首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Quantum dot/peptide-MHC biosensors reveal strong CD8-dependent cooperation between self and viral antigens that augment the T cell response
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Quantum dot/peptide-MHC biosensors reveal strong CD8-dependent cooperation between self and viral antigens that augment the T cell response

机译:量子点/肽-MHC生物传感器揭示自身和病毒抗原之间强大的CD8依赖性合作,从而增强T细胞反应

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摘要

Cytotoxic T lymphocytes (CTL) can respond to a few viral pepticleMHC-I (pMHC-I) complexes among a myriad of virus-unrelated endogenous self pMHC-I complexes displayed on virus-infected cells. To elucidate the molecular recognition events on live CTL, we have utilized a self-assembled biosensor composed of semiconductor nanocrystals, quantum dots, carrying a controlled number of virus-derived (cognate) and other (noncognate) pMHC-I complexes and examined their recognition by antigen-specific T cell receptor (TCR) on anti-virus CD8(+) T cells. The unique architecture of nanoscale quantum dot/pMHC-I conjugates revealed that unexpectedly strong multivalent CD8-MHC-I interactions underlie the cooperative contribution of noncognate pMHC-I to the recognition of cognate pMHC-I by TCR to augment T cell responses. The cooperative, CD8-dependent spread of signal from a few productively engaged TCR to many other TCR can explain the remarkable ability of CTL to respond to virus-infected cells that present few cognate pMHC-I complexes.
机译:细胞毒性T淋巴细胞(CTL)可以对在病毒感染的细胞上显示的无数种与病毒无关的内源性自身pMHC-I复合物中的一些病毒消化MHC-I(pMHC-1)复合物作出反应。为了阐明实时CTL上的分子识别事件,我们利用了由半导体纳米晶体,量子点组成的自组装生物传感器,该传感器携带可控制数量的病毒衍生的(同源)和其他(非同源)pMHC-I复合物,并检查了它们的识别能力通过抗病毒CD8(+)T细胞上的抗原特异性T细胞受体(TCR)进行检测。纳米级量子点/ pMHC-1偶联物的独特结构表明,出乎意料的强多价CD8-MHC-1相互作用是非同源pMHC-1对TCR识别同源pMHC-1的协同贡献,以增强T细胞应答。从几个生产有效的TCR到许多其他TCR的CD8依赖信号的协同传播可以解释CTL对具有少量同源pMHC-1复合物的病毒感染细胞作出反应的出色能力。

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