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核糖体蛋白基因单倍不足的细胞中支链氨基酸转氨酶-1 转录物的翻译受到损害。

Translation of branched-chain aminotransferase-1 transcripts is impaired in cells haploinsufficient for ribosomal protein genes.

机构信息

Hubrecht Institute, Koninklijke Nederlandse Akademie van Wetenschappen and University Medical Center Utrecht, Utrecht, The Netherlands.

Molecular Cancer Research, UMC Utrecht, Utrecht, The Netherlands.

出版信息

Exp Hematol. 2014 May;42(5):394-403.e4. doi: 10.1016/j.exphem.2013.12.010. Epub 2014 Jan 23.

Abstract

Diamond-Blackfan anemia (DBA) is a bone marrow failure syndrome linked to mutations in ribosomal protein (RP) genes that result in the impaired proliferation of hematopoietic progenitor cells. The etiology of DBA is not completely understood; however, the ribosomal nature of the genes involved has led to speculation that these mutations may alter the landscape of messenger RNA (mRNA) translation. Here, we performed comparative microarray analysis of polysomal mRNA transcripts isolated from lymphoblastoid cell lines derived from DBA patients carrying various haploinsufficient mutations in either RPS19 or RPL11. Different spectrums of changes were observed depending on the mutant gene, with large differences found in RPS19 cells and very few in RPL11 cells. However, we find that the small number of altered transcripts in RPL11 overlap for the most part with those altered in RPS19 cells. We show specifically that levels of branched-chain aminotransferase-1 (BCAT1) transcripts are significantly decreased on the polysomes of both RPS19 and RPL11 cells and that translation of BCAT1 protein is especially impaired in cells with small RP gene mutations, and we provide evidence that this effect may be due in part to the unusually long 5'UTR of the BCAT1 transcript. The BCAT1 enzyme carries out the final step in the biosynthesis and the first step of degradation of the branched-chain amino acids leucine, isoleucine, and valine. Interestingly, several animal models of DBA have reported that leucine ameliorates the anemia phenotypes generated by RPS19 loss. Our study suggests that RP mutations affect the synthesis of specific proteins involved in regulating amino acid levels that are important for maintaining the normal proliferative capacity of hematopoietic cells.

摘要

Diamond-Blackfan 贫血(DBA)是一种与核糖体蛋白(RP)基因的突变相关的骨髓衰竭综合征,导致造血祖细胞增殖受损。DBA 的病因尚不完全清楚;然而,涉及的基因的核糖体性质导致人们推测这些突变可能改变信使 RNA(mRNA)翻译的景观。在这里,我们对来自携带 RPS19 或 RPL11 中各种杂合不足突变的 DBA 患者的淋巴母细胞系分离的多核糖体 mRNA 转录物进行了比较微阵列分析。根据突变基因的不同,观察到不同的变化谱,RPS19 细胞的差异较大,而 RPL11 细胞的差异很小。然而,我们发现 RPL11 中改变的少数转录物在很大程度上与 RPS19 细胞中改变的转录物重叠。我们特别表明,支链氨基酸转氨酶-1(BCAT1)转录物的水平在 RPS19 和 RPL11 细胞的多核糖体上显著降低,并且在具有小 RP 基因突变的细胞中 BCAT1 蛋白的翻译特别受损,并且我们提供证据表明这种效应可能部分归因于 BCAT1 转录物异常长的 5'UTR。BCAT1 酶在支链氨基酸亮氨酸、异亮氨酸和缬氨酸的生物合成和降解的第一步中完成最后一步。有趣的是,几种 DBA 动物模型报告说亮氨酸可改善由 RPS19 缺失引起的贫血表型。我们的研究表明,RP 突变会影响参与调节氨基酸水平的特定蛋白质的合成,这些蛋白质对维持造血细胞的正常增殖能力很重要。

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