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造血微环境表达的透明质酸对于骨髓造血是必需的。

Hyaluronan expressed by the hematopoietic microenvironment is required for bone marrow hematopoiesis.

机构信息

Torrey Pines Institute for Molecular Studies, San Diego, California 92121, USA.

出版信息

J Biol Chem. 2012 Jul 20;287(30):25419-33. doi: 10.1074/jbc.M112.376699. Epub 2012 May 31.

Abstract

The contribution of hyaluronan (HA) to the regulatory network of the hematopoietic microenvironment was studied using knock-out mice of three hyaluronan synthase genes (Has1, Has2, and Has3). The number of hematopoietic progenitors was decreased in bone marrow and increased in extramedullary sites of Prx1-Cre;Has2(flox/flox);Has1(-/-);Has3(-/-) triple knock-out (tKO) mice as compared with wild type (WT) and Has1(-/-);Has3(-/-) double knock-out (dKO) mice. In line with this observation, decreased hematopoietic activity was observed in long term bone marrow cultures (LTBMC) from tKO mice, whereas the formation of the adherent layer and generation of hematopoietic cells in WT and dKO cultures was not different. 4-Methylumbelliferone (4MU) was used to pharmacologically inhibit the production of HA in LTBMC. Treatment with 4MU inhibited HA synthesis, decreased expression of HAS2 and HAS3, and eliminated hematopoiesis in LTBMC, and this effect was alleviated by the addition of exogenous HA. Exogenous HA also augmented the cell motility in LTBMC, which correlated with the HA-stimulated production of chemokines and growth factors. Conditioned media from HA-induced LTBMC enhanced the chemotaxis of hematopoietic stem/progenitor cells (HSPC) in response to SDF-1. Exposure of endothelial cells to 4MU decreased their ability to support HSPC rolling and adhesion. In addition, migration of transplanted HSPC into the marrow of 4MU-pretreated mice was lower than in untreated mice. Collectively, the results suggest that HA depletion reduces the ability of the microenvironment to support HSPC, and confirm a role for HA as a necessary regulatory element in the structure of the hematopoietic microenvironment.

摘要

使用三种透明质酸合酶基因(Has1、Has2 和 Has3)敲除小鼠研究了透明质酸(HA)对造血微环境调控网络的贡献。与野生型(WT)和 Has1(-/-);Has3(-/-)双敲除(dKO)小鼠相比,Prx1-Cre;Has2(flox/flox);Has1(-/-);Has3(-/-)三重敲除(tKO)小鼠的骨髓中造血祖细胞数量减少,而在外髓部位增加。与此观察结果一致,tKO 小鼠的长期骨髓培养物(LTBMC)中观察到造血活性降低,而 WT 和 dKO 培养物中贴壁层的形成和造血细胞的生成没有差异。4-甲基伞形酮(4MU)被用于药理学抑制 LTBMC 中 HA 的产生。4MU 处理抑制了 HA 的合成,降低了 HAS2 和 HAS3 的表达,并消除了 LTBMC 中的造血作用,而外源性 HA 的添加缓解了这种作用。外源性 HA 还增强了 LTBMC 中的细胞迁移性,这与 HA 刺激产生趋化因子和生长因子有关。诱导的 LTBMC 条件培养基增强了对 SDF-1 反应的造血干/祖细胞(HSPC)的趋化性。内皮细胞暴露于 4MU 会降低其支持 HSPC 滚动和黏附的能力。此外,移植的 HSPC 向 4MU 预处理小鼠骨髓中的迁移低于未处理小鼠。总之,这些结果表明 HA 耗竭降低了微环境支持 HSPC 的能力,并证实了 HA 作为造血微环境结构中必需的调节因子的作用。

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