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纤毛病相关结构出生缺陷的自主和非细胞自主病因学。

Autonomous and non-cell autonomous etiology of ciliopathy associated structural birth defects.

作者信息

Francis Richard, San Agustin Jovenal T, Szabo Rogers Heather L, Cui Cheng, Jonassen Julie A, Eguether Thibaut, Follit John A, Lo Cecilia W, Pazour Gregory J

出版信息

bioRxiv. 2023 Jun 7:2023.06.07.544132. doi: 10.1101/2023.06.07.544132.

Abstract

Ciliopathies are associated with wide spectrum of structural birth defects (SBD), indicating important roles for cilia in development. Here we provide novel insights into the temporospatial requirement for cilia in SBDs arising from deficiency in , an intraflagellar transport protein regulating ciliogenesis. deficient mice exhibit cilia defects accompanied by wide spectrum of SBDs including macrostomia (craniofacial defects), exencephaly, body wall defects, tracheoesophageal fistula, randomized heart looping, congenital heart defects (CHD), lung hypoplasia, renal anomalies, and polydactyly. Tamoxifen inducible CAG-Cre deletion of a floxed allele between E5.5 to 9.5 revealed early requirement for in left-right heart looping regulation, mid to late requirement for cardiac outflow septation and alignment, and late requirement for craniofacial development and body wall closure. Surprisingly, CHD was not observed with four Cre drivers targeting different lineages essential for heart development, but craniofacial defects and omphalocele were observed with Wnt1-Cre targeting neural crest and Tbx18-Cre targeting epicardial lineage and rostral sclerotome through which trunk neural crest cells migrate. These findings revealed cell autonomous role of cilia in cranial/trunk neural crest mediated craniofacial and body wall closure defects, while non-cell autonomous multi-lineage interactions underlie CHD pathogenesis, revealing unexpected developmental complexity for CHD associated with ciliopathy.

摘要

纤毛病与广泛的结构出生缺陷(SBD)相关,表明纤毛在发育中起重要作用。在这里,我们对由于调节纤毛发生的鞭毛内运输蛋白缺乏而导致的SBD中纤毛的时空需求提供了新的见解。缺乏该蛋白的小鼠表现出纤毛缺陷,并伴有广泛的SBD,包括大口畸形(颅面缺陷)、无脑儿、体壁缺陷、气管食管瘘、随机心脏环化、先天性心脏病(CHD)、肺发育不全、肾脏异常和多指畸形。在E5.5至9.5之间用他莫昔芬诱导CAG-Cre缺失一个floxed等位基因,揭示了该蛋白在左右心脏环化调节中的早期需求,在心脏流出道分隔和排列中的中期至晚期需求,以及在颅面发育和体壁闭合中的晚期需求。令人惊讶的是,使用针对心脏发育必需的不同谱系的四种Cre驱动程序未观察到CHD,但使用靶向神经嵴的Wnt1-Cre和靶向心外膜谱系和头侧硬骨节(躯干神经嵴细胞通过其迁移)的Tbx18-Cre观察到颅面缺陷和脐膨出。这些发现揭示了纤毛在颅/躯干神经嵴介导的颅面和体壁闭合缺陷中的细胞自主作用,而非细胞自主的多谱系相互作用是CHD发病机制的基础,揭示了与纤毛病相关的CHD意想不到的发育复杂性。

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