Designer high-density lipoprotein particles enhance endothelial barrier function and suppress inflammation

IF 6.7 1区 生物学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY Science Signaling Pub Date : 2024-02-20 DOI:10.1126/scisignal.adg9256
Yueh-Chien Lin, Steven Swendeman, Irina S. Moreira, Avishek Ghosh, Andrew Kuo, Nícia Rosário-Ferreira, Shihui Guo, Alan Culbertson, Michel V. Levesque, Andreane Cartier, Takahiro Seno, Alec Schmaier, Sylvain Galvani, Asuka Inoue, Samir M. Parikh, Garret A. FitzGerald, David Zurakowski, Maofu Liao, Robert Flaumenhaft, Zeynep H. Gümüş, Timothy Hla
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Abstract

High-density lipoprotein (HDL) nanoparticles promote endothelial cell (EC) function and suppress inflammation, but their utility in treating EC dysfunction has not been fully explored. Here, we describe a fusion protein named ApoA1-ApoM (A1M) consisting of apolipoprotein A1 (ApoA1), the principal structural protein of HDL that forms lipid nanoparticles, and ApoM, a chaperone for the bioactive lipid sphingosine 1-phosphate (S1P). A1M forms HDL-like particles, binds to S1P, and is signaling competent. Molecular dynamics simulations showed that the S1P-bound ApoM moiety in A1M efficiently activated EC surface receptors. Treatment of human umbilical vein ECs with A1M-S1P stimulated barrier function either alone or cooperatively with other barrier-enhancing molecules, including the stable prostacyclin analog iloprost, and suppressed cytokine-induced inflammation. A1M-S1P injection into mice during sterile inflammation suppressed neutrophil influx and inflammatory mediator secretion. Moreover, systemic A1M administration led to a sustained increase in circulating HDL-bound S1P and suppressed inflammation in a murine model of LPS-induced endotoxemia. We propose that A1M administration may enhance vascular endothelial barrier function, suppress cytokine storm, and promote resilience of the vascular endothelium.
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设计高密度脂蛋白颗粒可增强内皮屏障功能并抑制炎症。
高密度脂蛋白(HDL)纳米颗粒可促进内皮细胞(EC)功能并抑制炎症,但其在治疗EC功能障碍方面的作用尚未得到充分探索。在这里,我们描述了一种名为载脂蛋白A1-载脂蛋白M(A1M)的融合蛋白,它由载脂蛋白A1(HDL的主要结构蛋白,可形成脂质纳米颗粒)和载脂蛋白M(生物活性脂质1-磷酸鞘磷脂(S1P)的伴侣蛋白)组成。A1M 形成类似 HDL 的颗粒,与 S1P 结合,并具有信号传导能力。分子动力学模拟显示,A1M 中与 S1P 结合的 ApoM 分子能有效激活心血管细胞表面受体。用 A1M-S1P 处理人脐静脉 EC 可单独或与其他屏障增强分子(包括稳定的前列环素类似物伊洛前列素)协同刺激屏障功能,并抑制细胞因子诱导的炎症。在无菌炎症期间向小鼠注射 A1M-S1P 可抑制中性粒细胞的流入和炎症介质的分泌。此外,在 LPS 诱导的内毒素血症小鼠模型中,全身注射 A1M 会导致循环高密度脂蛋白结合的 S1P 持续增加,并抑制炎症。我们认为,服用 A1M 可增强血管内皮屏障功能,抑制细胞因子风暴,促进血管内皮的恢复能力。
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来源期刊
Science Signaling
Science Signaling BIOCHEMISTRY & MOLECULAR BIOLOGY-CELL BIOLOGY
CiteScore
9.50
自引率
0.00%
发文量
148
审稿时长
3-8 weeks
期刊介绍: "Science Signaling" is a reputable, peer-reviewed journal dedicated to the exploration of cell communication mechanisms, offering a comprehensive view of the intricate processes that govern cellular regulation. This journal, published weekly online by the American Association for the Advancement of Science (AAAS), is a go-to resource for the latest research in cell signaling and its various facets. The journal's scope encompasses a broad range of topics, including the study of signaling networks, synthetic biology, systems biology, and the application of these findings in drug discovery. It also delves into the computational and modeling aspects of regulatory pathways, providing insights into how cells communicate and respond to their environment. In addition to publishing full-length articles that report on groundbreaking research, "Science Signaling" also features reviews that synthesize current knowledge in the field, focus articles that highlight specific areas of interest, and editor-written highlights that draw attention to particularly significant studies. This mix of content ensures that the journal serves as a valuable resource for both researchers and professionals looking to stay abreast of the latest advancements in cell communication science.
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