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首页> 外文期刊>Blood: The Journal of the American Society of Hematology >A transgenic mouse model demonstrates a dominant negative effect of a point mutation in the RPS19 gene associated with Diamond-Blackfan anemia.
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A transgenic mouse model demonstrates a dominant negative effect of a point mutation in the RPS19 gene associated with Diamond-Blackfan anemia.

机译:转基因小鼠模型显示与Diamond-Blackfan贫血相关的RPS19基因中的点突变具有显性负作用。

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摘要

Diamond Blackfan anemia (DBA) is an inherited erythroblastopenia associated with mutations in at least 8 different ribosomal protein genes. Mutations in the gene encoding ribosomal protein S19 (RPS19) have been identified in approximately 25% of DBA families. Most of these mutations disrupt either the translation or stability of the RPS19 protein and are predicted to cause DBA by haploinsufficiency. However, approximately 30% of RPS19 mutations are missense mutations that do not alter the stability of the RPS19 protein and are hypothesized to act by a dominant negative mechanism. To formally test this hypothesis, we generated a transgenic mouse model expressing an RPS19 mutation in which an arginine residue is replaced with a tryptophan residue at codon 62 (RPS19R62W). Constitutive expression of RPS19R62W in developing mice was lethal. Conditional expression of RPS19R62W resulted in growth retardation, a mild anemia with reduced numbers of erythroid progenitors, and significant inhibition of terminal erythroid maturation, similar to DBA. RNA profiling demonstrated more than 700 dysregulated genes belonging to the same pathways that are disrupted in RNA profiles of DBA patient cells. We conclude that RPS19R62W is a dominant negative DBA mutation.
机译:钻石Blackfan贫血(DBA)是一种遗传性成红细胞减少症,与至少8个不同的核糖体蛋白基因突变相关。在大约25%的DBA家族中已鉴定出编码核糖体蛋白S19(RPS19)的基因中的突变。这些突变大多数破坏RPS19蛋白的翻译或稳定性,并被预测是由于单倍体不足而引起DBA的。但是,大约30%的RPS19突变是错义突变,不会改变RPS19蛋白的稳定性,并且被认为是通过显性负性机制起作用的。为了正式检验该假设,我们生成了一个表达RPS19突变的转基因小鼠模型,其中精氨酸残基被62位密码子的色氨酸残基替代(RPS19R62W)。 RPS19R62W在发育中的小鼠中的组成性表达具有致死性。与DBA相似,RPS19R62W的条件表达导致生长迟缓,轻度贫血和红细胞祖细胞数量减少,并显着抑制末端红细胞成熟。 RNA分析表明,有700多个基因失调,这些基因属于DBA患者细胞RNA谱中被破坏的相同途径。我们得出结论,RPS19R62W是显性负DBA突变。

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