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Novel Missense Variants in ADAT3 as a Cause of Syndromic Intellectual Disability

机译:ADAT3中的新型麦克信变种作为综合征知识分子残疾的原因

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摘要

Autosomal recessive variants in the adenosine deaminase, tRNA specific 3 (ADAT3) gene cause a syndromic form of intellectual disability due to a loss of ADAT3 function. This disorder is characterized by developmental delay, intellectual disability, speech delay, abnormal brain structure, strabismus, microcephaly, and failure to thrive. A small subset of individuals with ADAT3 deficiency have other structural birth defects including atrial septal defect, patent ductus arteriosus, hypospadias, cryptorchidism, and micropenis. Here, we report a sibling pair with novel compound heterozygous missense variants that affect a conserved amino acid in the deaminase domain of ADAT3. These siblings have many of the features characteristic of this syndrome, including, intellectual disability, hypotonia, esotropia, failure to thrive, and microcephaly. Both had gastroesophageal reflux disease (GERD), feeding problems, and aspiration requiring thickening of feeds. Although they have no words, their communication abilities progressed rapidly when they began to use augmentative and alternative communication (AAC) devices. One of these siblings was born with an anterior congenital diaphragmatic hernia, which has not been reported previously in association with ADAT3 deficiency. We conclude that individuals with ADAT3 deficiency should be monitored for GERD, feeding problems, and aspiration in infancy. They may also benefit from the use of AAC devices and individualized educational programs that take into account their capacity for nonverbal language development. Additional studies in humans or animal models will be needed to determine if ADAT3 deficiency predisposes to the development of structural birth defects.
机译:腺苷脱氨酶中的常染色体隐性变体,TRNA特异性3(ADAT3.由于ADAT3功能的损失,基因导致综合征的智力残疾。这种疾病的特点是发育延迟,智力残疾,语音延迟,异常脑结构,斜视,小头畸形,并且未能茁壮成长。具有ADAT3缺陷的小细胞具有其他结构出生缺陷,包括心房隔膜缺损,专利导管术,腹水血液,密码刺激和微生物。在这里,我们报告了一种与新型化合物杂合的畸形变体的兄弟司布对,其影响Adat3的脱氨酶结构域中的保守氨基酸。这些兄弟姐妹具有这种综合征的许多特征特征,包括智力残疾,低呼吸道,宇宙症,未能茁壮成长和微头。两者都有胃食管反流疾病(GERD),喂养问题,以及需要增厚的饲料。虽然他们没有言语,但是当他们开始使用增强和替代通信(AAC)设备时,他们的沟通能力迅速发展。这些兄弟姐妹之一出生于前先天性膈疝,尚未与ADAT3缺乏相关联。我们得出结论,应监测ADAT3缺乏的个体,以便在婴儿期间监测GERD,喂养问题和愿望。他们还可能受益于使用AAC设备和个性化教育计划,以考虑到他们非语言发展能力的能力。将需要在人类或动物模型中进行额外的研究,以确定ADAT3缺陷是否易于发展结构出生缺陷。

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