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在伸出的伪足足突中,半胱氨酸组织蛋白酶介导了巨噬细胞的三维入侵。

Three-dimensional invasion of macrophages is mediated by cysteine cathepsins in protrusive podosomes.

机构信息

Faculty of Pharmacy, University of Ljubljana, Aškerčeva 7, SI-1000 Ljubljana, Slovenia.

出版信息

Eur J Immunol. 2012 Dec;42(12):3429-41. doi: 10.1002/eji.201242610. Epub 2012 Nov 7.

Abstract

Podosomes, specialized actin-rich structures in macrophages (Mfs), degrade the extra-cellular matrix (ECM) and are involved in cell migration. On two-dimensional (2D) surfaces Mfs form spot-like podosomes at the ventral cell surface that develop into protrusive structures in a three-dimensional (3D) environment resembling the ECM. We have shown that the tips of these protrusive podosomes are characterized by increased accumulation of cysteine cathepsins (Cts) B, X, S, H, and L, both in human blood Mfs and in human monocytic cell line U-937. Monocyte-to-Mf differentiation induces an increase in cysteine cathepsin expression and activity, promoting their translocation to the cell surface, where they interact with ECM. This group of proteases is crucial for the extracellular as well as intracellular degradation of ECM, as demonstrated by quantitative monitoring of collagen IV degradation. Furthermore, inhibiting CtsB, X, and S significantly impairs Mf invasion through the 3D matrix. Time-lapse live-cell imaging of CtsB activity revealed that the extracellular and the intracellular ECM degradation are associated with extensive endocytosis at the tip of protrusive podosomes. The targeting of cysteine cathepsins, as the major mediators of human Mf 3D invasion, could be an approach to the treatment of inflammatory and cancerous diseases.

摘要

Podosomes 是巨噬细胞(Mfs)中特化的富含肌动蛋白的结构,可降解细胞外基质(ECM)并参与细胞迁移。在二维(2D)表面上,Mfs 在腹侧细胞表面形成点状的 Podosomes,在三维(3D)环境中发展成类似于 ECM 的突起结构。我们已经表明,这些突起 Podosomes 的尖端特征是半胱氨酸组织蛋白酶(Cts)B、X、S、H 和 L 的积累增加,无论是在人血 Mfs 还是在人单核细胞系 U-937 中都是如此。单核细胞向 Mf 的分化诱导半胱氨酸组织蛋白酶表达和活性增加,促进其向细胞表面易位,在那里它们与 ECM 相互作用。该蛋白酶组对于 ECM 的细胞外和细胞内降解至关重要,这一点通过定量监测 IV 型胶原的降解得到了证明。此外,抑制 CtsB、X 和 S 显著损害了 Mf 通过 3D 基质的侵袭。对 CtsB 活性的延时活细胞成像显示,细胞外和细胞内 ECM 的降解与突起 Podosomes 尖端的广泛内吞作用有关。针对半胱氨酸组织蛋白酶作为人 Mf 3D 入侵的主要介质,可能成为治疗炎症和癌症疾病的一种方法。

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