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MOZ 指导颅面部发育过程中远端同源盒基因表达程序。

MOZ directs the distal-less homeobox gene expression program during craniofacial development.

机构信息

Walter and Eliza Hall Institute of Medical Research, Melbourne, Parkville, VIC 3052, Australia.

Department of Medical Biology, University of Melbourne, Parkville, VIC 3052, Australia.

出版信息

Development. 2019 Jul 24;146(14):dev175042. doi: 10.1242/dev.175042.

Abstract

Oral clefts are common birth defects. Individuals with oral clefts who have identical genetic mutations regularly present with variable penetrance and severity. Epigenetic or chromatin-mediated mechanisms are commonly invoked to explain variable penetrance. However, specific examples of these are rare. Two functional copies of the (, ) gene, encoding a MYST family lysine acetyltransferase chromatin regulator, are essential for human craniofacial development, but the molecular role of MOZ in this context is unclear. Using genetic interaction and genomic studies, we have investigated the effects of loss of MOZ on the gene expression program during mouse development. Among the more than 500 genes differentially expressed after loss of MOZ, 19 genes had previously been associated with cleft palates. These included four distal-less homeobox (DLX) transcription factor-encoding genes, , , and and DLX target genes (including , , and ). MOZ occupied the locus and was required for normal levels of histone H3 lysine 9 acetylation. MOZ affected Dlx gene expression cell-autonomously within neural crest cells. Our study identifies a specific program by which the chromatin modifier MOZ regulates craniofacial development.

摘要

口腔裂是常见的出生缺陷。具有相同基因突变的口腔裂个体通常表现出不同的外显率和严重程度。通常援引表观遗传或染色质介导的机制来解释不同的外显率。然而,这些机制的具体例子很少。编码 MYST 家族赖氨酸乙酰转移酶染色质调节剂的 (, )基因的两个功能拷贝对于人类颅面发育至关重要,但在这种情况下 MOZ 的分子作用尚不清楚。我们使用遗传相互作用和基因组研究,研究了 MOZ 缺失对小鼠发育过程中基因表达程序的影响。在 MOZ 缺失后差异表达的 500 多个基因中,有 19 个先前与腭裂有关。其中包括四个远端同源盒(DLX)转录因子编码基因 、 、 和 以及 DLX 靶基因(包括 、 、 和 )。MOZ 占据了 基因座,并且是正常水平的组蛋白 H3 赖氨酸 9 乙酰化所必需的。MOZ 自主地影响神经嵴细胞中 Dlx 基因的表达。我们的研究确定了染色质修饰物 MOZ 调节颅面发育的特定程序。

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