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Wiskott-Aldrich syndrome protein regulates podosomes in primary human macrophages

Proceedings of the National Academy of SciencesPublished 17 August 1999Open access
Stefan Linder, David L. Nelson, Michael Weiss, Martin Aepfelbacher
Citations431

TL;DR

It is found that WASp colocalizes with CDC42Hs and actin in the core of podosomes, a highly dynamic adhesion structure of human blood-derived macrophages, which indicates that Wasp controls podosome assembly and, in cooperation with CDC 42Hs,Podosome disassembly in primary human macrophage.

Abstract

Wiskott-Aldrich syndrome protein (WASp) is a hematopoietic-specific, multidomain protein whose mutation is responsible for the immunodeficiency disorder Wiskott-Aldrich syndrome. WASp contains a binding motif for the Rho GTPase CDC42Hs as well as verprolin/cofilin-like actin-regulatory domains, but no specific actin structure regulated by CDC42Hs-WASp has been identified. We found that WASp colocalizes with CDC42Hs and actin in the core of podosomes, a highly dynamic adhesion structure of human blood-derived macrophages. Microinjection of constitutively active V12CDC42Hs or a constitutively active WASp fragment consisting of the verprolin/cofilin-like domains led to the disassemly of podosomes. Conversely, macrophages from patients expressing truncated forms of WASp completely lacked podosomes. These findings indicate that WASp controls podosome assembly and, in cooperation with CDC42Hs, podosome disassembly in primary human macrophages.

Keywords

Biochemistry, Genetics and Molecular BiologyEngineering