通过 SWATH 蛋白质组学在体外突出脑内皮细胞对脑周细胞成熟和代谢的作用。

Highlighting In Vitro the Role of Brain-like Endothelial Cells on the Maturation and Metabolism of Brain Pericytes by SWATH Proteomics.

机构信息

Univ. Artois, UR 2465, Blood-Brain Barrier Laboratory (LBHE), F-62300 Lens, France.

Department of Neurology and Clinical Neuroscience, Graduate School of Medicine, Yamaguchi University, Ube 755-8505, Japan.

出版信息

Cells. 2023 Mar 25;12(7):1010. doi: 10.3390/cells12071010.

Abstract

Within the neurovascular unit, brain pericytes (BPs) are of major importance for the induction and maintenance of the properties of the blood-brain barrier (BBB) carried by the brain microvessel endothelial cells (ECs). Throughout barriergenesis, ECs take advantage of soluble elements or contact with BPs to maintain BBB integrity and the regulation of their cellular homeostasis. However, very few studies have focused on the role of ECs in the maturation of BPs. The aim of this study is to shed light on the proteome of BPs solocultured (hBP-solo) or cocultured with ECs (hBP-coc) to model the human BBB in a non-contact manner. We first generated protein libraries for each condition and identified 2233 proteins in hBP-solo versus 2492 in hBP-coc and 2035 common proteins. We performed a quantification of the enriched proteins in each condition by sequential window acquisition of all theoretical mass spectra (SWATH) analysis. We found 51 proteins enriched in hBP-solo related to cell proliferation, contractility, adhesion and extracellular matrix element production, a protein pattern related to an immature cell. In contrast, 90 proteins are enriched in hBP-coc associated with a reduction in contractile activities as observed in vivo in 'mature' BPs, and a significant gain in different metabolic functions, particularly related to mitochondrial activities and sterol metabolism. This study highlights that BPs take advantage of ECs during barriergenesis to make a metabolic switch in favor of BBB homeostasis in vitro.

摘要

在神经血管单元中,脑周细胞(BPs)对于脑微血管内皮细胞(ECs)携带的血脑屏障(BBB)的诱导和维持具有重要意义。在整个屏障发生过程中,ECs 利用可溶性元素或与 BPs 的接触来维持 BBB 的完整性和细胞内稳态的调节。然而,很少有研究关注 ECs 在 BPs 成熟中的作用。本研究旨在阐明单独培养的 BPs(hBP-solo)或与 ECs 共培养的 BPs(hBP-coc)的蛋白质组,以非接触方式模拟人 BBB。我们首先为每种条件生成蛋白质文库,并在 hBP-solo 中鉴定出 2233 种蛋白质,在 hBP-coc 中鉴定出 2492 种蛋白质和 2035 种共同蛋白质。我们通过连续窗口采集所有理论质谱(SWATH)分析对每种条件下的富集蛋白进行了定量。我们发现 51 种在 hBP-solo 中富集的蛋白质与细胞增殖、收缩性、粘附和细胞外基质元素产生有关,这是一种与未成熟细胞相关的蛋白质模式。相比之下,90 种在 hBP-coc 中富集的蛋白质与收缩活性降低有关,这与体内观察到的“成熟”BPs 相似,并且不同代谢功能显著增加,特别是与线粒体活性和固醇代谢相关。本研究强调,BPs 在屏障发生过程中利用 ECs 在体外促进 BBB 内稳态的代谢转换。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1866/10093307/fe69957b0ad2/cells-12-01010-g001.jpg

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