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Irf6在斑马鱼周皮中直接调控Klf17,在小鼠口腔上皮中直接调控Klf4,并且唇腭裂患者中存在显性负性KLF4变体。

Irf6 directly regulates Klf17 in zebrafish periderm and Klf4 in murine oral epithelium, and dominant-negative KLF4 variants are present in patients with cleft lip and palate.

作者信息

Liu Huan, Leslie Elizabeth J, Jia Zhonglin, Smith Tiffany, Eshete Mekonen, Butali Azeez, Dunnwald Martine, Murray Jeffrey, Cornell Robert A

机构信息

Department of Anatomy and Cell Biology, College of Medicine, State Key Laboratory Breeding Base of Basic Science of Stomatology (Hubei-MOST) and Key Laboratory for Oral Biomedicine of Ministry of Education, School and Hospital of Stomatology, Wuhan University, Wuhan 430079, China.

Center for Craniofacial and Dental Genetics, Department of Oral Biology, School of Dental Medicine, University of Pittsburgh, Pittsburgh, PA, USA.

出版信息

Hum Mol Genet. 2016 Feb 15;25(4):766-76. doi: 10.1093/hmg/ddv614. Epub 2015 Dec 21.

Abstract

Non-syndromic (NS) cleft lip with or without cleft palate (CL/P) is a common disorder with a strong genetic underpinning. Genome-wide association studies have detected common variants associated with this disorder, but a large portion of the genetic risk for NSCL/P is conferred by unidentified rare sequence variants. Mutations in IRF6 (Interferon Regulatory Factor 6) and GRHL3 (Grainyhead-like 3) cause Van der Woude syndrome, which includes CL/P. Both genes encode members of a regulatory network governing periderm differentiation in model organisms. Here, we report that Krüppel-like factor 17 (Klf17), like Grhl3, acts downstream of Irf6 in this network in zebrafish periderm. Although Klf17 expression is absent from mammalian oral epithelium, a close homologue, Klf4, is expressed in this tissue and is required for the differentiation of epidermis. Chromosome configuration capture and reporter assays indicated that IRF6 directly regulates an oral-epithelium enhancer of KLF4. To test whether rare missense variants of KLF4 contribute risk for NSCL/P, we sequenced KLF4 in approximately 1000 NSCL/P cases and 300 controls. By one statistical test, missense variants of KLF4 as a group were enriched in cases versus controls. Moreover, two patient-derived KLF4 variants disrupted periderm differentiation upon forced expression in zebrafish embryos, suggesting that they have dominant-negative effect. These results indicate that rare NSCL/P risk variants can be found in members of the gene regulatory network governing periderm differentiation.

摘要

非综合征性唇裂伴或不伴腭裂(CL/P)是一种常见疾病,具有很强的遗传基础。全基因组关联研究已经检测到与该疾病相关的常见变异,但NSCL/P的很大一部分遗传风险是由未识别的罕见序列变异所致。IRF6(干扰素调节因子6)和GRHL3(颗粒头样3)的突变会导致范德伍德综合征,其中包括CL/P。这两个基因都编码模型生物中控制周皮分化的调控网络的成员。在此,我们报告,在斑马鱼周皮中,Krüppel样因子17(Klf17)与Grhl3一样,在该网络中位于Irf6的下游发挥作用。尽管哺乳动物口腔上皮中不存在Klf17的表达,但一个密切的同源物Klf4在该组织中表达,并且是表皮分化所必需的。染色体构象捕获和报告基因检测表明,IRF6直接调控KLF4的一个口腔上皮增强子。为了测试KLF4的罕见错义变异是否会增加NSCL/P的风险,我们对大约1000例NSCL/P病例和300例对照进行了KLF4测序。通过一项统计检验,KLF4的错义变异作为一个整体在病例组中比对照组中更为富集。此外,两个源自患者的KLF4变异在斑马鱼胚胎中强制表达时破坏了周皮分化,这表明它们具有显性负效应。这些结果表明,在控制周皮分化的基因调控网络成员中可以发现罕见的NSCL/P风险变异。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4671/4743694/7aa94a4729b4/ddv61401.jpg

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