首页> 外文期刊>Clinical Genetics: An International Journal of Genetics in Medicine >16p13.11 microdeletion uncovers loss-of-function of a MYH11 missense variant in a patient with megacystis-microcolon-intestinal-hypoperistalsis syndrome
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16p13.11 microdeletion uncovers loss-of-function of a MYH11 missense variant in a patient with megacystis-microcolon-intestinal-hypoperistalsis syndrome

机译:16P13.11微缺失揭示了梅格西斯斯 - 微菌 - 肠 - 嗜血体综合征患者患者患者MYH11密码变异的功能丧失

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摘要

Megacystis-microcolon-intestinal hypoperistalsis syndrome (MMIHS), a rare condition that affects smooth muscle cells, is caused by biallelic null alleles in MYH11. We report on a girl with MMIHS in addition to growth hormone deficiency, central hypothyroidism and a tonically dilated pupil with accommodation deficit. Sanger sequencing and arrayCGH uncovered the novel heterozygous missense variant c.379C>T in MYH11 and a heterozygous 1.3 Mb deletion in 16q13.11 encompassing MYH11, respectively. Her mother carries the deletion, whereas her father is heterozygous for the c.379C>T p.(Pro127Ser) change. Proline 127 is crucial for the formation of the Adenosine triphosphate binding pocket of the MYH11 motor domain and molecular modeling indicated that p.Pro127Ser alters nucleotide binding properties. Thus, the unusual and complex clinical presentation of the patient results from compound heterozygosity for a 16p13.11 microdeletion including the entire MYH11 gene and a loss-of-function missense variant on the remaining MYH11 allele. In conclusion, we recommend genetic testing both for MYH11 sequence alterations and copy number imbalances in individuals with MMIHS and smooth muscle cell-associated abnormalities in additional organs, that is, multisystemic smooth muscle dysfunction.
机译:Megacystis-microcolon-intestinal indoperistalsis综合征(mmihs),一种影响平滑肌细胞的罕见条件,是由Myh11中的双曲线无效等位基因引起的。除了生长激素缺乏,中央甲状腺功能亢进,中央甲状腺功能亢进和带住宿赤字的清凉瞳孔之外,我们还报告了MMIHS的女孩。 Sanger测序和Arrrycgh在MyH11中发现了新的杂合物畸形变异C.379C> T,杂合1.3 MB缺失分别包含MYH11。她的母亲缺失,而她的父亲是C.379C> T p的杂合。(Pro127ser)改变。脯氨酸127对于形成MyH11电机结构域的三磷酸腺苷结合袋和分子建模表明P.Pro127ser改变了核苷酸结合特性。因此,患者的异常和复杂的临床介绍由复合杂合子产生16p13.11微筛选,包括整个MYH11基因和剩余的MYH11等位基因上的功能丧失的畸形变种。总之,我们建议在含有MMIHS和额外的器官中具有MMIH和平滑肌肉细胞相关异常的个体中的MyH11序列改变和复制数不平衡的遗传测试,即多系统平滑肌功能障碍。

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