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Oxidized lipids keep heat shock chaperones busy: new insights on the deficiencies of tumour-associated dendritic cells

机译:氧化的脂质使热休克伴侣忙碌:肿瘤相关树突状细胞缺乏症的新见解

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摘要

In a recent publication in Nature Communications the group of Dr. Dmitry Gabrilovich takes us one step closer to understanding why lipid accumulation impairs the function of tumour-associated dendritic cells (DCs). In this study, the authors present two surprising and significant findings. First, they show that in mouse DCs oxidized lipids function as a sink that traps the heat shock chaperone HSP70, a molecular target of emerging anti-cancer strategies. Secondly, they find that HSP70 in turn regulates the trafficking of peptide-loaded major histocompatibility complex class I (pMHC-I) molecules, a complex that triggers the proliferation of cancer-killing T cells. These observations are discussed briefly in the context of lipid droplet function and pMHC-I trafficking in tumour-associated DCs, as well as HSP70’s pleiotropic and incompletely understood roles - and what they mean for future cancer therapy designs.
机译:在《自然通讯》(Nature Communications)的最新出版物中,德米特里·加布里罗维奇(Dmitry Gabrilovich)博士的研究小组使我们更深入地了解了为什么脂质积累会损害与肿瘤相关的树突状细胞(DC)的功能。在这项研究中,作者提出了两个令人惊讶且重要的发现。首先,他们表明,在小鼠DC中,氧化的脂质起着汇聚的作用,捕获了热激分子伴侣HSP70,这是新兴抗癌策略的分子靶标。其次,他们发现HSP70反过来又调节了载有肽的I型主要组织相容性复合物(pMHC-1)分子的运输,该复合物触发了杀死癌症的T细胞的增殖。这些观察结果在与肿瘤相关的DC中的脂质滴功能和pMHC-I转运以及HSP70的多效性和不完全了解的作用以及它们对未来癌症治疗设计的意义的背景下进行了简要讨论。

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