首页> 外文期刊>Cell Reports >Von Hippel-Lindau Protein Is Required for Optimal Alveolar Macrophage Terminal Differentiation, Self-Renewal, and Function
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Von Hippel-Lindau Protein Is Required for Optimal Alveolar Macrophage Terminal Differentiation, Self-Renewal, and Function

机译:Von Hippel-Lindau蛋白是最佳肺泡巨噬细胞终末分化,自我更新和功能所必需的

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Summary The rapid transit from hypoxia to normoxia in the lung that follows the first breath in newborn mice coincides with alveolar macrophage (AM) differentiation. However, whether sensing of oxygen affects AM maturation and function has not been previously explored. We have generated mice whose AMs show a deficient ability to sense oxygen after birth by deleting Vhl, a negative regulator of HIF transcription factors, in the CD11c compartment (CD11cΔ Vhl mice). VHL-deficient AMs show an immature-like phenotype and an impaired self-renewal capacity in?vivo that persists upon culture ex?vivo . VHL-deficient phenotype is intrinsic in AMs derived from monocyte precursors in mixed bone marrow chimeras. Moreover, unlike control Vhl fl/fl, AMs from CD11cΔ Vhl mice do not reverse pulmonary alveolar proteinosis when transplanted into Csf2rb ?/? mice, demonstrating that VHL contributes to AM-mediated surfactant clearance. Thus, our results suggest that optimal AM terminal differentiation, self-renewal, and homeostatic function requires their intact oxygen-sensing capacity.
机译:小结新生小鼠第一次呼吸后,肺部从低氧迅速转变为正常氧,与肺泡巨噬细胞(AM)分化相吻合。然而,氧的感测是否会影响AM的成熟和功能尚未被探讨。我们已经生成了小鼠,其AMs通过删除CD11c区室中的HIF转录因子的负调控子Vhl,使出生后的AMs缺乏检测氧气的能力(CD11cΔVhl小鼠)。缺乏VHL的AM表现出不成熟的表型和体内自我更新能力受损,这种能力在培养后仍会持续存在。 VHL缺乏表型在混合骨髓嵌合体中源自单核细胞前体的AM中是固有的。此外,与对照Vhl fl / fl 不同,CD11cΔVhl小鼠的AMs移植到Csf2rb β/β中时不会逆转肺泡蛋白沉着症。 小鼠,表明VHL有助于AM介导的表面活性剂清除。因此,我们的结果表明,最佳的AM末端分化,自我更新和体内平衡功能需要其完整的氧感应能力。

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