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ISG15: leading a double life as a secreted moleculeOpen

机译:ISG15:作为一种秘密分子享有双重生命

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ISG15 is a well-known intracellular ubiquitin-like molecule involved in ISGylation. However, a recent study has revived the notion first put forward two decades ago that ISG15 is also a secreted molecule. Human neutrophils, monocytes and lymphocytes can release ISG15, even though this protein has no detectable signal peptide sequence. ISG15 has also been found in the secretory granules of granulocytes. The mechanism underlying ISG15 secretion is unknown. Secreted ISG15 acts on at least T and natural killer (NK) lymphocytes, in which it induces interferon (IFN)-γ production. However, the mechanism by which ISG15 stimulates these cells also remains unclear. ISG15 and IFN-γ seem to define an innate circuit that operates preferentially, but not exclusively, between granulocytes and NK cells. Inherited ISG15 deficiency is associated with severe mycobacterial disease in both mice and humans. This infectious phenotype probably results from the lack of secreted ISG15, because patients and mice with other inborn errors of IFN-γ immunity also display mycobacterial diseases. In addition to raising mechanistic issues, the studies described here pave the way for clinical studies of various aspects, ranging from the use of recombinant ISG15 in patients with infectious diseases to the use of ISG15-blocking agents in patients with inflammatory diseases.
机译:ISG15是参与ISGylation的众所周知的细胞内泛素样分子。但是,最近的一项研究恢复了二十多年前首次提出的ISG15也是一种分泌分子的观念。人类中性粒细胞,单核细胞和淋巴细胞可以释放ISG15,即使该蛋白没有可检测的信号肽序列。在粒细胞的分泌颗粒中也发现了ISG15。 ISG15分泌的潜在机制尚不清楚。分泌的ISG15至少作用于T和自然杀伤(NK)淋巴细胞,在其中诱导干扰素(IFN)-γ的产生。但是,ISG15刺激这些细胞的机制也仍然不清楚。 ISG15和IFN-γ似乎定义了一个固有的回路,该回路优先但非排他地在粒细胞和NK细胞之间起作用。遗传性的ISG15缺乏症与小鼠和人类的严重分枝杆菌疾病有关。这种传染性表型可能是由于缺乏分泌的ISG15而引起的,因为患有其他先天性IFN-γ免疫缺陷的患者和小鼠也表现出分枝杆菌病。除了引发机械问题外,此处描述的研究还为从各个方面进行临床研究铺平了道路,从在感染性疾病患者中使用重组ISG15到在炎性疾病患者中使用ISG15阻断剂。

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