纯合子常染色体隐性突变与中枢神经系统受累和曲霉病有关:一例罕见病例。

Case Reports in Genetics Pub Date : 2022-09-29 eCollection Date: 2022-01-01 DOI:10.1155/2022/4142214
Hossein Esmaeilzadeh, Rafat Noeiaghdam, Leila Johari, Seyed Ali Hosseini, Sayyed Hesamedin Nabavizadeh, Soheila Sadat Alyasin
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引用次数: 1

摘要

膜片基因具有重要的免疫和神经发育作用。它编码哺乳动物蝶状体相关双胍蛋白(mDia1),该蛋白作用于Rho gtpase的下游,促进f -肌动蛋白聚合并稳定微管。在有丝分裂过程中,该蛋白在人类神经前体细胞中表达,并显著影响纺锤体的形成和细胞分裂。在人类中,显性的功能获得型DIAPH1变异导致感音神经性耳聋和巨血小板减少症(DFNA1),而纯合型的DIAPH1缺失导致癫痫发作、皮质性失明和小头畸形综合征(SCBMS)。迄今为止,仅报告了16例SCBMS患者,其中没有一例来自伊朗。此外,纯合子膈肌缺失患者中尚未有曲霉病的报道,并且SCBMS与免疫缺陷之间的联系仍然难以捉摸。在这项研究中,我们通过报告一名伊朗男孩的临床、遗传和表型特征,进一步阐明了这一问题,该男孩有长期的复发感染史,被诊断为SCBMS和免疫缺陷(NM_005219.5 c.3145C > T;p.R1049X变异体)在曲霉病和SARS-CoV-2合并感染后出现。
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Homozygous Autosomal Recessive DIAPH1 Mutation Associated with Central Nervous System Involvement and Aspergillosis: A Rare Case.

The DIAPH1 gene fulfills critical immune and neurodevelopmental roles. It encodes the mammalian Diaphanous-related formin (mDia1) protein, which acts downstream of Rho GTPases to promote F-actin polymerization and stabilize microtubules. During mitosis, this protein is expressed in human neuronal precursor cells and considerably affects spindle formation and cell division. In humans, dominant gain-of-function DIAPH1 variants cause sensorineural deafness and macrothrombocytopenia (DFNA1), while homozygous DIAPH1 loss leads to seizures, cortical blindness, and microcephaly syndrome (SCBMS). To date, only 16 patients with SCBMS have been reported, none of whom were from Iran. Furthermore, aspergillosis is yet to be reported in patients with homozygous DIAPH1 loss, and the link between SCBMS and immunodeficiency remains elusive. In this study, we shed further light on this matter by reporting the clinical, genetic, and phenotypic characteristics of an Iranian boy with a long history of recurrent infections, diagnosed with SCBMS and immunodeficiency (NM_005219.5 c.3145C > T; p.R1049X variant) following aspergillosis and SARS-CoV-2 coinfection.

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