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生态位中Sfrp2的缺失会放大应激诱导的细胞反应,并损害造血干细胞池的体内再生。

Loss of Sfrp2 in the Niche Amplifies Stress-Induced Cellular Responses, and Impairs the In Vivo Regeneration of the Hematopoietic Stem Cell Pool.

作者信息

Ruf Franziska, Schreck Christina, Wagner Alina, Grziwok Sandra, Pagel Charlotta, Romero Sandra, Kieslinger Matthias, Shimono Akihiko, Peschel Christian, Götze Katharina S, Istvanffy Rouzanna, Oostendorp Robert A J

机构信息

3rd Department of Internal Medicine, Klinikum Rechts Der Isar, Technische Universität München, Munich, Germany.

Institute of Medical Genetics, Medical University of Vienna, Vienna, Austria.

出版信息

Stem Cells. 2016 Sep;34(9):2381-92. doi: 10.1002/stem.2416. Epub 2016 Jun 30.

Abstract

Sfrp2 is overexpressed in stromal cells which maintain hematopoietic stem cells (HSCs) during in vitro culture. We here showed, that coculture of hematopoetic cells with stromal cells with reduced expression of Sfrp2 increases the number lineage-negative Kit(+) Sca-1(+) (LSK) and progenitor cells in vitro. The LSK cells from these cocultures showed activation of canonical Wnt signaling, higher levels of Ki-67, BrdU incorporation, and the number of γH2A.X positive foci. Total repopulating activity of these cultures was, however, diminished, indicating loss of HSC. To extend these in vitro data, we modelled stress in vivo, i.e., by aging, or 5-FU treatment in Sfrp2(-) (/) (-) mice, or replicative stress in regeneration of HSCs in Sfrp2(-) (/) (-) recipients. In all three in vivo stress situations, we noted an increase of LSK cells, characterized by increased levels of β-catenin and cyclin D1. In the transplantation experiments, the increase in LSK cells in primary recipients was subsequently associated with a progressive loss of HSCs in serial transplantations. Similar to the in vitro coculture stress, in vivo genotoxic stress in 5-FU-treated Sfrp2(-) (/) (-) mice increased cell cycle activity of LSK cells with higher levels of BrdU incorporation, increased expression of Ki-67, and canonical Wnt signaling. Importantly, as noted in vitro, increased cycling of LSKs in vivo was accompanied by a defective γH2A.X-dependent DNA damage response and depolarized localization of acetylated H4K16. Our experiments support the view that Sfrp2 expression in the niche is required to maintain the HSC pool by limiting stress-induced DNA damage and attenuating canonical Wnt-mediated HSC activation. Stem Cells 2016;34:2381-2392.

摘要

Sfrp2在体外培养过程中维持造血干细胞(HSC)的基质细胞中过表达。我们在此表明,造血细胞与Sfrp2表达降低的基质细胞共培养可增加体外谱系阴性Kit(+) Sca-1(+)(LSK)细胞和祖细胞的数量。来自这些共培养物的LSK细胞显示出经典Wnt信号通路的激活、更高水平的Ki-67、BrdU掺入以及γH2A.X阳性灶的数量。然而,这些培养物的总重建造血活性降低,表明HSC丢失。为了扩展这些体外数据,我们在体内模拟应激,即通过衰老、在Sfrp2(-) (/) (-)小鼠中进行5-氟尿嘧啶(5-FU)处理,或在Sfrp2(-) (/) (-)受体的HSC再生中模拟复制应激。在所有这三种体内应激情况下,我们都注意到LSK细胞增加,其特征是β-连环蛋白和细胞周期蛋白D1水平升高。在移植实验中,初级受体中LSK细胞的增加随后与连续移植中HSC的逐渐丢失相关。与体外共培养应激相似,5-FU处理的Sfrp2(-) (/) (-)小鼠体内的基因毒性应激增加了LSK细胞的细胞周期活性,BrdU掺入水平更高,Ki-67表达增加,以及经典Wnt信号通路激活。重要的是,如在体外所观察到的,体内LSK细胞的增殖增加伴随着有缺陷的γH2A.X依赖性DNA损伤反应以及乙酰化H4K16的去极化定位。我们的实验支持这样一种观点,即生态位中Sfrp2的表达对于通过限制应激诱导的DNA损伤和减弱经典Wnt介导的HSC激活来维持HSC池是必需的。《干细胞》2016年;34:2381 - 2392。

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