首页> 外文期刊>The American Journal of Human Genetics >De Novo Mutations in CHD4, an ATP-Dependent Chromatin Remodeler Gene, Cause an Intellectual Disability Syndrome with Distinctive Dysmorphisms
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De Novo Mutations in CHD4, an ATP-Dependent Chromatin Remodeler Gene, Cause an Intellectual Disability Syndrome with Distinctive Dysmorphisms

机译:从头突变在CHD4,ATP依赖的染色质重塑基因中,导致智障综合征具有明显的异型性。

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Chromodomain helicase DNA-binding protein 4 (CHD4) is an ATP-dependent chromatin remodeler involved in epigenetic regulation of gene transcription, DNA repair, and cell cycle progression. Also known as Mi2 beta., CHD4 is an integral subunit of a well-characterized histone deacetylase complex. Here we report five individuals with de novo missense substitutions in CHD4 identified through whole-exome sequencing and web-based gene matching. These individuals have overlapping phenotypes including developmental delay, intellectual disability, hearing loss, macrocephaly, distinct facial dysmorphisms, palatal abnormalities, ventriculomegaly, and hypogonadism as well as additional findings such as bone fusions. The variants, c.3380G>A (p.Arg1127Gln), c.3443G>T (p.Trp1148Leu), c.3518G>T (p.Arg1173Leu), and c.3008G>A, (p.Gly1003Asp) (GenBank: NM_001273.3), affect evolutionarily highly conserved residues and are predicted to be deleterious. Previous studies in yeast showed the equivalent Arg1127 and Trp1148 residues to be crucial for SNF2 function. Furthermore, mutations in the same positions were reported in malignant tumors, and a de novo missense substitution in an equivalent arginine residue in the C-terminal helicase domain of SMARCA4 is associated with Coffin Sins syndrome. Cell-based studies of the p.Arg1127Gln and p.Arg1173Leu mutants demonstrate normal localization to the nucleus and HDAC1 interaction. Based on these findings, the mutations potentially alter the complex activity but not its formation. This report provides evidence for the role of CHD4 in human development and expands an increasingly recognized group of Mendelian disorders involving chromatin remodeling and modification.
机译:染色体域解旋酶DNA结合蛋白4(CHD4)是ATP依赖的染色质重塑剂,参与基因转录的表观遗传调控,DNA修复和细胞周期进程。 CHD4也称为Mi2 beta。,它是特征明确的组蛋白脱乙酰基酶复合物的一个不可或缺的亚基。在这里,我们报告了通过全外显子组测序和基于网络的基因匹配鉴定的CHD4中具有从头错义替换的五个个体。这些个体具有重叠的表型,包括发育迟缓,智力障碍,听力丧失,大头畸形,明显的面部畸形,pa异常,心室肥大和性腺功能减退以及其他发现,例如骨融合。变体c.3380G> A(p.Arg1127Gln),c.3443G> T(p.Trp1148Leu),c.3518G> T(p.Arg1173Leu)和c.3008G> A(p.Gly1003Asp)(GenBank :NM_001273.3),影响进化上高度保守的残基,并被认为是有害的。酵母中的先前研究表明,等效的Arg1127和Trp1148残基对SNF2功能至关重要。此外,据报道在恶性肿瘤中相同位置的突变,并且在SMARCA4的C-末端解旋酶结构域的等效精氨酸残基中从头错义取代与棺材罪综合征相关。 p.Arg1127Gln和p.Arg1173Leu突变体的基于细胞的研究表明正常定位于细胞核和HDAC1相互作用。基于这些发现,突变可能会改变复杂的活性,但不会改变其形成。该报告为CHD4在人类发展中的作用提供了证据,并扩大了越来越多的涉及染色质重塑和修饰的孟德尔疾病群。

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