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YopH dephosphorylates Cas and Fyn-binding protein in macrophages
N Hamid1, A Gustavsson, K Andersson
1Department of Cell and Molecular Biology, University of Umeâ, Umeâ, S-901 87, Sweden.
Abstract:
The tyrosine phosphatase YopH is an essential virulence effector of pathogenic Yersinia spp. YopH, which is translocated from extracellularly located bacteria into interacting target cells, blocks phagocytosis by professional phagocytes. We show here that immunoprecipitation of YopH from lysates of J774 cells infected with Y. pseudotuberculosis expressing an inactive form of YopH resulted in co-precipitation of certain phosphotyrosine proteins. The association between the inactive YopH and phosphotyrosine proteins in the 120 kDa range was rapid and could be detected after 2 min of infection. The proteins were identified as the docking proteins Cas and Fyn-binding protein (FYB). Upon infection of J774 cells with Y. pseudotuberculosis lacking YopH expression both of these proteins became tyrosine phosphorylated. Moreover, this infection caused recruitment of Cas to peripheral focal complexes, and FYB was relocalized to areas surrounding these structures. Both Cas and FYB became dephosphorylated upon infection with Y. pseudotuberculosis expressing active YopH, and this was associated with disruption of focal complexes. With regard to the previous identification of Cas and focal complexes as targets of YopH in HeLa cells, the present study supports an important role for these targets in a general mechanism of bacterial uptake.
Insights
Pathogenic Yersinia bacteria use the tyrosine phosphatase YopH to block phagocytosis. YopH targets Cas and FYB proteins, disrupting cellular structures crucial for bacterial uptake.
Area of Science:
- Microbiology
- Cell Biology
- Immunology
Background:
- Pathogenic Yersinia species employ the virulence effector YopH to inhibit phagocytosis.
- YopH is translocated into host cells, targeting phosphotyrosine proteins to disrupt cellular functions.
Purpose of the Study:
- To investigate the interaction of YopH with host cell phosphotyrosine proteins.
- To elucidate the role of Cas and FYB proteins in Yersinia-mediated phagocytosis inhibition.
Main Methods:
- Immunoprecipitation of YopH from infected J774 macrophage lysates.
- Analysis of tyrosine phosphorylation and subcellular localization of Cas and FYB proteins.
- Infection of J774 cells with Yersinia pseudotuberculosis strains expressing active or inactive YopH.
Main Results:
- Inactive YopH rapidly co-precipitated with phosphotyrosine proteins Cas and FYB.
- Yersinia lacking YopH caused tyrosine phosphorylation and altered localization of Cas and FYB.
- Active YopH dephosphorylated Cas and FYB, leading to focal complex disruption.
Conclusions:
- Cas and FYB are key targets of Yersinia YopH in professional phagocytes.
- YopH-mediated dephosphorylation of Cas and FYB is critical for blocking phagocytosis.
- These findings support a conserved mechanism of bacterial uptake inhibition by Yersinia.