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维甲酸在腭形成过程中抑制组蛋白甲基转移酶Whsc1。

Retinoic acid inhibits histone methyltransferase Whsc1 during palatogenesis.

作者信息

Liu Shiying, Higashihori Norihisa, Yahiro Kohei, Moriyama Keiji

机构信息

Maxillofacial Orthognathics, Graduate School of Medical and Dental Sciences, Tokyo Medical and Dental University (TMDU), 1-5-45 Yushima, Bunkyo-ku, Tokyo 113-8510, Japan.

Maxillofacial Orthognathics, Graduate School of Medical and Dental Sciences, Tokyo Medical and Dental University (TMDU), 1-5-45 Yushima, Bunkyo-ku, Tokyo 113-8510, Japan.

出版信息

Biochem Biophys Res Commun. 2015 Mar 13;458(3):525-530. doi: 10.1016/j.bbrc.2015.01.148. Epub 2015 Feb 10.


DOI:10.1016/j.bbrc.2015.01.148
PMID:25677622
Abstract

Cleft lip with or without palate (CL/P) is a common congenital anomaly in humans and is thought to be caused by genetic and environmental factors. However, the epigenetic mechanisms underlying orofacial clefts are not fully understood. Here, we investigate how the overdose of retinoic acid (RA), which can induce cleft palate in mice and humans, regulates histone methyltransferase, Wolf-Hirschhorn syndrome candidate 1 (WHSC1) during palatal development in mice. We treated mouse embryonic fibroblasts (MEFs) with 1 μM all-trans RA and discovered that the global level of H3K36me3 was downregulated and that expression of the H3K36 methyltransferase gene, Whsc1, was reduced. The expression level of WHSC1 in embryonic palatal shelves was reduced during palatogenesis, following maternal administration of 100 mg/kg body weight of RA by gastric intubation. Furthermore, the expression of WHSC1 in palatal shelves was observed in epithelial and mesenchymal cells at all stages, suggesting an important role for palatal development. Our results suggest that the pathogenesis of cleft palate observed after excessive RA exposure is likely to be associated with a reduction in the histone methyltransferase, WHSC1.

摘要

唇裂伴或不伴腭裂(CL/P)是人类常见的先天性畸形,被认为是由遗传和环境因素引起的。然而,口腔颌面部裂隙潜在的表观遗传机制尚未完全了解。在此,我们研究过量视黄酸(RA)如何在小鼠腭部发育过程中调节组蛋白甲基转移酶——沃尔夫-赫希霍恩综合征候选基因1(WHSC1),RA可在小鼠和人类中诱发腭裂。我们用1μM全反式视黄酸处理小鼠胚胎成纤维细胞(MEF),发现H3K36me3的整体水平下调,并且H3K36甲基转移酶基因Whsc1的表达降低。通过胃插管给母体注射100mg/kg体重的RA后,胚胎腭突在腭形成过程中WHSC1的表达水平降低。此外,在腭突发育的各个阶段,上皮细胞和间充质细胞中均观察到WHSC1的表达,表明其在腭部发育中起重要作用。我们的结果表明,过量暴露于RA后观察到的腭裂发病机制可能与组蛋白甲基转移酶WHSC1的减少有关。

相似文献

[1]
Retinoic acid inhibits histone methyltransferase Whsc1 during palatogenesis.

Biochem Biophys Res Commun. 2015-3-13

[2]
RNA-seq analysis of palatal transcriptome changes in all-trans retinoic acid-induced cleft palate of mice.

Environ Toxicol Pharmacol. 2020-11

[3]
PDGF-C controls proliferation and is down-regulated by retinoic acid in mouse embryonic palatal mesenchymal cells.

Birth Defects Res B Dev Reprod Toxicol. 2006-10

[4]
Involvement of apoptotic cell death and cell cycle perturbation in retinoic acid-induced cleft palate in mice.

Toxicol Appl Pharmacol. 2007-5-15

[5]
Correlation between HDAC4 enhancer DNA methylation and mRNA expression during palatal fusion induced by all-trans retinoic acid.

J Cell Biochem. 2018-8-29

[6]
Retinoic acid-induced alterations in the expression of growth factors in embryonic mouse palatal shelves.

Teratology. 1990-12

[7]
[Study on etiology of retinoic acid-induced cleft palate in mouse].

Zhonghua Kou Qiang Yi Xue Za Zhi. 2003-5

[8]
Role of apoptosis in retinoic acid-induced cleft palate.

J Craniofac Surg. 2011-9

[9]
Identification and characterization of a novel gene, Mcpr1, and its possible function in the proliferation of embryonic palatal mesenchymal cells.

J Biol Chem. 2006-11-10

[10]
Retinoic acid alters epithelial differentiation during palatogenesis.

J Craniofac Genet Dev Biol. 1991

引用本文的文献

[1]
Molecular Regulation of Palatogenesis and Clefting: An Integrative Analysis of Genetic, Epigenetic Networks, and Environmental Interactions.

Int J Mol Sci. 2025-2-6

[2]
Epigenetic regulation of craniofacial development and disease.

Birth Defects Res. 2024-1

[3]
Gene-Environment Interplay and MicroRNAs in Cleft Lip and Cleft Palate.

Oral Sci Int. 2021-1

[4]
Alterations in DNA Methylation in Orofacial Clefts.

Int J Mol Sci. 2022-10-22

[5]
Role of epigenetics and miRNAs in orofacial clefts.

Birth Defects Res. 2020-11

[6]
Genetic variants in S-adenosyl-methionine synthesis pathway and nonsyndromic cleft lip with or without cleft palate in Chile.

Pediatr Res. 2021-3

[7]
The Many Faces of : as a Model System to Study Wolf-Hirschhorn Syndrome.

Front Physiol. 2019-6-26

[8]
Systematic analysis of copy number variants of a large cohort of orofacial cleft patients identifies candidate genes for orofacial clefts.

Hum Genet. 2016-1

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