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Updated: Sep 27, 2026

Analyzing Platelet Subpopulations by Multi-color Flow Cytometry
Published on: June 10, 2025
HIF-1α/ADPGK-driven glycolytic reprogramming provokes platelet hyperactivation by fueling RHOA lactylation
Qigang Lan1, Yaqin Wang1, Minhua Xie1
1Xinqiao Hospital, Army Medical University, Chongqing, China.
Abstract:
Platelet hyperactivation is the primary driver of thrombosis, which frequently occurs under physiological and pathological hypoxic conditions. Platelet activation is energy-intensive, while it is puzzling to explain hypoxia-associated platelet hyperactivation with energy metabolism. Here, we demonstrate that HIF-1α-driven glycolytic reprogramming induces platelet hyperactivation by fueling RHOA activation in chronic kidney disease (CKD) and high-altitude cohorts. We show that CKD-associated or hypoxia-induced upregulation of HIF-1α stabilizes ADP-dependent glucokinase (ADPGK) by shielding its lysine 125 from ubiquitin-mediated degradation, and ADPGK then utilizes ADP to drive glycolysis, resulting in lactate accumulation in platelets. Subsequently, accumulated lactate induces RHOA lactylation at lysine 7 to enhance its activation, thereby promoting cytoskeletal remodeling and platelet hyperactivation. Pharmacological inhibition of ADPGK with a screened compound Z809269780 effectively alleviates hypoxia-associated platelet hyperactivation and thrombosis. Our findings uncover an unrecognized non-histone lactylation mechanism of platelet hyperactivation and identify a potential therapeutic avenue for hypoxia-induced thrombotic complications.
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