Facultad de Ciencias de la Vida, Universidad Andres Bello, Republica 239, 8370146, Santiago, Chile.
Millennium Institute on Immunology and Immunotherapy, Alameda 340, 8331150, Santiago, Chile.
Protein J. 2019 Dec;38(6):667-674. doi: 10.1007/s10930-019-09865-0.
Sepsis is a clinical syndrome characterized by the presence of circulating microbial endotoxins and oxidative stress. Endotoxin and oxidative stress activate endothelial cells via a convergent signaling pathway (TLR4/MyD88/PI3 K/PLCɣ/NF-B) that stimulates both the transcription of SELP gene (which encodes for human P-selectin) and the release of P-selectin from Weibel-Palade bodies (WPBs). However, time course pattern of P-selectin surface aggregation has not been established in endothelial cells under 24 h of endotoxic or oxidative stress. Our study shows that P-selectin has at least two waves of aggregation at the cell surface: one 10 min and the other 12 h after endotoxic or oxidative stress. The first wave depends exclusively on WPB delivery to the cell membrane, while the second depends on P-selectin translation machinery, ER-Golgi sorting, and WPB surface delivery. Understanding adhesion molecule dynamics in endothelial cells could provide further molecular insights to develop diagnostic or therapeutic tools to aid in the management of sepsis.
脓毒症是一种临床综合征,其特征是存在循环微生物内毒素和氧化应激。内毒素和氧化应激通过一个收敛的信号通路(TLR4/MyD88/PI3K/PLCɣ/NF-B)激活内皮细胞,该通路刺激 SELP 基因(编码人 P 选择素)的转录和 P 选择素从 Weibel-Palade 体(WPB)中的释放。然而,在 24 小时的内毒素或氧化应激下,内皮细胞中 P 选择素表面聚集的时间进程模式尚未建立。我们的研究表明,P 选择素有至少两个在细胞表面聚集的波:一个在 10 分钟后,另一个在 12 小时后内毒素或氧化应激。第一波完全依赖于 WPB 向细胞膜的输送,而第二波则依赖于 P 选择素翻译机制、内质网-高尔基体分拣和 WPB 表面输送。了解内皮细胞中粘附分子的动力学可能为开发诊断或治疗工具提供进一步的分子见解,以帮助管理脓毒症。