Mo R, Kim J H, Zhang J, Chiang C, Hui C C, Kim P C
Program in Developmental Biology, University of Toronto, Toronto, Ontario, Canada.
Am J Pathol. 2001 Aug;159(2):765-74. doi: 10.1016/S0002-9440(10)61747-6.
Anorectal malformations are a common clinical problem affecting the development of the distal hindgut in infants. The spectrum of anorectal malformations ranges from the mildly stenotic anus to imperforate anus with a fistula between the urinary and intestinal tracts to the most severe form, persistent cloaca. The etiology, embryology, and pathogenesis of anorectal malformations are poorly understood and controversial. Sonic hedgehog (Shh) is an endoderm-derived signaling molecule that induces mesodermal gene expression in the chick hindgut. However, the role of Shh signaling in mammalian hindgut development is unknown. Here, we show that mutant mice with various defects in the Shh signaling pathway exhibit a spectrum of distal hindgut defects mimicking human anorectal malformations. Shh null-mutant mice display persistent cloaca. Mutant mice lacking Gli2 or Gli3, two zinc finger transcription factors involved in Shh signaling, respectively, exhibit imperforate anus with recto-urethral fistula and anal stenosis. Furthermore, persistent cloaca is also observed in Gli2(-/-);Gli3(+/-), Gli2(+/-);Gli3(-/-), and Gli2(-/-);Gli3(-/-) mice demonstrating a gene dose-dependent effect. Therefore, Shh signaling is essential for normal development of the distal hindgut in mice and mutations affecting Shh signaling produce a spectrum of anorectal malformations that may reveal new insights into their human disease equivalents.
肛门直肠畸形是一种常见的临床问题,影响婴儿远端后肠的发育。肛门直肠畸形的范围从轻度狭窄的肛门到肛门闭锁并伴有泌尿道和肠道之间的瘘管,再到最严重的形式——泄殖腔持续存在。肛门直肠畸形的病因、胚胎学和发病机制尚不清楚且存在争议。音猬因子(Shh)是一种由内胚层衍生的信号分子,可诱导鸡后肠中的中胚层基因表达。然而,Shh信号在哺乳动物后肠发育中的作用尚不清楚。在此,我们表明在Shh信号通路中存在各种缺陷的突变小鼠表现出一系列模仿人类肛门直肠畸形的远端后肠缺陷。Shh基因敲除突变小鼠表现出泄殖腔持续存在。分别缺乏参与Shh信号传导的两个锌指转录因子Gli2或Gli3的突变小鼠表现出肛门闭锁并伴有直肠尿道瘘和肛门狭窄。此外,在Gli2(-/-);Gli3(+/-)、Gli2(+/-);Gli3(-/-)和Gli2(-/-);Gli3(-/-)小鼠中也观察到泄殖腔持续存在,表明存在基因剂量依赖性效应。因此,Shh信号对于小鼠远端后肠的正常发育至关重要,影响Shh信号的突变会产生一系列肛门直肠畸形,这可能为人类等效疾病提供新的见解。