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定量磷酸化蛋白质组学揭示了在中性粒细胞激活过程中,不同刺激物激活不同的信号通路。

Quantitative phosphoproteomics reveals diverse stimuli activate distinct signaling pathways during neutrophil activation.

机构信息

Department of Ageing Research, Manipal School of Life Sciences, Manipal Academy of Higher Education, Manipal, 576104, India.

Center for Systems Biology and Molecular Medicine, Yenepoya Research Centre, Yenepoya (Deemed to Be University), Mangalore, 575020, India.

出版信息

Cell Tissue Res. 2022 Aug;389(2):241-257. doi: 10.1007/s00441-022-03636-7. Epub 2022 May 27.

Abstract

Neutrophils display functional heterogeneity upon responding diversely to physiological and pathological stimulations. During type 2 diabetes (T2D), hyperglycemia constitutively activates neutrophils, leading to reduced response to infections and on the other hand, elevated metabolic intermediates such as homocysteine induce bidirectional activation of platelets and neutrophils leading to thrombosis. Hence, in the context of T2D-associated complications, we examined the influence of high glucose, homocysteine, and LPS representing effector molecules of hyperglycemia, thrombosis, and infection, respectively, on human neutrophil activation to identify distinct signaling pathways by quantitative phosphoproteomics approach. High glucose activated C-Jun-N-Terminal Kinase, NTRK1, SYK, and PRKACA kinases associated with Rho GTPase signaling and phagocytosis, whereas LPS induced AKT1, SRPK2, CSNK2A1, and TTN kinases involved in cytokine signaling and inflammatory response. Homocysteine treatment led to activatation of  LRRK2, FGR, MAPK3, and PRKCD kinases which are associated with neutrophil degranulation and cytoskeletal remodeling. Diverse inducers differentially modulated phosphorylation of proteins associated with neutrophil functions such as oxidative burst, degranulation, extracellular traps, and phagocytosis. Further validation of phosphoproteomics data on selected kinases revealed neutrophils pre-cultured under high glucose showed impeded response to LPS to phosphorylate p-ERK1/2, p-AKT, and C-Jun-N-Terminal Kinase kinases. Our study provides novel phosphoproteome signatures that may be explored to understand neutrophil biology in T2D-associated complications.

摘要

中性粒细胞在对生理和病理刺激做出不同反应时表现出功能异质性。在 2 型糖尿病(T2D)中,高血糖会持续激活中性粒细胞,导致对感染的反应减弱,另一方面,升高的代谢中间产物如同型半胱氨酸会导致血小板和中性粒细胞的双向激活,从而导致血栓形成。因此,在与 T2D 相关并发症的背景下,我们研究了高血糖、同型半胱氨酸和 LPS 分别代表高血糖、血栓形成和感染的效应分子对人中性粒细胞激活的影响,以通过定量磷酸蛋白质组学方法确定不同的信号通路。高葡萄糖激活了与 Rho GTPase 信号和吞噬作用相关的 C-Jun-N 末端激酶、NTRK1、SYK 和 PRKACA 激酶,而 LPS 诱导了与细胞因子信号和炎症反应相关的 AKT1、SRPK2、CSNK2A1 和 TTN 激酶。同型半胱氨酸处理导致与中性粒细胞脱颗粒和细胞骨架重塑相关的 LRRK2、FGR、MAPK3 和 PRKCD 激酶的激活。不同的诱导剂差异调节与中性粒细胞功能(如氧化爆发、脱颗粒、细胞外陷阱和吞噬作用)相关的蛋白质的磷酸化。对选定激酶的磷酸蛋白质组学数据的进一步验证表明,在高葡萄糖下预培养的中性粒细胞对 LPS 磷酸化 p-ERK1/2、p-AKT 和 C-Jun-N 末端激酶激酶的反应受到阻碍。我们的研究提供了新的磷酸蛋白质组学特征,这些特征可能被探索用于理解 T2D 相关并发症中的中性粒细胞生物学。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f5fc/9287233/25accd726d0a/441_2022_3636_Fig1_HTML.jpg

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