The membrane adaptor LAT is proteolytically cleaved following Fas engagement in a tyrosine phosphorylation-dependent fashion

Author:

García-Blesa Antonio12,Klossowicz Mikolaj3,López-Osuna Carmen12,Martínez-Florensa Mario4,Malissen Bernard5,García-Cózar Francisco J.12,Miazek Arkadiusz3,Aguado Enrique12

Affiliation:

1. Core Research Facility for Health Sciences, Department of Biomedicine, Biotechnology and Public Health (Immunology), University of Cádiz, c/ Dr Marañon, n° 3, Cádiz 1102, Spain

2. Puerto Real University Hospital Research Unit, Ctra N-IV Km 665, 11510 Puerto Real (Cádiz), Spain

3. Institute of Immunology and Experimental Therapy, Polish Academy of Sciences, R. Weigla Str. 12, 53–114 Wrocław, Poland

4. Institut d’Investigacions Biomèdiques, Centre Esther Koplowitz, c/ Rosselló, 149–153, 08036 Barcelona, Spain

5. Centre d’Immunologie de Marseille-Luminy, Parc Scientifique et Technologique de Luminy, Case 906, 13288 Marseille cedex 09, France

Abstract

Engagement of the TCR (T-cell receptor) induces tyrosine phosphorylation of the LAT (linker for the activation of T-cells) adaptor, and thereby it recruits several cytosolic mediators for downstream signalling pathways. The Fas protein is essential for T-lymphocyte apoptosis, and following Fas engagement, many proteins are proteolytically cleaved, including several molecules that are important for the transduction of TCR intracellular signals. In the present study, we demonstrate that the adaptor LAT is also subject to a proteolytic cleavage in mature T-lymphocytes and thymocytes in response to Fas engagement, and also on TCR stimulation, and we identify three aspartic acid residues at which LAT is cleaved. Interestingly, these aspartic acid residues are located in proximity to several functionally important tyrosine residues of LAT, raising the possibility that their phosphorylation could modulate LAT cleavage. Consistent with that hypothesis, we show that induction of phosphorylation by pervanadate or H2O2 in Jurkat cells and thymocytes inhibits Fas-mediated cleavage of LAT. Moreover, we show that LAT proteolysis is also enhanced during anergy induction of primary human T-cells, suggesting that LAT cleavage may act as a regulator of TCR-mediated activation of T-cells and not only as a transducer of cell death promoting stimuli.

Publisher

Portland Press Ltd.

Subject

Cell Biology,Molecular Biology,Biochemistry

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