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导致 ABL1 畸形综合征的致病变体聚集在豆蔻酰结合口袋中,并增加酪氨酸激酶活性。

Pathogenic variants causing ABL1 malformation syndrome cluster in a myristoyl-binding pocket and increase tyrosine kinase activity.

机构信息

Wessex Clinical Genetics Service, University Hospital Southampton NHS Foundation Trust, Southampton, UK.

Human Development and Health, Faculty of Medicine, University of Southampton, Southampton, UK.

出版信息

Eur J Hum Genet. 2021 Apr;29(4):593-603. doi: 10.1038/s41431-020-00766-w. Epub 2020 Nov 22.

Abstract

ABL1 is a proto-oncogene encoding a nonreceptor tyrosine kinase, best known in the somatic BCR-ABL fusion gene associated with chronic myeloid leukaemia. Recently, germline missense variants in ABL1 have been found to cause an autosomal dominant developmental syndrome with congenital heart disease, skeletal malformations and characteristic facies. Here, we describe a series of six new unrelated individuals with heterozygous missense variants in ABL1 (including four novel variants) identified via whole exome sequencing. All the affected individuals in this series recapitulate the phenotype of the ABL1 developmental syndrome and additionally we affirm that hearing impairment is a common feature of the condition. Four of the variants cluster in the myristoyl-binding pocket of ABL1, a region critical for auto-inhibitory regulation of the kinase domain. Bio-informatic analysis of transcript-wide conservation and germline/somatic variation reveals that this pocket region is subject to high missense constraint and evolutionary conservation. Functional work to investigate ABL1 kinase activity in vitro by transient transfection of HEK293T cells with variant ABL1 plasmid constructs revealed increased phosphorylation of ABL1-specific substrates compared to wild-type. The increased tyrosine kinase activity was suppressed by imatinib treatment. This case series of six new patients with germline heterozygous ABL1 missense variants further delineates the phenotypic spectrum of this condition and recognises microcephaly as a common finding. Our analysis supports an ABL1 gain-of-function mechanism due to loss of auto-inhibition, and demonstrates the potential for pharmacological inhibition using imatinib.

摘要

ABL1 是一种原癌基因,编码一种非受体酪氨酸激酶,在体细胞 BCR-ABL 融合基因中与慢性髓性白血病最为相关。最近,在 ABL1 的种系错义变异中发现了一种常染色体显性发育综合征,伴有先天性心脏病、骨骼畸形和特征性面容。在这里,我们描述了通过外显子组测序发现的六个新的无关个体的 ABL1 杂合错义变异(包括四个新变异)。该系列中的所有受影响个体都再现了 ABL1 发育综合征的表型,此外,我们还证实听力损伤是该病症的一个常见特征。四个变异聚集在 ABL1 的豆蔻酰结合口袋中,该区域对于激酶结构域的自动抑制调节至关重要。对转录广泛保守性和种系/体细胞变异的生物信息学分析表明,该口袋区域受到高度错义约束和进化保守性的影响。通过瞬时转染 HEK293T 细胞用变异 ABL1 质粒构建体进行体外研究 ABL1 激酶活性的功能工作表明,与野生型相比,ABL1 特异性底物的磷酸化增加。伊马替尼治疗抑制了增加的酪氨酸激酶活性。这一系列六个新的具有种系杂合 ABL1 错义变异的患者进一步描绘了该病症的表型谱,并认识到小头症是一种常见发现。我们的分析支持由于自动抑制丧失导致的 ABL1 获得性功能机制,并证明了使用伊马替尼进行药理学抑制的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cf47/8115115/d28a4a44be6e/41431_2020_766_Fig1_HTML.jpg

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