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激活 Hedgehog-GLI 信号通路导致先天性肾盂输尿管连接部梗阻。

Activated Hedgehog-GLI Signaling Causes Congenital Ureteropelvic Junction Obstruction.

机构信息

Program in Developmental and Stem Cell Biology.

Departments of Physiology.

出版信息

J Am Soc Nephrol. 2018 Feb;29(2):532-544. doi: 10.1681/ASN.2017050482. Epub 2017 Nov 6.

Abstract

Intrinsic ureteropelvic junction obstruction is the most common cause of congenital hydronephrosis, yet the underlying pathogenesis is undefined. Hedgehog proteins control morphogenesis by promoting GLI-dependent transcriptional activation and inhibiting the formation of the GLI3 transcriptional repressor. Hedgehog regulates differentiation and proliferation of ureteric smooth muscle progenitor cells during murine kidney-ureter development. Histopathologic findings of smooth muscle cell hypertrophy and stroma-like cells, consistently observed in obstructing tissue at the time of surgical correction, suggest that Hedgehog signaling is abnormally regulated during the genesis of congenital intrinsic ureteropelvic junction obstruction. Here, we demonstrate that constitutively active Hedgehog signaling in murine intermediate mesoderm-derived renal progenitors results in hydronephrosis and failure to develop a patent pelvic-ureteric junction. Tissue obstructing the ureteropelvic junction was marked as early as E13.5 by an ectopic population of cells expressing , a Hedgehog signaling target. Constitutive expression of GLI3 repressor in deficient mice rescued ectopic expression and obstructive hydronephrosis. Whole transcriptome analysis of isolated cells revealed coexpression of genes characteristic of stromal progenitor cells. Genetic lineage tracing indicated that stromal cells blocking the ureteropelvic junction were derived from intermediate mesoderm-derived renal progenitors and were distinct from the smooth muscle or epithelial lineages. Analysis of obstructive ureteric tissue resected from children with congenital intrinsic ureteropelvic junction obstruction revealed a molecular signature similar to that observed in -deficient mice. Together, these results demonstrate a Hedgehog-dependent mechanism underlying mammalian intrinsic ureteropelvic junction obstruction.

摘要

先天性肾盂积水最常见的原因是内在输尿管肾盂连接部梗阻,但潜在的发病机制尚未明确。Hedgehog 蛋白通过促进 GLI 依赖性转录激活和抑制 GLI3 转录抑制物的形成来控制形态发生。Hedgehog 在鼠肾输尿管发育过程中调节输尿管平滑肌祖细胞的分化和增殖。在手术矫正时梗阻组织中始终观察到平滑肌细胞肥大和间质样细胞,这一组织病理学发现表明 Hedgehog 信号在先天性内在输尿管肾盂连接部梗阻的发生过程中异常调节。在这里,我们证明鼠中胚层衍生的肾祖细胞中持续活跃的 Hedgehog 信号导致肾盂积水和输尿管肾盂连接部无法发育。在 E13.5 时,输尿管肾盂连接部的组织阻塞就通过表达 Hedgehog 信号靶标的异位细胞群来标记。在缺陷型小鼠中持续表达 GLI3 抑制物可挽救异位表达和梗阻性肾盂积水。对分离的细胞进行全转录组分析显示出与间质祖细胞特征性表达的基因的共表达。遗传谱系追踪表明,阻塞输尿管肾盂连接部的间质细胞来源于中胚层衍生的肾祖细胞,与平滑肌或上皮谱系不同。对先天性内在输尿管肾盂连接部梗阻患儿切除的梗阻性输尿管组织进行分析显示,其分子特征与 -缺陷型小鼠观察到的相似。总之,这些结果表明 Hedgehog 依赖的机制是哺乳动物内在输尿管肾盂连接部梗阻的基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4e55/5791051/dae90f9875e5/ASN.2017050482absf1.jpg

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