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.

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.

Related Concept Videos

Lipids as Anchors01:32

Lipids as Anchors

In the plasma membrane, the lipids forming the bilayer can also act as an anchor to tether proteins to the membrane. The three main types of lipid anchors found in eukaryotes are – prenyl groups, fatty acyl groups, and glycosylphosphatidylinositol or GPI groups. Prenyl and fatty acyl groups act as anchors on the cytosolic surface of the membrane, whereas GPI anchors proteins on the extracellular side.
The carboxy-terminal of most of the prenylated proteins, such as Ras proteins, contains the...
Coat Assembly and GTPases01:33

Coat Assembly and GTPases

Vesicles incorporate different coat protein subunits in different cell locations, which changes the properties of the coat, such as the shape and geometry of the transport vesicles. Thus, vesicle coat proteins also play a significant role in cargo selection.
Coat assembly depends on the local availability of phosphatidylinositol phosphates or PIPs and GTP-binding proteins. Adaptor proteins, which link the coat proteins to the membrane, bind to these PIPs and play a crucial role in controlling...
Catenins01:23

Catenins

Catenins are characterized by multiple binding domains and dynamic structures that allow them to function as linker proteins in cell junction complexes. All catenins, except α-catenin, contain a characteristic protein sequence called the armadillo repeat and are therefore also called armadillo proteins.
Catenins in Cell Junctions
Catenins bind to cell adhesion molecules such as cadherins and link them to different cytoskeletal proteins depending on the type of cell junction. At the adherens...
GPI Anchoring of Proteins in the ER Membrane01:29

GPI Anchoring of Proteins in the ER Membrane

GPI-anchoring is a post-translational, reversible protein modification that is ubiquitous in eukaryotes. Such proteins are primarily present on the exoplasmic leaflet of the plasma membrane.
GPI-anchor structure
A sequence of 11 enzymatic reactions results in the synthesis of the complete GPI anchor consisting of a hydrophobic and a hydrophilic portion. The hydrophobic portion comprises phosphatidylinositol, while the hydrophilic part comprises polar groups like phosphoethanolamine,...
Mechanism of Lamellipodia Formation01:31

Mechanism of Lamellipodia Formation

Cells migrating in response to external stimuli form lamellipodia, which are thin membrane protrusions supported by a mesh of linked, branched, or unbranched actin filaments. These actin filaments interact with myosin motor proteins, creating the dynamic actomyosin complex within the cytoskeleton. Contractility, or the ability to generate contractile stress, is inherent to the actomyosin complex. It helps cells detect the stiffness of the surrounding ECM and exert contractile force for...
Translocation of Proteins into the Mitochondria01:19

Translocation of Proteins into the Mitochondria

Mitochondrial precursors are translocated to the internal subcompartments via independent mechanisms involving distinct protein machineries called translocases.
Sorting of outer membrane proteins:
Mitochondrial outer membrane proteins are of two types: the transmembrane, beta-barrel porins, and the membrane-anchored, alpha-helical proteins. Beta-barrel porin precursors are translocated by the TOM complex and inserted into the outer mitochondrial membrane by the SAM complex. In contrast,...