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QDTT 肽对 CEACAM1 的抗血小板作用。

Antiplatelet effects of the CEACAM1-derived peptide QDTT.

机构信息

Laboratory of Molecular Cardiology, Department of Cardiology, The First Affiliated Hospital of Kunming Medical University, Kunming, PR China.

Cardiovascular Department, Tengchong Hospital of Traditional Chinese Medicine, Tengchong, PR China.

出版信息

Platelets. 2024 Dec;35(1):2308635. doi: 10.1080/09537104.2024.2308635. Epub 2024 Feb 12.

Abstract

Carcinoembryonic antigen-related cell adhesion molecule 1 (CEACAM1) restricts platelet activation via platelet collagen receptor GPVI/FcRγ-chain. In this study, screening against collagen-induced platelet aggregation was performed to identify functional CEACAM1 extracellular domain fragments. CEACAM1 fragments, including Ala-substituted peptides, were synthesized. Platelet assays were conducted on healthy donor samples for aggregation, cytotoxicity, adhesion, spreading, and secretion. Mice were used for tail bleeding and FeCl-induced thrombosis experiments. Clot retraction was assessed using platelet-rich plasma. Extracellular segments of CEACAM1 and A1 domain-derived peptide QDTT were identified, while N, A2, and B domains showed no involvement. QDTT inhibited platelet aggregation. Ala substitution for essential amino acids (Asp139, Thr141, Tyr142, Trp144, and Trp145) in the QDTT sequence abrogated collagen-induced aggregation inhibition. QDTT also suppressed platelet secretion and "inside-out" GP IIb/IIIa activation by convulxin, along with inhibiting PI3K/Akt pathways. QDTT curtailed FeCl-induced mesenteric thrombosis without significantly prolonging bleeding time, implying the potential of CEACAM1 A1 domain against platelet activation without raising bleeding risk, thus paving the way for novel antiplatelet drugs.

摘要

癌胚抗原相关细胞黏附分子 1(CEACAM1)通过血小板胶原受体 GPVI/FcRγ 链限制血小板激活。在这项研究中,通过筛选胶原诱导的血小板聚集来鉴定功能性 CEACAM1 细胞外结构域片段。合成了 CEACAM1 片段,包括丙氨酸取代肽。在健康供体样本上进行血小板聚集、细胞毒性、黏附、铺展和分泌的测定。用尾巴出血和 FeCl3 诱导的血栓形成实验检测小鼠。使用富含血小板的血浆评估血栓收缩。鉴定了 CEACAM1 的细胞外片段和 A1 结构域衍生肽 QDTT,而 N、A2 和 B 结构域则不参与。QDTT 抑制血小板聚集。QDTT 序列中必需氨基酸(Asp139、Thr141、Tyr142、Trp144 和 Trp145)的丙氨酸取代消除了胶原诱导的聚集抑制。QDTT 还抑制了血小板的分泌和 convulxin 诱导的“内-外”GP IIb/IIIa 激活,同时抑制了 PI3K/Akt 通路。QDTT 缩短了 FeCl3 诱导的肠系膜血栓形成,而不会显著延长出血时间,这意味着 CEACAM1 A1 结构域在不增加出血风险的情况下抑制血小板激活的潜力,为新型抗血小板药物铺平了道路。

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