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TBCD双等位基因变异导致的小头畸形、难治性癫痫和发育迟缓:一种新的伴侣蛋白介导的微管病的进一步描述

Microcephaly, intractable seizures and developmental delay caused by biallelic variants in TBCD: further delineation of a new chaperone-mediated tubulinopathy.

作者信息

Pode-Shakked B, Barash H, Ziv L, Gripp K W, Flex E, Barel O, Carvalho K S, Scavina M, Chillemi G, Niceta M, Eyal E, Kol N, Ben-Zeev B, Bar-Yosef O, Marek-Yagel D, Bertini E, Duker A L, Anikster Y, Tartaglia M, Raas-Rothschild A

机构信息

The Institute for Rare Diseases, The Danek Gertner Institute of Human Genetics, Sheba Medical Center, Tel-Hashomer, Israel.

Sackler Faculty of Medicine, Tel-Aviv University, Tel-Aviv, Israel.

出版信息

Clin Genet. 2017 May;91(5):725-738. doi: 10.1111/cge.12914. Epub 2016 Dec 16.

Abstract

Microtubule dynamics play a crucial role in neuronal development and function, and several neurodevelopmental disorders have been linked to mutations in genes encoding tubulins and functionally related proteins. Most recently, variants in the tubulin cofactor D (TBCD) gene, which encodes one of the five co-chaperones required for assembly and disassembly of α/β-tubulin heterodimer, were reported to underlie a recessive neurodevelopmental/neurodegenerative disorder. We report on five patients from three unrelated families, who presented with microcephaly, intellectual disability, intractable seizures, optic nerve pallor/atrophy, and cortical atrophy with delayed myelination and thinned corpus callosum on brain imaging. Exome sequencing allowed the identification of biallelic variants in TBCD segregating with the disease in the three families. TBCD protein level was significantly reduced in cultured fibroblasts from one patient, supporting defective TBCD function as the event underlying the disorder. Such reduced expression was associated with accelerated microtubule re-polymerization. Morpholino-mediated TBCD knockdown in zebrafish recapitulated several key pathological features of the human disease, and TBCD overexpression in the same model confirmed previous studies documenting an obligate dependency on proper TBCD levels during development. Our findings confirm the link between inactivating TBCD variants and this newly described chaperone-associated tubulinopathy, and provide insights into the phenotype of this disorder.

摘要

微管动力学在神经元发育和功能中起着至关重要的作用,并且几种神经发育障碍已与编码微管蛋白和功能相关蛋白的基因突变相关联。最近,据报道,微管蛋白辅因子D(TBCD)基因的变异是一种隐性神经发育/神经退行性疾病的基础,该基因编码α/β-微管蛋白异二聚体组装和解聚所需的五种共伴侣之一。我们报告了来自三个无关家庭的五名患者,他们表现出小头畸形、智力残疾、难治性癫痫、视神经苍白/萎缩,以及脑成像显示的皮质萎缩伴髓鞘延迟形成和胼胝体变薄。外显子组测序使得在三个家庭中鉴定出与疾病共分离的TBCD双等位基因变异。一名患者的培养成纤维细胞中TBCD蛋白水平显著降低,支持TBCD功能缺陷是该疾病的潜在病因。这种表达降低与微管加速重新聚合相关。在斑马鱼中用吗啉代介导的TBCD敲低重现了人类疾病的几个关键病理特征,并且在同一模型中TBCD过表达证实了先前的研究,即发育过程中对适当的TBCD水平存在绝对依赖性。我们的发现证实了失活的TBCD变异与这种新描述的伴侣相关微管蛋白病之间的联系,并为该疾病的表型提供了见解。

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