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一种用于研究子宫内造血缺陷的新型小鼠胎儿肝脏祖细胞前瞻性分离方法。

A novel prospective isolation of murine fetal liver progenitors to study in utero hematopoietic defects.

作者信息

Draper Julia E, Sroczynska Patrycja, Fadlullah Muhammad Z H, Patel Rahima, Newton Gillian, Breitwieser Wolfgang, Kouskoff Valerie, Lacaud Georges

机构信息

Cancer Research UK Stem Cell Biology Group, Cancer Research UK Manchester Institute, Manchester Cancer Research Centre, The University of Manchester, Manchester, United Kingdom.

Biotech Research and Innovation Centre, University of Copenhagen, Copenhagen, Denmark.

出版信息

PLoS Genet. 2018 Jan 4;14(1):e1007127. doi: 10.1371/journal.pgen.1007127. eCollection 2018 Jan.

Abstract

In recent years, highly detailed characterization of adult bone marrow (BM) myeloid progenitors has been achieved and, as a result, the impact of somatic defects on different hematopoietic lineage fate decisions can be precisely determined. Fetal liver (FL) hematopoietic progenitor cells (HPCs) are poorly characterized in comparison, potentially hindering the study of the impact of genetic alterations on midgestation hematopoiesis. Numerous disorders, for example infant acute leukemias, have in utero origins and their study would therefore benefit from the ability to isolate highly purified progenitor subsets. We previously demonstrated that a Runx1 distal promoter (P1)-GFP::proximal promoter (P2)-hCD4 dual-reporter mouse (Mus musculus) model can be used to identify adult BM progenitor subsets with distinct lineage preferences. In this study, we undertook the characterization of the expression of Runx1-P1-GFP and P2-hCD4 in FL. Expression of P2-hCD4 in the FL immunophenotypic Megakaryocyte-Erythroid Progenitor (MEP) and Common Myeloid Progenitor (CMP) compartments corresponded to increased granulocytic/monocytic/megakaryocytic and decreased erythroid specification. Moreover, Runx1-P2-hCD4 expression correlated with several endogenous cell surface markers' expression, including CD31 and CD45, providing a new strategy for prospective identification of highly purified fetal myeloid progenitors in transgenic mouse models. We utilized this methodology to compare the impact of the deletion of either total RUNX1 or RUNX1C alone and to determine the fetal HPCs lineages most substantially affected. This new prospective identification of FL progenitors therefore raises the prospect of identifying the underlying gene networks responsible with greater precision than previously possible.

摘要

近年来,已经实现了对成年骨髓(BM)髓系祖细胞的高度详细表征,因此,可以精确确定体细胞缺陷对不同造血谱系命运决定的影响。相比之下,胎儿肝脏(FL)造血祖细胞(HPC)的特征描述较少,这可能会阻碍对基因改变对妊娠中期造血影响的研究。许多疾病,例如婴儿急性白血病,都起源于子宫内,因此,能够分离高度纯化的祖细胞亚群将有助于对其进行研究。我们之前证明,Runx1远端启动子(P1)-绿色荧光蛋白::近端启动子(P2)-人CD4双报告基因小鼠(小家鼠)模型可用于识别具有不同谱系偏好的成年BM祖细胞亚群。在本研究中,我们对Runx1-P1-绿色荧光蛋白和P2-人CD4在FL中的表达进行了表征。P2-人CD4在FL免疫表型巨核细胞-红系祖细胞(MEP)和普通髓系祖细胞(CMP)区室中的表达与粒细胞/单核细胞/巨核细胞的增加和红系分化的减少相对应。此外,Runx1-P2-人CD4的表达与几种内源性细胞表面标志物的表达相关,包括CD31和CD45,为在转基因小鼠模型中前瞻性鉴定高度纯化的胎儿髓系祖细胞提供了一种新策略。我们利用这种方法比较了单独缺失总RUNX1或RUNX1C的影响,并确定了受影响最严重的胎儿HPC谱系。因此,这种对FL祖细胞的新的前瞻性鉴定提高了比以前更精确地识别潜在基因网络的可能性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9f59/5754050/0e6b9b6d4c56/pgen.1007127.g001.jpg

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