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特异性蛋白 1 中的移码变异触发家族性骨髓衰竭中 Sp1 介导的转录超激活。

A frameshift variant in specificity protein 1 triggers superactivation of Sp1-mediated transcription in familial bone marrow failure.

机构信息

Centre for Genomics and Child Health, Blizard Institute, Barts and The London School of Medicine and Dentistry, Queen Mary University of London, E1 2AT London, United Kingdom;

Centre for Genomics and Child Health, Blizard Institute, Barts and The London School of Medicine and Dentistry, Queen Mary University of London, E1 2AT London, United Kingdom.

出版信息

Proc Natl Acad Sci U S A. 2020 Jul 21;117(29):17151-17155. doi: 10.1073/pnas.2002857117. Epub 2020 Jul 7.

Abstract

Inherited bone marrow failure (BMF) syndromes are a heterogeneous group of diseases characterized by defective hematopoiesis and often predisposing to myelodysplastic syndrome (MDS) and acute myelogenous leukemia. We have studied a large family consisting of several affected individuals with hematologic abnormalities, including one family member who died of acute leukemia. By whole-exome sequencing, we identified a novel frameshift variant in the ubiquitously expressed transcription factor specificity protein 1 (). This heterozygous variant (c.1995delA) truncates the canonical Sp1 molecule in the highly conserved C-terminal DNA-binding zinc finger domains. Transcriptomic analysis and gene promoter characterization in patients' blood revealed a hypermorphic effect of this Sp1 variant, triggering superactivation of Sp1-mediated transcription and driving significant up-regulation of Sp1 target genes. This familial genetic study indicates a central role for Sp1 in causing autosomal dominant transmission of BMF, thereby confirming its critical role in hematopoiesis in humans.

摘要

遗传性骨髓衰竭 (BMF) 综合征是一组异质性疾病,其特征为造血功能缺陷,常导致骨髓增生异常综合征 (MDS) 和急性髓系白血病。我们研究了一个由多个具有血液学异常的个体组成的大家庭,其中包括一名死于急性白血病的家族成员。通过全外显子组测序,我们在广泛表达的转录因子特异性蛋白 1 () 中发现了一个新的移码变异。这种杂合变异 (c.1995delA) 截断了高度保守的 C 末端 DNA 结合锌指结构域中的经典 Sp1 分子。患者血液中的转录组分析和基因启动子特征表明,这种 Sp1 变异具有超显性效应,触发 Sp1 介导的转录的超强激活,并导致 Sp1 靶基因的显著上调。这项家族遗传学研究表明 Sp1 在引起常染色体显性遗传的 BMF 中起核心作用,从而证实其在人类造血中的关键作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9da2/7382244/f52339ea4f5e/pnas.2002857117fig01.jpg

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