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Updated: Jul 18, 2026

Reconstitution of Msp1 Extraction Activity with Fully Purified Components
Published on: August 10, 2021
Palmitoylation at Cys595 is essential for PECAM-1 localisation into membrane microdomains and for efficient
Caroline T Sardjono1, Stacey N Harbour, Jana C Yip
1Kronheimer Building, Burnet Institute incorporating the Austin Research Institute, Studley Road, Heidelberg, Victoria, 3084 Australia.
Abstract:
The Ig-ITIM superfamily member, PECAM-1 acts as a negative regulator of ITAM-signalling pathways in platelets involving GPVI/FcR gamma chain and Fc?RIIa. This negative feedback loop involves regulation of collagen and GPVI-dependent aggregation events, platelet-thrombus-growth on immobilised collagen under flow and Fc?RIIa-mediated platelet responses. In this study, we show that PECAM-1 is selectively palmitoylated involving a thioester linkage with an unpaired cysteine residue at amino acid position 595 in its cytoplasmic domain. As palmitoylation is known to target proteins to membrane microdomains, we investigated the microdomain localisation for PECAM-1 in platelets and nucleated cells. In unstimulated platelets, approximately 20% of PECAM-1 is localised to Triton-insoluble microdomain fractions and it does not increase with platelet activation by collagen, collagen-related peptide, thrombin- or human-aggregated IgG. PECAM-1 is in close physical proximity with GPVI in platelet microdomains. Removal of platelet cytoskeleton prior to sucrose-density-gradient separation showed that PECAM-1 was associated with both the Triton-soluble and membrane skeleton in microdomain-associated fractions. Disruption of microdomains by membrane-cholesterol depletion resulted in loss of PECAM-1 localisation to membrane microdomains. Mutational analysis of juxtamembrane cysteine residue to alanine (C595A) of human PECAM-1 resulted in loss of palmitoylation and a sixfold decrease in association with membrane microdomains. Functionally, the palmitoylated cysteine 595 residue is required, in part, for efficient PECAM-1-mediated cytoprotection. These results show that cysteine 595 is required for constitutive association of PECAM-1 with membrane microdomains and PECAM-1-mediated cytoprotection, where it may act as a crucial regulator of signaling and apoptosis events.
Insights
Platelet protein PECAM-1 is palmitoylated at cysteine 595, anchoring it to membrane microdomains. This modification is crucial for PECAM-1
Area of Science:
- Cell biology
- Immunology
- Biochemistry
Background:
- Platelet endothelial cell adhesion molecule-1 (PECAM-1) negatively regulates ITAM-signaling pathways in platelets, including those involving GPVI/FcR gamma chain and FcγRIIa.
- This regulatory role impacts collagen and GPVI-dependent aggregation, platelet-thrombus growth under flow, and FcγRIIa-mediated platelet responses.
Purpose of the Study:
- To investigate the palmitoylation of PECAM-1 and its role in targeting the protein to membrane microdomains.
- To determine the functional significance of PECAM-1 palmitoylation in platelet signaling and cytoprotection.
Main Methods:
- Analysis of PECAM-1 palmitoylation via thioester linkage with cysteine 595 in its cytoplasmic domain.
- Investigation of PECAM-1 microdomain localization in platelets and nucleated cells using Triton-insoluble fractions and sucrose-density-gradient separation.
- Mutational analysis (C595A) to assess the impact of palmitoylation on PECAM-1 localization and function.
Main Results:
- PECAM-1 is selectively palmitoylated at cysteine 595, a modification essential for its constitutive association with membrane microdomains.
- Approximately 20% of PECAM-1 localizes to Triton-insoluble microdomains in unstimulated platelets, independent of activation.
- The C595A mutation abolishes palmitoylation and significantly reduces PECAM-1's association with membrane microdomains and its cytoprotective function.
Conclusions:
- Cysteine 595 is critical for the constitutive localization of PECAM-1 to membrane microdomains.
- Palmitoylation of PECAM-1 at cysteine 595 is essential for its role in cytoprotection.
- PECAM-1's association with membrane microdomains, mediated by palmitoylation, is crucial for regulating signaling and apoptosis.
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