细胞外组蛋白作为外泌体膜蛋白受细胞应激调节

IF 15.5 1区 医学 Q1 CELL BIOLOGY
Birendra Singh, Marcus Fredriksson Sundbom, Uma Muthukrishnan, Balasubramanian Natarajan, Stephanie Stransky, André Görgens, Joel Z. Nordin, Oscar P. B. Wiklander, Linda Sandblad, Simone Sidoli, Samir El Andaloussi, Michael Haney, Jonathan D. Gilthorpe
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引用次数: 0

摘要

组蛋白是一种保守的核蛋白,作为核小体的一部分,在染色质结构和基因表达的调控中起作用。有趣的是,细胞外组蛋白存在于健康人的生物体液中,当其升高时,可能导致各种急性和慢性疾病。一般认为,大多数细胞外组蛋白以核小体的形式存在,作为细胞外染色质的组成部分。我们分析了正常和应激条件下的细胞培养模型,以确定组蛋白分泌途径。我们报道核心和连接蛋白定位于细胞外囊泡(ev),并通过多泡体/外泌体途径分泌。EV组蛋白分泌的上调是对细胞应激的反应,伴随着囊泡分泌的增强和向较小EV群体的转变。大多数组蛋白与ev的外表面呈膜相关。EV-DNA降解对ev -组蛋白关联无显著影响。个别组蛋白和组蛋白八聚体与脂质体和EV结合强烈,但核小体没有,表明组蛋白与EV结合不需要DNA。组蛋白共定位于tetraspanin阳性EVs,但通过遗传或药物干预,我们发现所有已知的外泌体生物发生途径都对组蛋白分泌起积极作用。抑制自噬和溶酶体降解对EV组蛋白释放有强烈的积极作用。出乎意料的是,ev相关组蛋白缺乏其核对应体的广泛的翻译后修饰,这表明ptm的丢失可能涉及其运输或分泌。我们的数据不支持ev组蛋白作为核小体存在的重要作用。我们首次证明组蛋白是通过ev /外泌体从细胞中作为膜蛋白分泌的。这一基本发现为进一步研究外泌体相关组蛋白的生物活性及其在疾病中的作用提供了支持。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Extracellular Histones as Exosome Membrane Proteins Regulated by Cell Stress

Extracellular Histones as Exosome Membrane Proteins Regulated by Cell Stress

Histones are conserved nuclear proteins that function as part of the nucleosome in the regulation of chromatin structure and gene expression. Interestingly, extracellular histones populate biofluids from healthy individuals, and when elevated, may contribute to various acute and chronic diseases. It is generally assumed that most extracellular histones exist as nucleosomes, as components of extracellular chromatin. We analysed cell culture models under normal and stressed conditions to identify pathways of histone secretion. We report that core and linker histones localize to extracellular vesicles (EVs) and are secreted via the multivesicular body/exosome pathway. Upregulation of EV histone secretion occurs in response to cellular stress, with enhanced vesicle secretion and a shift towards a population of smaller EVs. Most histones were membrane associated with the outer surface of EVs. Degradation of EV-DNA did not impact significantly on EV-histone association. Individual histones  and histone octamers bound strongly to liposomes and EVs, but nucleosomes did not, showing histones do not require DNA for EV binding. Histones colocalized to tetraspanin positive EVs but using genetic or pharmacological intervention, we found that all known pathways of exosome biogenesis acted positively on histone secretion. Inhibition of autophagy and lysosomal degradation had a strong positive effect on EV histone release. Unexpectedly, EV-associated histones lacked the extensive post-translational modification of their nuclear counterparts, suggesting loss of PTMs may be involved in their trafficking or secretion. Our data does not support a significant role for EV-histones existing as nucleosomes. We show for the first time that histones are secreted from cells as membrane proteins via EVs/exosomes. This fundamental discovery provides support for further investigation of the biological activity of exosome associated histones and their role in disease.

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来源期刊
Journal of Extracellular Vesicles
Journal of Extracellular Vesicles Biochemistry, Genetics and Molecular Biology-Cell Biology
CiteScore
27.30
自引率
4.40%
发文量
115
审稿时长
12 weeks
期刊介绍: The Journal of Extracellular Vesicles is an open access research publication that focuses on extracellular vesicles, including microvesicles, exosomes, ectosomes, and apoptotic bodies. It serves as the official journal of the International Society for Extracellular Vesicles and aims to facilitate the exchange of data, ideas, and information pertaining to the chemistry, biology, and applications of extracellular vesicles. The journal covers various aspects such as the cellular and molecular mechanisms of extracellular vesicles biogenesis, technological advancements in their isolation, quantification, and characterization, the role and function of extracellular vesicles in biology, stem cell-derived extracellular vesicles and their biology, as well as the application of extracellular vesicles for pharmacological, immunological, or genetic therapies. The Journal of Extracellular Vesicles is widely recognized and indexed by numerous services, including Biological Abstracts, BIOSIS Previews, Chemical Abstracts Service (CAS), Current Contents/Life Sciences, Directory of Open Access Journals (DOAJ), Journal Citation Reports/Science Edition, Google Scholar, ProQuest Natural Science Collection, ProQuest SciTech Collection, SciTech Premium Collection, PubMed Central/PubMed, Science Citation Index Expanded, ScienceOpen, and Scopus.
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