血小板
整合素
巨核细胞
血小板生成素
巨核细胞生成
丝氨酸
化学
下调和上调
血小板活化
转录组
血小板糖蛋白GPIIb-iia复合物
细胞生物学
生物
分子生物学
整合素αM
流式细胞术
P-选择素
内科学
内分泌学
骨髓
生物化学
野生型
胶原受体
氨基酸
血小板紊乱
血小板膜糖蛋白
作者
Kato Ramaekers,My Tran,Marco Lunghi,Amy Hermans,Chantal Thys,Koenraad De Wispelaere,Ernest Turro,Chris Van Geet,Quentin Van Thillo,Kathelijne Peerlinck,Koji Eto,Alan T. Nurden,Alessandra Balduini,Christian Andrea Di Buduo,Veerle Labarque,Kathleen Freson
出处
期刊:Blood
[Elsevier BV]
日期:2026-05-29
卷期号:148 (11): 1466-1480
被引量:2
标识
DOI:10.1182/blood.2025031904
摘要
ABSTRACT: Glanzmann thrombasthenia (GT) is characterized by absent platelet aggregation in response to all agonists except ristocetin and is caused by recessive inactivating variants in ITGA2B or ITGB3. Although patients with GT typically are described as having normal platelet counts, autosomal dominant activating variants in ITGA2B or ITGB3 cause macrothrombocytopenia. Interestingly, in our cohort of 16 patients with GT, 8 consistently exhibited platelet counts at the lower end of the normal range. We studied the role of integrin αIIbβ3 in platelet formation using megakaryocytes (MKs) derived from genetically modified immortalized MK cell lines (imMKCLs), focusing on 2 modifications of ITGB3: ITGB3-/- (inactivating) and ITGB3WT/D673_E713del (activating). In static differentiation cultures, ITGB3-/- and ITGB3WT/D673_E713del imMKCLs exhibited normal MK differentiation but reduced proplatelet formation. Platelet production was also impaired in a 3-dimensional silk-based bone marrow system and in shaking cultures, confirming a quantitative role for ITGB3 in platelet production independent of the type of variant. Although thrombin receptor activating protein-activated, in vitro-generated platelets lacking αIIbβ3 failed to bind the activation-dependent PAC-1 antibody, ITGB3WT/D673_E713del platelets bound PAC-1 before activation, mimicking the patient's phenotype. Transcriptome profiling and metabolomic analyses of integrin αIIbβ3-deficient MKs revealed impaired serine metabolism and downregulation of SLC3A2 (CD98hc), an amino acid transporter chaperon known to interact with the β3 subunit. Flow cytometry confirmed decreased CD98hc in mutant MKs, whereas reexpression of wild-type ITGB3 in ITGB3-/- MKs restored αIIbβ3 and CD98hc expression, normalized proplatelet formation, and enhanced serine uptake. These results uncover a previously unrecognized role of integrin αIIbβ3 in coupling serine metabolism to platelet biogenesis.
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