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针对钻石黑范贫血病基因座RPS19的靶向重测序及分析。

Targeted resequencing and analysis of the Diamond-Blackfan anemia disease locus RPS19.

作者信息

Martinez Barrio Alvaro, Eriksson Oskar, Badhai Jitendra, Fröjmark Anne-Sophie, Bongcam-Rudloff Erik, Dahl Niklas, Schuster Jens

机构信息

The Linnaeus Centre for Bioinformatics Uppsala University/Swedish University of Agricultural Sciences, Uppsala University, Uppsala, Sweden.

出版信息

PLoS One. 2009 Jul 9;4(7):e6172. doi: 10.1371/journal.pone.0006172.

Abstract

BACKGROUND

The Ribosomal protein S19 gene locus (RPS19) has been linked to two kinds of red cell aplasia, Diamond-Blackfan Anemia (DBA) and Transient Erythroblastopenia in Childhood (TEC). Mutations in RPS19 coding sequences have been found in 25% of DBA patients, but not in TEC patients. It has been suggested that non-coding RPS19 sequence variants contribute to the considerable clinical variability in red cell aplasia. We therefore aimed at identifying non-coding variations associated with DBA or TEC phenotypes.

METHODOLOGY/PRINCIPAL FINDINGS: We targeted a region of 19'980 bp encompassing the RPS19 gene in a cohort of 89 DBA and TEC patients for resequencing. We provide here a catalog of the considerable, previously unrecognized degree of variation in this region. We identified 73 variations (65 SNPs, 8 indels) that all are located outside of the RPS19 open reading frame, and of which 67.1% are classified as novel. We hypothesize that specific alleles in non-coding regions of RPS19 could alter the binding of regulatory proteins or transcription factors. Therefore, we carried out an extensive analysis to identify transcription factor binding sites (TFBS). A series of putative interaction sites coincide with detected variants. Sixteen of the corresponding transcription factors are of particular interest, as they are housekeeping genes or show a direct link to hematopoiesis, tumorigenesis or leukemia (e.g. GATA-1/2, PU.1, MZF-1).

CONCLUSIONS

Specific alleles at predicted TFBSs may alter the expression of RPS19, modify an important interaction between transcription factors with overlapping TFBS or remove an important stimulus for hematopoiesis. We suggest that the detected interactions are of importance for hematopoiesis and could provide new insights into individual response to treatment.

摘要

背景

核糖体蛋白S19基因位点(RPS19)与两种红细胞再生障碍有关,即先天性纯红细胞再生障碍性贫血(DBA)和儿童期短暂性红细胞生成减少症(TEC)。在25%的DBA患者中发现了RPS19编码序列的突变,但在TEC患者中未发现。有人提出,RPS19非编码序列变异导致了红细胞再生障碍中显著的临床变异性。因此,我们旨在鉴定与DBA或TEC表型相关的非编码变异。

方法/主要发现:我们对89名DBA和TEC患者的队列中包含RPS19基因的19980 bp区域进行了重测序。我们在此提供了该区域中大量先前未被认识到的变异目录。我们鉴定出73个变异(65个单核苷酸多态性,8个插入/缺失),所有这些变异都位于RPS19开放阅读框之外,其中67.1%被归类为新变异。我们假设RPS19非编码区域中的特定等位基因可能会改变调节蛋白或转录因子的结合。因此,我们进行了广泛的分析以鉴定转录因子结合位点(TFBS)。一系列推定的相互作用位点与检测到的变异一致。其中16个相应的转录因子特别令人感兴趣,因为它们是管家基因或与造血、肿瘤发生或白血病有直接联系(例如GATA-1/2、PU.1、MZF-1)。

结论

预测的TFBS处的特定等位基因可能会改变RPS19的表达,改变具有重叠TFBS的转录因子之间的重要相互作用或消除对造血的重要刺激。我们认为检测到的相互作用对造血很重要,并可为个体对治疗的反应提供新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cc55/2703794/8ca355abe7eb/pone.0006172.g001.jpg

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