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PR 结构域包含 MDS1-EVI1 对长期造血干细胞功能至关重要。

PR-domain-containing Mds1-Evi1 is critical for long-term hematopoietic stem cell function.

机构信息

Department of Pathology and Laboratory Medicine, University of Rochester Medical Center, Rochester, NY, USA.

出版信息

Blood. 2011 Oct 6;118(14):3853-61. doi: 10.1182/blood-2011-02-334680. Epub 2011 Jun 10.

Abstract

The Mds1 and Evi1 complex locus (Mecom) gives rise to several alternative transcripts implicated in leukemogenesis. However, the contribution that Mecom-derived gene products make to normal hematopoiesis remains largely unexplored. To investigate the role of the upstream transcription start site of Mecom in adult hematopoiesis, we created a mouse model with a lacZ knock-in at this site, termed ME(m1), which eliminates Mds1-Evi1 (ME), the longer, PR-domain-containing isoform produced by the gene (also known as PRDM3). β-galactosidase-marking studies revealed that, within hematopoietic cells, ME is exclusively expressed in the stem cell compartment. ME deficiency leads to a reduction in the number of HSCs and a complete loss of long-term repopulation capacity, whereas the stem cell compartment is shifted from quiescence to active cycling. Genetic exploration of the relative roles of endogenous ME and EVI1 isoforms revealed that ME preferentially rescues long-term HSC defects. RNA-seq analysis in Lin(-)Sca-1(+)c-Kit(+) cells (LSKs) of ME(m1) documents near complete silencing of Cdkn1c, encoding negative cell-cycle regulator p57-Kip2. Reintroduction of ME into ME(m1) LSKs leads to normalization of both p57-Kip2 expression and growth control. Our results clearly demonstrate a critical role of PR-domain-containing ME in linking p57-kip2 regulation to long-term HSC function.

摘要

Mds1 和 Evi1 复合物基因座 (Mecom) 产生了几种与白血病发生相关的替代转录本。然而,Mecom 衍生的基因产物对正常造血的贡献在很大程度上仍未得到探索。为了研究 Mecom 的上游转录起始位点在成人造血中的作用,我们创建了一个在该位点带有 lacZ 基因敲入的小鼠模型,称为 ME(m1),它消除了由该基因产生的更长的 PR 结构域包含的异构体 Mds1-Evi1(ME)(也称为 PRDM3)。β-半乳糖苷酶标记研究表明,在造血细胞中,ME 仅在干细胞区室中表达。ME 缺失导致 HSCs 数量减少和长期重殖能力完全丧失,而干细胞区室从静止状态转变为活跃的循环状态。对 ME 和 EVI1 异构体的内源性相对作用的遗传探索表明,ME 优先挽救长期 HSC 缺陷。ME(m1) 的 Lin(-)Sca-1(+)c-Kit(+) 细胞(LSKs)中的 RNA-seq 分析记录了编码负细胞周期调节剂 p57-Kip2 的 Cdkn1c 的近乎完全沉默。将 ME 重新引入 ME(m1)LSKs 导致 p57-Kip2 表达和生长控制的正常化。我们的结果清楚地表明,PR 结构域包含的 ME 在将 p57-kip2 调节与长期 HSC 功能联系起来方面起着关键作用。

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