人造血干细胞产生的外泌体中的凋亡体和蛋白酶体

I. Prudnikov, A. Smirnov, V. Tsyvkin
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引用次数: 0

摘要

背景:最近,细胞外囊泡扩展了细胞间通讯体的列表,其内容物和膜蛋白参与信号传导或其调节。特别是,已知外泌体是研究最多的细胞外囊泡形式,可含有20S蛋白酶体亚基。众所周知,胞外蛋白酶体以无囊泡形式存在,其活性具有生理意义。在这项工作中,我们研究了成人造血干细胞(aHSCs)分泌的蛋白酶体和已经激活的凋亡体。方法:从人骨髓中分离aHSCs,在无血清扩增培养基(SFEM)中培养,添加Flt3L、SCF、IL-3、IL-6和TPO。培养细胞采用CD34+抗原阳性选择浓缩。细胞色素C和dATP可使细胞通透化,诱导细胞凋亡。外泌体通过离心或使用特殊试剂盒从培养基中纯化。浓缩培养基在凝胶过滤柱上进行分馏。在硼替佐米存在下,用(Z-DEVD)2-R110底物测定Caspase-3活性。用su - llyv - amc测定胰凝乳蛋白酶样蛋白酶体的活性,并用不同的蛋白酶体抑制剂进行特异性鉴定。结果:诱导aHSCs凋亡失败。在细胞膜和外泌体中发现了少量的特异性caspase活性,但它是组成性的,细胞色素C/dATP激活凋亡细胞组装不会以任何方式影响这种活性。同时,在游离于外泌体的SFEM中发现了显著的caspase活性。凝胶过滤表明,该活性与高分子量组分相关,并与蛋白酶体一起通过凝胶过滤分离。结果表明外泌体也含有蛋白体活性。这表明外泌体含有蛋白酶体和活化的半胱天冬酶。这些活性酶在培养基中的存在可以解释为鞘磷脂酶或磷脂酶的作用,这些酶将它们从外泌体中释放出来。结论:aHSCs外泌体中含有蛋白酶,如蛋白酶体和半胱天冬酶,具有信号传导等功能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Apoptosomes and proteasomes from exosomes generated by human hematopoietic stem cells
Background: Recently, the list of intercellular communicators has been extended by extracellular vesicles, whose contents and membrane proteins are involved in signaling or in its modulation. In particular, it is known that exosomes, the most studied form of extracellular vesicles, can contain 20S proteasome subunits. It is also known that extracellular proteasomes exist in a vesicle-free form, and their activity has a physiological significance. In this work we investigated proteasomes and already activated apoptosomes that are secreted by adult human hematopoietic stem cells (aHSCs). Methods: aHSCs were isolated from human bone marrow, cultivated in Serum-Free Expansion Medium (SFEM), supplemented with Flt3L, SCF, IL-3, IL-6 and TPO. The cultured cells were concentrated by positive selection for CD34+ antigen. The cells were permeabilized and apoptosis was induced with cytochrome C and dATP. Exosomes were purified from culture medium by centrifugation or using a special kit. The concentrated culture medium was fractionated on a gel filtration column. Caspase-3 activity was measured with (Z-DEVD)2-R110 substrate in the presence of bortezomib. Chymotrypsin-like proteasome activities were determined with Suc-LLYV-AMC and different proteasome inhibitors were used for the specific identification. Results: Attempts to induce apoptosis in aHSCs were unsuccessful. Minor specific caspase activity was found in cell membranes and in exosomes but it was constitutive one and activation of apoptosome assembly by cytochrome C/dATP does not affect this in any way. At the same time, a notable caspase activity was found in SFEM freed from exosomes. Gel filtration of SFEM showed that this activity associated with components of a high molecular weight and is separated by gel filtration together with the proteasomes. It turned out that exosomes also contain proteosomal activity. This suggests that exosomes contain proteasomes and activated caspases. The presence of these active enzymes in the culture medium could be explained by the action of sphingomyelinase or phospholipases, which release them from exosomes.Conclusion: Content of exosomes from aHSCs includes proteases, such as proteasomes and caspases, which could perform signaling and other functions.
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