首页> 美国卫生研究院文献>American Journal of Human Genetics >De Novo Loss-of-Function Mutations in SETD5 Encoding a Methyltransferase in a 3p25 Microdeletion Syndrome Critical Region Cause Intellectual Disability
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De Novo Loss-of-Function Mutations in SETD5 Encoding a Methyltransferase in a 3p25 Microdeletion Syndrome Critical Region Cause Intellectual Disability

机译:在3p25微缺失综合征关键区域中编码甲基转移酶的SETD5中的从头功能丧失突变导致智力残疾

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摘要

To identify further Mendelian causes of intellectual disability (ID), we screened a cohort of 996 individuals with ID for variants in 565 known or candidate genes by using a targeted next-generation sequencing approach. Seven loss-of-function (LoF) mutations—four nonsense (c.1195A>T [p.Lys399], c.1333C>T [p.Arg445], c.1866C>G [p.Tyr622], and c.3001C>T [p.Arg1001]) and three frameshift (c.2177_2178del [p.Thr726Asnfs39], c.3771dup [p.Ser1258Glufs65], and c.3856del [p.Ser1286Leufs84])—were identified in SETD5, a gene predicted to encode a methyltransferase. All mutations were compatible with de novo dominant inheritance. The affected individuals had moderate to severe ID with additional variable features of brachycephaly; a prominent high forehead with synophrys or striking full and broad eyebrows; a long, thin, and tubular nose; long, narrow upslanting palpebral fissures; and large, fleshy low-set ears. Skeletal anomalies, including significant leg-length discrepancy, were a frequent finding in two individuals. Congenital heart defects, inguinal hernia, or hypospadias were also reported. Behavioral problems, including obsessive-compulsive disorder, hand flapping with ritualized behavior, and autism, were prominent features. SETD5 lies within the critical interval for 3p25 microdeletion syndrome. The individuals with SETD5 mutations showed phenotypic similarity to those previously reported with a deletion in 3p25, and thus loss of SETD5 might be sufficient to account for many of the clinical features observed in this condition. Our findings add to the growing evidence that mutations in genes encoding methyltransferases regulating histone modification are important causes of ID. This analysis provides sufficient evidence that rare de novo LoF mutations in SETD5 are a relatively frequent (0.7%) cause of ID.
机译:为了确定孟德尔的智力障碍(ID)的其他原因,我们使用靶向的下一代测序方法筛选了996名具有ID的个体,以研究565种已知或候选基因中的变异。七个功能丧失(LoF)突变-四个废话(c.1195A> T [p.Lys399 ],c.1333C> T [p.Arg445 ],c.1866C> G [p.Tyr622 ]和c.3001C> T [p.Arg1001 ])和三个移码(c.2177_2178del [p。 .Thr726Asnfs 39],c.3771dup [p.Ser1258Glufs 65]和c.3856del [p.Ser1286Leufs 84]) -在SETD5中被鉴定,SETD5是一种预测编码甲基转移酶的基因。所有突变均与从头显性遗传兼容。受影响的个体具有中度至重度ID,并具有近距性头颅的其他可变特征。突出的高额额头上有句法或打着饱满的眉毛;长而细的管状鼻子;长而狭窄的上睑裂;大而肉质的低位耳朵。在两个人中经常发现骨骼异常,包括明显的腿长差异。还报道了先天性心脏缺陷,腹股沟疝或尿道下裂。强迫症,行为习惯的拍手和自闭症等行为问题是突出特征。 SETD5位于3p25微缺失综合症的临界区间内。具有SETD5突变的个体表现出与先前报道的3p25缺失者相似的表型相似性,因此SETD5的缺失可能足以解决在这种情况下观察到的许多临床特征。我们的发现增加了越来越多的证据,表明调节组蛋白修饰的甲基转移酶编码基因的突变是ID的重要原因。该分析提供了充分的证据,表明SETD5中罕见的从头发生LoF突变是ID的相对常见原因(0.7%)。

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