Integrin-Dependent Transient Density Increase in Detergent-Resistant Membrane Rafts in Platelets Activated by Thrombin.

Glanzmann’s thrombasthenia clot retraction detergent-resistant membrane fibrin integrin αIIbβ3 lipid rafts myosin phosphatidylserine platelets sucrose density gradient

Journal

Biomedicines
ISSN: 2227-9059
Titre abrégé: Biomedicines
Pays: Switzerland
ID NLM: 101691304

Informations de publication

Date de publication:
27 Dec 2023
Historique:
received: 31 10 2023
revised: 12 12 2023
accepted: 19 12 2023
medline: 23 1 2024
pubmed: 23 1 2024
entrez: 23 1 2024
Statut: epublish

Résumé

Platelet lipid rafts are critical membrane domains for adhesion, aggregation, and clot retraction. Lipid rafts are isolated as a detergent-resistant membrane fraction via sucrose density gradient centrifugation. The platelet detergent-resistant membrane shifted to a higher density on the sucrose density gradient upon thrombin stimulation. The shift peaked at 1 min and returned to the control level at 60 min. During this time, platelets underwent clot retraction and spreading on a fibronectin-coated glass strip. Thrombin induced the transient tyrosine phosphorylation of several proteins in the detergent-resistant membrane raft fraction and the transient translocation of fibrin and myosin to the detergent-resistant membrane raft fraction. The level of phosphatidylserine (36:1) was increased and the level of phosphatidylserine (38:4) was decreased in the detergent-resistant membrane raft fraction via the thrombin stimulation. Furthermore, Glanzmann's thrombasthenia integrin αIIbβ3-deficient platelets underwent no detergent-resistant membrane shift to a higher density upon thrombin stimulation. As the phosphorylation of the myosin regulatory light chain on Ser19 was at a high level in Glanzmann's thrombasthenia resting platelets, thrombin caused no further phosphorylation of the myosin regulatory light chain on Ser19 or clot retraction. These observations suggest that the fibrin-integrin αIIbβ3-myosin axis and compositional change of phosphatidylserine species may be required for the platelet detergent-resistant membrane shift to a higher density upon stimulation with thrombin.

Identifiants

pubmed: 38255176
pii: biomedicines12010069
doi: 10.3390/biomedicines12010069
pii:
doi:

Types de publication

Journal Article

Langues

eng

Subventions

Organisme : JSPS KAKENHI
ID : JP22K19301

Auteurs

Keisuke Komatsuya (K)

Biomembrane Group, Tokyo Metropolitan Institute of Medical Science, Tokyo 156-8506, Japan.

Masaki Ishikawa (M)

Laboratory of Clinical Omics Research, Department of Applied Genomics, Kazusa DNA Research Institute, Kisarazu, Chiba 292-0818, Japan.

Norihito Kikuchi (N)

Biomembrane Group, Tokyo Metropolitan Institute of Medical Science, Tokyo 156-8506, Japan.

Tetsuya Hirabayashi (T)

Biomembrane Group, Tokyo Metropolitan Institute of Medical Science, Tokyo 156-8506, Japan.

Ryo Taguchi (R)

Department of Metabolome, Graduate School of Medicine, The University of Tokyo, 7-3-1 Hongo, Bunkyo-ku, Tokyo 113-0033, Japan.

Naomasa Yamamoto (N)

Biomembrane Group, Tokyo Metropolitan Institute of Medical Science, Tokyo 156-8506, Japan.

Morio Arai (M)

Biomembrane Group, Tokyo Metropolitan Institute of Medical Science, Tokyo 156-8506, Japan.
Sado General Hospital, Niigata 952-1209, Japan.

Kohji Kasahara (K)

Biomembrane Group, Tokyo Metropolitan Institute of Medical Science, Tokyo 156-8506, Japan.

Classifications MeSH