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低氧诱导血管内皮生长因子调节低氧龛中造血干细胞的功能。

Hypoxic induction of vascular endothelial growth factor regulates murine hematopoietic stem cell function in the low-oxygenic niche.

机构信息

Division of Molecular Medicine and Gene Therapy, Lund Stem Cell Center, Lund University, Lund, Sweden.

出版信息

Blood. 2011 Aug 11;118(6):1534-43. doi: 10.1182/blood-2011-01-332890. Epub 2011 Jun 13.

Abstract

Hypoxia is emerging as an important characteristic of the hematopoietic stem cell (HSC) niche, but the molecular mechanisms contributing to quiescence, self-renewal, and survival remain elusive. Vascular endothelial growth factor A (VEGFA) is a key regulator of angiogenesis and hematopoiesis. Its expression is commonly regulated by hypoxia-inducible factors (HIF) that are functionally induced in low-oxygen conditions and that activate transcription by binding to hypoxia-response elements (HRE). Vegfa is indispensable for HSC survival, mediated by a cell-intrinsic, autocrine mechanism. We hypothesized that a hypoxic HSC microenvironment is required for maintenance or up-regulation of Vegfa expression in HSCs and therefore crucial for HSC survival. We have tested this hypothesis in the mouse model Vegfa(δ/δ), where the HRE in the Vegfa promoter is mutated, preventing HIF binding. Vegfa expression was reduced in highly purified HSCs from Vegfa(δ/δ) mice, showing that HSCs reside in hypoxic areas. Loss of hypoxia-regulated Vegfa expression increases the numbers of phenotypically defined hematopoietic stem and progenitor cells. However, HSC function was clearly impaired when assessed in competitive transplantation assays. Our data provide further evidence that HSCs reside in a hypoxic microenvironment and demonstrate a novel way in which the hypoxic niche affects HSC fate, via the hypoxia-VEGFA axis.

摘要

缺氧是造血干细胞 (HSC) 龛的一个重要特征,但促进静止、自我更新和存活的分子机制仍难以捉摸。血管内皮生长因子 A (VEGFA) 是血管生成和造血的关键调节剂。其表达通常受缺氧诱导因子 (HIF) 调节,这些因子在低氧条件下功能诱导,并通过与缺氧反应元件 (HRE) 结合来激活转录。Vegfa 通过细胞内在的自分泌机制对于 HSC 的存活是必不可少的。我们假设缺氧的 HSC 微环境对于维持或上调 HSCs 中 Vegfa 的表达是必需的,因此对于 HSC 的存活至关重要。我们已经在小鼠模型 Vegfa(δ/δ)中测试了这一假设,其中 Vegfa 启动子中的 HRE 发生突变,阻止 HIF 结合。Vegfa 在 Vegfa(δ/δ)小鼠的高度纯化 HSCs 中表达减少,表明 HSCs 存在于缺氧区域。缺氧调节的 Vegfa 表达的丧失增加了表型定义的造血干细胞和祖细胞的数量。然而,当在竞争性移植测定中评估时,HSC 功能明显受损。我们的数据进一步证明 HSCs 存在于缺氧的微环境中,并通过缺氧-VEGFA 轴展示了一种新的方式,即缺氧龛如何影响 HSC 命运。

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