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转录因子 Nfix 通过 RhoA-ROCK1 依赖的吞噬作用来调节骨骼肌再生过程中的巨噬细胞极化。

The Transcription Factor Nfix Requires RhoA-ROCK1 Dependent Phagocytosis to Mediate Macrophage Skewing during Skeletal Muscle Regeneration.

机构信息

Department of Biosciences, University of Milan, via Celoria 26, 20133, Milan, Italy.

出版信息

Cells. 2020 Mar 13;9(3):708. doi: 10.3390/cells9030708.

Abstract

Macrophages (MPs) are immune cells which are crucial for tissue repair. In skeletal muscle regeneration, pro-inflammatory cells first infiltrate to promote myogenic cell proliferation, then they switch into an anti-inflammatory phenotype to sustain myogenic cells differentiation and myofiber formation. This phenotypical switch is induced by dead cell phagocytosis. We previously demonstrated that the transcription factor Nfix, a member of the nuclear factor I (Nfi) family, plays a pivotal role during muscle development, regeneration and in the progression of muscular dystrophies. Here, we show that Nfix is mainly expressed by anti-inflammatory macrophages. Upon acute injury, mice deleted for Nfix in myeloid line displayed a significant defect in the process of muscle regeneration. Indeed, Nfix is involved in the macrophage phenotypical switch and macrophages lacking Nfix failed to adopt an anti-inflammatory phenotype and interact with myogenic cells. Moreover, we demonstrated that phagocytosis induced by the inhibition of the RhoA-ROCK1 pathway leads to Nfix expression and, consequently, to acquisition of the anti-inflammatory phenotype. Our study identified Nfix as a link between RhoA-ROCK1-dependent phagocytosis and the MP phenotypical switch, thus establishing a new role for Nfix in macrophage biology for the resolution of inflammation and tissue repair.

摘要

巨噬细胞(MPs)是免疫细胞,对于组织修复至关重要。在骨骼肌再生中,促炎细胞首先浸润以促进成肌细胞增殖,然后转变为抗炎表型以维持成肌细胞分化和肌纤维形成。这种表型转换是由死细胞吞噬诱导的。我们之前证明,转录因子 Nfix 是核因子 I(Nfi)家族的成员,在肌肉发育、再生和肌肉疾病进展中发挥关键作用。在这里,我们表明 Nfix 主要由抗炎巨噬细胞表达。在急性损伤时,髓系细胞中缺失 Nfix 的小鼠在肌肉再生过程中出现明显缺陷。事实上,Nfix 参与了巨噬细胞表型转换,缺乏 Nfix 的巨噬细胞无法转变为抗炎表型并与成肌细胞相互作用。此外,我们证明了通过抑制 RhoA-ROCK1 通路诱导的吞噬作用导致 Nfix 的表达,并因此获得抗炎表型。我们的研究将 Nfix 确定为 RhoA-ROCK1 依赖性吞噬作用和 MP 表型转换之间的联系,从而为 Nfix 在炎症和组织修复中发挥的巨噬细胞生物学的新作用建立了联系。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5b0f/7140652/9398830eb552/cells-09-00708-g001.jpg

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