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Novel deletion of RPL15 identified by array-comparative genomic hybridization in Diamond-Blackfan anemia

机译:在钻石 - 黑葡萄贫血中阵列 - 比较基因组杂交中鉴定的新缺失RPL15

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摘要

Diamond-Blackfan anemia (DBA) is an inherited red blood cell aplasia that usually presents during the first year of life. The main features of the disease are normochromic and macrocytic anemia, reticulocytopenia, and nearly absent erythroid progenitors in the bone marrow. The patients also present with growth retardation and craniofacial, upper limb, heart and urinary system congenital malformations in ~30-50 % of cases. The disease has been associated with point mutations and large deletions in ten ribosomal protein (RP) genes RPS19, RPS24, RPS17, RPL35A, RPL5, RPL11, RPS7, RPS10, RPS26, and RPL26 and GATA1 in about 60-65 % of patients. Here, we report a novel large deletion in RPL15, a gene not previously implicated to be causative in DBA. Like RPL26, RPL15 presents the distinctive feature of being required both for 60S subunit formation and for efficient cleavage of the internal transcribed spacer 1. In addition, we detected five deletions in RP genes in which mutations have been previously shown to cause DBA: one each in RPS19, RPS24, and RPS26, and two in RPS17. Pre-ribosomal RNA processing was affected in cells established from the patients bearing these deletions, suggesting a possible molecular basis for their pathological effect. These data identify RPL15 as a new gene involved in DBA and further support the presence of large deletions in RP genes in DBA patients.
机译:钻石先天性纯贫血(DBA)是一种遗传性红细胞再生障碍性贫血是在生命的第一年通常的礼物。本病的主要特点是正色素性和大细胞性贫血,reticulocytopenia,并在骨髓中几乎不存在红祖。患者还可表现出生长迟缓和颅面,上肢,心脏,泌尿系统先天性畸形的病例〜30%-50%。这种疾病已在患者约60-65%的点突变和大片段缺失十核糖体蛋白(RP)基因RPS19,RPS24,RPS17,RPL35A,RPL5,RPL11,RPS7,RPS10,RPS26和RPL26和GATA1有关。在这里,我们报告中RPL15一个新的大的缺失,基因以前没有牵连到在DBA致病。像RPL26,RPL15礼物被要求无论对于60S亚基形成和所述内转录间隔区1中。另外的有效切割的显着特点,我们检测到RP的基因5点的缺失,其中突变已被先前表明原因DBA:每一个在RPS19,RPS24,RPS26和,以及两个在RPS17。前核糖体RNA加工是在从患者轴承这些缺失建立的细胞的影响,这表明它们的病理效应的可能的分子基础。这些数据确定RPL15为参与DBA和进一步支持大缺失的存在下,在RP基因DBA患者的新基因。

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  • 来源
    《Human Genetics》 |2013年第11期|共10页
  • 作者单位

    Division of Genetics and Program in Genomics Manton Center for Orphan Disease Research Boston;

    Laboratoire de Biologie Moleculaire Eucaryote Universite de Toulouse Toulouse France CNRS UMR;

    Division of Genetics and Program in Genomics Manton Center for Orphan Disease Research Boston;

    Division of Genetics and Program in Genomics Manton Center for Orphan Disease Research Boston;

    Laboratoire de Biologie Moleculaire Eucaryote Universite de Toulouse Toulouse France CNRS UMR;

    Feinstein Institute for Medical Research Manhasset NY United States Division of Hematology;

    Division of Pediatric Hematology Boston Children's Hospital Boston MA United States Harvard;

    Department of Pediatrics University of Massachusetts Medical School Worcester MA United States;

    Department of Paediatric Haematology/Oncology Medical University of Warsaw Warsaw Poland;

    Department of Paediatric Haematology/Oncology Medical University of Warsaw Warsaw Poland;

    Division of Pediatric Hematology/Oncology Stanford University School of Medicine Stanford CA;

    Feinstein Institute for Medical Research Manhasset NY United States Division of Hematology;

    Feinstein Institute for Medical Research Manhasset NY United States Division of Hematology;

    Division of Genetics and Program in Genomics Manton Center for Orphan Disease Research Boston;

    Laboratoire de Biologie Moleculaire Eucaryote Universite de Toulouse Toulouse France CNRS UMR;

    Division of Genetics and Program in Genomics Manton Center for Orphan Disease Research Boston;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 医学遗传学;
  • 关键词

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