Angelini Mara, Cannata Stefano, Mercaldo Valentina, Gibello Luisa, Santoro Claudio, Dianzani Irma, Loreni Fabrizio
Department of Biology, University 'Tor Vergata', Roma, Italy 00133.
Hum Mol Genet. 2007 Jul 15;16(14):1720-7. doi: 10.1093/hmg/ddm120. Epub 2007 May 20.
RPS19 has been identified as the first gene associated with Diamond-Blackfan anemia (DBA), a rare congenital hypoplastic anemia that includes variable physical malformations. It is mutated in approximately 25% of the patients although doubts remain as to whether DBA clinical phenotype depends on the ribosomal function of RPS19 or on an extra-ribosomal role or on both. RPS19 mRNAs with mutations that introduce premature stop codons or eliminate it are rapidly turned over by the surveillance mechanisms possibly causing a decrease in the RPS19 protein level. A decrease in RPS19 level has been shown to cause a defect in the maturation of 18S ribosomal RNA. Less clear is the effect of missense mutations in RPS19. With the aim of analyzing the functional features of mutated RPS19, we prepared cDNA constructs expressing RPS19 containing 11 missense mutations and a trinucleotide insertion found in DBA patients. After transfection, we analyzed the following properties of the mutated proteins: (i) protein stability, (ii) subcellular localization and (iii) assembly into ribosomes. Our results indicate that some RPS19 mutations alter the capacity of the protein to localize in nucleolar structure and these mutated RPS19 are very unstable. Moreover, none of the mutated RPS19 analyzed in this study, including those proteins that appear localized into the nucleolus, is able to be assembled into mature ribosome.
核糖体蛋白S19(RPS19)已被确定为与先天性纯红细胞再生障碍性贫血(DBA)相关的首个基因,DBA是一种罕见的先天性再生障碍性贫血,伴有多种身体畸形。约25%的患者存在RPS19基因突变,不过,DBA临床表型是否取决于RPS19的核糖体功能、核糖体以外的功能或两者兼而有之,仍存在疑问。带有引入过早终止密码子或消除终止密码子突变的RPS19信使核糖核酸(mRNA)会被监测机制迅速清除,这可能导致RPS19蛋白水平下降。RPS19水平下降已被证明会导致18S核糖体核糖核酸(rRNA)成熟缺陷。RPS19错义突变的影响尚不清楚。为了分析突变型RPS19的功能特征,我们构建了表达RPS19的互补脱氧核糖核酸(cDNA)构建体,其中包含在DBA患者中发现的11个错义突变和一个三核苷酸插入。转染后,我们分析了突变蛋白的以下特性:(i)蛋白质稳定性,(ii)亚细胞定位,以及(iii)组装到核糖体中的情况。我们的结果表明,一些RPS19突变改变了蛋白质定位于核仁结构的能力,并且这些突变型RPS19非常不稳定。此外,本研究中分析的所有突变型RPS19,包括那些似乎定位于核仁的蛋白质,都无法组装成成熟核糖体。