化相关的远距离旁分泌信号一致。在发育中的肾脏中,16至26周时,SHH和PTCH在集合系统的上皮中表达,令人惊讶的是,未检测到SMO。与SHH表达下调的28周样本相比,对26周时的细胞增殖和细胞周期蛋白B1免疫组织化学分析结果表明,SHH和PTCH可能通过独立于SMO调节细胞周期蛋白B1的亚细胞定位来影响髓质集合管的生长。总体而言,这些描述性结果就人类泌尿道发育中的SHH信号转导产生了新的假说,并有助于解释SHH通路突变个体中所观察到的各种泌尿道畸形表型。

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