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Hematopoietic transcription factor mutations: important players in inherited platelet defects

机译:造血转录因子突变:遗传性血小板缺陷的重要参与者

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摘要

Transcription factors (TFs) are proteins that bind to specific DNA sequences and regulate expression of genes. The molecular and genetic mechanisms in most patients with inherited platelet defects are unknown. There is now increasing evidence that mutations in hematopoietic TFs are an important underlying cause for defects in platelet production, morphology, and function. The hematopoietic TFs implicated in patients with impaired platelet function and number include runt-related transcription factor 1, Fli-1 proto-oncogene, E-twenty-six (ETS) transcription factor (friend leukemia integration 1), GATA-binding protein 1, growth factor independent 1B transcriptional repressor, ETS variant 6, ecotropic viral integration site 1, and homeobox A11. These TFs act in a combinatorial manner to bind sequence-specific DNA within promoter regions to regulate lineage-specific gene expression, either as activators or repressors. TF mutations induce rippling downstream effects by simultaneously altering the expression of multiple genes. Mutations involving these TFs affect diverse aspects of megakaryocyte biology, and platelet production and function, culminating in thrombocytopenia and platelet dysfunction. Some are associated with predisposition to hematologic malignancies. These TF variants may occur more frequently in patients with inherited platelet defects than generally appreciated. This review focuses on alterations in hematopoietic TFs in the pathobiology of inherited platelet defects.
机译:转录因子(TFs)是与特定DNA序列结合并调节基因表达的蛋白质。大多数遗传性血小板缺损患者的分子和遗传机制尚不清楚。现在越来越多的证据表明,造血TF中的突变是导致血小板生成,形态和功能缺陷的重要根本原因。血小板功能和数量受损的患者所涉及的造血TF包括矮子相关转录因子1,Fli-1原癌基因,E-26(ETS)转录因子(朋友白血病整合1),GATA结合蛋白1,不依赖生长因子的1B转录阻遏物,ETS变体6,嗜温病毒整合位点1和同源盒A11。这些TF以组合方式起作用,以结合启动子区域内的序列特异性DNA来调节谱系特异性基因表达,作为激活剂或阻遏物。 TF突变通过同时改变多个基因的表达来诱导波纹状的下游效应。涉及这些TF的突变影响巨核细胞生物学的各个方面,以及血小板的产生和功能,最终导致血小板减少和血小板功能障碍。有些与血液系统恶性肿瘤易感性有关。与普遍认可的血小板缺陷患者相比,这些TF变异可能更常见。这篇综述的重点是遗传性血小板缺损的病理生物学中造血TF的改变。

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