首页> 外文期刊>Blood: The Journal of the American Society of Hematology >Three-dimensional migration of macrophages requires Hck for podosome organization and extracellular matrix proteolysis.
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Three-dimensional migration of macrophages requires Hck for podosome organization and extracellular matrix proteolysis.

机译:巨噬细胞的三维迁移需要Hck进行足小体组织和细胞外基质蛋白水解。

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摘要

Tissue infiltration of phagocytes exacerbates several human pathologies including chronic inflammations or cancers. However, the mechanisms involved in macrophage migration through interstitial tissues are poorly understood. We investigated the role of Hck, a Src-family kinase involved in the organization of matrix adhesion and degradation structures called podosomes. In Hck(-/-) mice submitted to peritonitis, we found that macrophages accumulated in interstitial tissues and barely reached the peritoneal cavity. In vitro, 3-dimensional (3D) migration and matrix degradation abilities, 2 protease-dependent properties of bone marrow-derived macrophages (BMDMs), were affected in Hck(-/-) BMDMs. These macrophages formed few and undersized podosome rosettes and, consequently, had reduced matrix proteolysis operating underneath despite normal expression and activity of matrix metalloproteases. Finally, in fibroblasts unable to infiltrate matrix, ectopic expression of Hck provided the gain-of-3D migration function, which correlated positively with formation of podosome rosettes. In conclusion, spatial organization of podosomes as large rosettes, proteolytic degradation of extracellular matrix, and 3D migration appeared to be functionally linked and regulated by Hck in macrophages. Hck, as the first protein combining a phagocyte-limited expression with a role in 3D migration, could be a target for new anti-inflammatory and antitumor molecules.
机译:吞噬细胞的组织浸润加剧了几种人类疾病,包括慢性炎症或癌症。然而,关于巨噬细胞通过间质组织迁移的机制了解甚少。我们调查了Hck的作用,Hck是一种Src家族激酶,参与组织称为足囊的基质粘附和降解结构的组织。在提交腹膜炎的Hck(-/-)小鼠中,我们发现巨噬细胞聚集在间质组织中,几乎没有到达腹膜腔。在体外,Hck(-/-)BMDM中会影响3维(3D)迁移和基质降解能力,即2种蛋白酶依赖性的骨髓衍生巨噬细胞(BMDM)的特性。尽管基质金属蛋白酶的正常表达和活性,这些巨噬细胞几乎没有形成且尺寸不大的足小体花结,因此降低了在其下操作的基质蛋白水解作用。最后,在不能浸润基质的成纤维细胞中,Hck的异位表达提供了3D迁移功能,这与足小体玫瑰花结的形成呈正相关。总之,足小体的空间组织(如大的玫瑰花结),细胞外基质的蛋白水解降解和3D迁移似乎在功能上与巨噬细胞中的Hck相关并受其调控。 Hck是第一个结合吞噬细胞受限表达和3D迁移作用的蛋白质,可能成为新型抗炎和抗肿瘤分子的靶标。

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