An RPS19-edited model for Diamond-Blackfan anemia reveals TP53-dependent impairment of hematopoietic stem cell activity

被引:18
作者
Bhoopalan, Senthil Velan [1 ]
Yen, Jonathan S. [1 ]
Mayuranathan, Thiyagaraj [1 ]
Mayberry, Kalin D. [1 ]
Yao, Yu [1 ]
Osuna, Maria Angeles Lillo [1 ]
Jang, Yoonjeong [1 ]
Liyanage, Janaka S. S. [2 ]
Blanc, Lionel [3 ]
Ellis, Steven R. [4 ]
Wlodarski, Marcin W. [1 ]
Weiss, Mitchell J. [1 ]
机构
[1] St Jude Childrens Res Hosp, Dept Hematol, Memphis, TN USA
[2] St Jude Childrens Res Hosp, Dept Biostat, Memphis, TN USA
[3] Feinstein Inst Med Res, Inst Mol Med, Manhasset, NY USA
[4] Univ Louisville, Dept Biochem & Mol Genet, Louisville, KY USA
关键词
BONE-MARROW FAILURE; RIBOSOME BIOGENESIS; ERYTHROID DEVELOPMENT; TP53; MUTATIONS; P53; ACTIVATION; MOUSE MODEL; GENE; DEFECT; TRANSLATION; DISRUPTION;
D O I
10.1172/jci.insight.161810
中图分类号
R-3 [医学研究方法]; R3 [基础医学];
学科分类号
1001 ;
摘要
Diamond-Blackfan anemia (DBA) is a genetic blood disease caused by heterozygous loss-of-function mutations in ribosomal protein (RP) genes, most commonly RPS19. The signature feature of DBA is hypoplastic anemia occurring in infants, although some older patients develop multilineage cytopenias with bone marrow hypocellularity. The mechanism of anemia in DBA is not fully understood and even less is known about the pancytopenia that occurs later in life, in part because patient hematopoietic stem and progenitor cells (HSPCs) are difficult to obtain, and the current experimental models are suboptimal. We modeled DBA by editing healthy human donor CD34(+) HSPCs with CRISPR/Cas9 to create RPS19 haploinsufficiency. In vitro differentiation revealed normal myelopoiesis and impaired erythropoiesis, as observed in DBA. After transplantation into immunodeficient mice, bone marrow repopulation by RPS19(+/-) HSPCs was profoundly reduced, indicating hematopoietic stem cell (HSC) impairment. The erythroid and HSC defects resulting from RPS19 haploinsufficiency were partially corrected by transduction with an RPS19-expressing lentiviral vector or by Cas9 disruption of TP53. Our results define a tractable, biologically relevant experimental model of DBA based on genome editing of primary human HSPCs and they identify an associated HSC defect that emulates the pan-hematopoietic defect of DBA.
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页数:16
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