Zhang Jing-Ying, Jia Ming, Zhao Hai-Zhao, Luo Ze-Bin, Xu Wei-Qun, Shen He-Ping, Tang Yong-Min
Division of Hematology-Oncology, Children's Hospital of Zhejiang University School of Medicine, Key Laboratory of Reproductive Genetics (Zhejiang University), Ministry of Education, Hangzhou 310003, PR China.
Division of Hematology-Oncology, Children's Hospital of Zhejiang University School of Medicine, Key Laboratory of Reproductive Genetics (Zhejiang University), Ministry of Education, Hangzhou 310003, PR China.
Blood Cells Mol Dis. 2016 Nov;62:1-5. doi: 10.1016/j.bcmd.2016.08.003. Epub 2016 Aug 31.
Diamond-Blackfan anemia (DBA) is a congenital erythroid aplasia that usually presents as macrocytic anemia during infancy. Ribosomal protein S19 (RPS19) is identified as the first gene associated with DBA. RPS19 is mutated in 25% of DBA patients, but its role in DBA pathogenesis remains to be elucidated. We have identified a novel heterozygous frameshift mutation in RPS19 gene in a DBA child presenting with profound anemia after birth. A single nucleotide heterozygous deletion (C.251delG) results in frameshift in RPS19 gene in exon 4 at codon 84 with possible premature stop codon (p.Arg84LysfsX21). The mutant allele was not detected in her parents, indicating de novo mutation. Both alleles were expressed at the same level. Using an immunofluorescence technique, the mutated-type RPS19 expressions were mostly localized to entire nuclei with little staining for nucleoli and its intracellular localization significantly differed from the wild-type RPS19, which was localized to both nuclei and nucleoli. This type of a mutation could be very helpful in further understanding the role of the RPS19 protein in DBA pathogenesis.
钻石黑范贫血(DBA)是一种先天性红系造血障碍,通常在婴儿期表现为大细胞性贫血。核糖体蛋白S19(RPS19)被确定为第一个与DBA相关的基因。25%的DBA患者存在RPS19突变,但其在DBA发病机制中的作用仍有待阐明。我们在一名出生后出现严重贫血的DBA患儿中,在RPS19基因中发现了一种新的杂合移码突变。一个单核苷酸杂合缺失(C.251delG)导致RPS19基因第4外显子第84密码子处发生移码,可能产生提前终止密码子(p.Arg84LysfsX21)。在其父母中未检测到突变等位基因,表明为新发突变。两个等位基因表达水平相同。使用免疫荧光技术,突变型RPS19的表达大多定位于整个细胞核,核仁染色较少,其细胞内定位与野生型RPS19明显不同,野生型RPS19定位于细胞核和核仁。这种类型的突变可能有助于进一步了解RPS19蛋白在DBA发病机制中的作用。