血小板
细胞凋亡
激酶
血小板活化
生物
体内
免疫学
细胞生物学
内分泌学
生物化学
生物技术
作者
Lili Zhao,Jun Li,Chufeng He,Rong Yan,Kangxi Zhou,Qingya Cui,Xiangjun Meng,Xiaodong Li,Yang Zhang,Yongzhan Nie,Renping Hu,Yancai Liu,Lu Zhao,Mengxing Chen,Wenjin Xiao,Jingluan Tian,Yi Zhao,Lijuan Cao,Ling Zhou,Anning Lin,Changgeng Ruan,Kesheng Dai
摘要
Apoptosis delimits platelet life span in the circulation and leads to storage lesion, which severely limits the shelf life of stored platelets. Moreover, accumulating evidence indicates that platelet apoptosis provoked by various pathological stimuli results in thrombocytopenia in many common diseases. However, little is known about how platelet apoptosis is initiated or regulated. Here, we show that PKA activity is markedly reduced in platelets aged in vitro, stored platelets, and platelets from patients with immune thrombocytopenia (ITP), diabetes, and bacterial infections. Inhibition or genetic ablation of PKA provoked intrinsic programmed platelet apoptosis in vitro and rapid platelet clearance in vivo. PKA inhibition resulted in dephosphorylation of the proapoptotic protein BAD at Ser155, resulting in sequestration of prosurvival protein BCL-XL in mitochondria and subsequent apoptosis. Notably, PKA activation protected platelets from apoptosis induced by storage or pathological stimuli and elevated peripheral platelet levels in normal mice and in a murine model of ITP. Therefore, these findings identify PKA as a homeostatic regulator of platelet apoptosis that determines platelet life span and survival. Furthermore, these results suggest that regulation of PKA activity represents a promising strategy for extending platelet shelf life and has profound implications for the treatment of platelet number-related diseases and disorders.
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