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首页> 外文期刊>Molecular Immunology >Adaptive immune stimuli altered the cargo proteins of exosomes released by supraneural myeloid body cells in Lampetra japonica
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Adaptive immune stimuli altered the cargo proteins of exosomes released by supraneural myeloid body cells in Lampetra japonica

机译:自适应免疫刺激改变了在Lampetra japonica的Supraneural骨髓体细胞释放的外索体的货物蛋白

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As one of the representatives of jawless vertebrates, lamprey is an important animal model for research on the evolution of adaptive immune system. Although it is widely accepted that the key characteristic of the immune response in jawed vertebrates is the functional cooperation between different immune effector cell lineages, whether immune cells of lamprey can communicate with each other is still unclear. Recently, mounting evidence has revealed the emerging role of exosomes in mediating intercellular communication. In this study, by means of ultrafiltration followed by size exclusion chromatography, exosomes are purified from conditioned growth medium of the primary supraneural myeloid body cells (SMB cells) in LPS-immunized and control Lampetra japonica (Japanese lamprey). The proteomic profiling and qualitative comparison are performed between protein components enriched in exosomes released by SMB cells under quiescent and activated conditions. Our results demonstrate that SMB cells can release exosomes with well-defined characteristics comparable to their mammalian counterparts on their size, morphology and protein markers, which supports exosomes are evolutionarily conserved between lamprey and other higher vertebrate species. In terms of comparison with exosomes released by quiescent SMB cells, activated SMB cell-derived exosomes contain more and significantly different protein components. The unique exosomal protein 'fingerprint' might reflect that exosomes from the SMB cells with different states of activation have distinguishing functional roles as well as targeting properties. Further bioinformatic analysis suggests that compared to quiescent exosomes, activated SMB cell-derived exosomes mainly participate in distinctive biological processes including activation of cellular component biogenesis and regulation of cell proliferation. Moreover, activated exosomes may function through the specific signaling pathways associated with the regulation of cell mitosis and immune response. Our results give valuable clues about the immunomodulatory functions of SMB cell-derived exosomes and provide the foundation for further investigation in the regulation mechanism of the adaptive immune response in lamprey.
机译:作为Jawless脊椎动物的代表之一,Lamprej是一种重要的动物模型,用于研究自适应免疫系统的演变。虽然众所周知,脊椎动物中免疫应答的关键特征是不同免疫效应细胞谱系之间的功能合作,但Lamprepy的免疫细胞是否可以彼此通信仍然不清楚。最近,安装证据揭示了外来体在介导细胞间通信中的新兴作用。在本研究中,通过超滤,然后进行尺寸排阻色谱,从原发性骨髓骨髓体细胞(SMB细胞)的调节生长培养基中纯化外索体在LPS-免疫和控制Lampetra japonica(日本Lamprepy)中。在静态和活化条件下通过SMB细胞释放的外来富集的蛋白质分析和定性比较。我们的结果表明,SMB细胞可以释放出具有与其哺乳动物对应物的明确特征的外来体,其尺寸,形态和蛋白质标志物支持外泌体在Lamprepy和其他高脊椎动物物种之间被进化地保守。就静态SMB细胞释放的外来的比较而言,活化的SMB细胞衍生的外泌体含有更多且显着不同的蛋白质组分。独特的外蛋白蛋白'指纹'可能反映出来自具有不同激活状态的SMB细胞的外泌体具有区分功能作用以及靶向性质。进一步的生物信息分析表明,与静态外来体相比,活化的SMB细胞衍生的外索体主要参与独特的生物方法,包括激活细胞组分生物发生和细胞增殖调节。此外,活化的外来体可以通过与细胞丝分裂和免疫应答的调节相关的特定信号传导途径。我们的结果为SMB细胞衍生的外索体的免疫调节功能提供了有价值的线索,并为进一步调查Lamprepy的适应性免疫反应调控机制提供了进一步调查的基础。

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