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原代人巨噬细胞中微管依赖性足体粘附结构的形成

Microtubule-dependent formation of podosomal adhesion structures in primary human macrophages.

作者信息

Linder S, Hüfner K, Wintergerst U, Aepfelbacher M

机构信息

Institut für Prophylaxe und Epidemiologie der Kreislaufkrankheiten, Pettenkoferstr. 9, Germany.

出版信息

J Cell Sci. 2000 Dec;113 Pt 23:4165-76. doi: 10.1242/jcs.113.23.4165.

Abstract

Podosomes are unique actin-rich adhesion structures of monocyte-derived cells such as macrophages and osteoclasts. They clearly differ from other substratum-contacting organelles like focal adhesions in morphological and functional regards. Formation of podosomes has been shown to be dependent on the small GTPase CDC42Hs and its effector Wiskott-Aldrich syndrome protein (WASp). In this study, we investigated the functional relation between podosomes and the microtubule system in primary human macrophages. We demonstrate that, in contrast to focal adhesions, assembly of podosomes in macrophages and their monocytic precursors is dependent on an intact microtubule system. In contrast, experiments using Wiskott-Aldrich syndrome (WAS) macrophages indicate that the microtubule system is not reciprocally dependent on podosomes. A potential linker between podosomes and microtubules may be WASp itself, considering that microinjection of the WASp polyproline domain prevents podosome reassembly. This polyproline domain is thought to link WASp to microtubules via CDC42 interacting protein 4 (CIP4). Consistently, macrophages microinjected with CIP4 constructs deficient in either the microtubule- or the WASp-binding domain also fail to reassemble podosomes. In sum, our findings show that microtubules are essential for podosome formation in primary human macrophages and that WASp and CIP4 may be involved in this phenomenon.

摘要

足体是巨噬细胞和破骨细胞等单核细胞衍生细胞中独特的富含肌动蛋白的粘附结构。它们在形态和功能方面与其他与基质接触的细胞器(如粘着斑)明显不同。足体的形成已被证明依赖于小GTP酶CDC42Hs及其效应蛋白威斯科特-奥尔德里奇综合征蛋白(WASp)。在本研究中,我们调查了原代人巨噬细胞中足体与微管系统之间的功能关系。我们证明,与粘着斑不同,巨噬细胞及其单核细胞前体中足体的组装依赖于完整的微管系统。相比之下,使用威斯科特-奥尔德里奇综合征(WAS)巨噬细胞的实验表明,微管系统并不相互依赖于足体。考虑到微注射WASp多脯氨酸结构域可阻止足体重组,足体与微管之间的潜在连接物可能是WASp本身。该多脯氨酸结构域被认为通过CDC42相互作用蛋白4(CIP4)将WASp与微管连接起来。同样,微注射缺乏微管或WASp结合结构域的CIP4构建体的巨噬细胞也无法重组装足体。总之,我们的研究结果表明,微管对于原代人巨噬细胞中足体的形成至关重要,并且WASp和CIP4可能参与了这一现象。

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