下调和上调
自噬
细胞生物学
功能(生物学)
新陈代谢
化学
血小板
肿瘤坏死因子α
生物
免疫学
生物化学
基因
细胞凋亡
作者
Guadalupe Rojas-Sánchez,Jorge Calzada-Martinez,Brandon McMahon,Aaron C. Petrey,Gabriela Dveksler,Gerardo Pável Espino-Solís,Orlando Esparza,Giovanny Hernandez,Dennis Le,Eric P. Wartchow,Ken Jones,Lucas H. Ting,Catherine M. Jankowski,Marguerite R. Kelher,Marilyn J. Manco‐Johnson,Marie L. Feser,Kevin D. Deane,Travis Nemkov,Angelo D’Alessandro,Andrew Thorburn
摘要
Platelets play a dual role in hemostasis and inflammation-associated thrombosis and hemorrhage. Although the mechanisms linking inflammation to platelet dysfunction remain poorly understood, our previous work demonstrated that TNF-α alters mitochondrial mass, platelet activation, and autophagy-related pathways in megakaryocytes. Here, we hypothesized that TNF-α impairs platelet function by disrupting autophagy, a process critical for mitochondrial health and cellular metabolism. Using human and murine models of TNF-α-driven diseases, including myeloproliferative neoplasms and rheumatoid arthritis, we found that TNF-α downregulates syntaxin 17 (STX17), a key mediator of autophagosome-lysosome fusion. This disruption inhibited autophagy, leading to the accumulation of dysfunctional mitochondria and reduced mitochondrial respiration. These metabolic alterations compromised platelet-driven clot contraction, a process linked to thrombotic and hemorrhagic complications. Our findings reveal a mechanism by which TNF-α disrupts hemostasis through autophagy inhibition, highlighting TNF-α as a critical regulator of platelet metabolism and function. This study provides potentially new insights into inflammation-associated pathologies and suggests autophagy-targeting strategies as potential therapeutic avenues to restore hemostatic balance.
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