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量子点/肽-主要组织相容性复合体生物传感器揭示了自身抗原与病毒抗原之间强大的依赖CD8的协同作用,这种协同作用增强了T细胞反应。

Quantum dot/peptide-MHC biosensors reveal strong CD8-dependent cooperation between self and viral antigens that augment the T cell response.

作者信息

Anikeeva Nadia, Lebedeva Tatiana, Clapp Aaron R, Goldman Ellen R, Dustin Michael L, Mattoussi Hedi, Sykulev Yuri

机构信息

Department of Microbiology and Immunology and Kimmel Cancer Institute, Thomas Jefferson University, Philadelphia, PA 19107, USA.

出版信息

Proc Natl Acad Sci U S A. 2006 Nov 7;103(45):16846-51. doi: 10.1073/pnas.0607771103. Epub 2006 Oct 31.

Abstract

Cytotoxic T lymphocytes (CTL) can respond to a few viral peptide-MHC-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.

摘要

细胞毒性T淋巴细胞(CTL)能够在病毒感染细胞上展示的无数与病毒无关的内源性自身肽 - 主要组织相容性复合体I(pMHC-I)复合物中,对少数病毒肽 - MHC-I(pMHC-I)复合物作出反应。为了阐明活CTL上的分子识别事件,我们利用了一种由半导体纳米晶体量子点组成的自组装生物传感器,该传感器携带可控数量的病毒衍生(同源)和其他(非同源)pMHC-I复合物,并检测了抗病毒CD8(+) T细胞上抗原特异性T细胞受体(TCR)对它们的识别。纳米级量子点/pMHC-I缀合物的独特结构表明,非同源pMHC-I对TCR识别同源pMHC-I以增强T细胞反应的协同作用背后,存在意想不到的强大多价CD8-MHC-I相互作用。从少数有效结合的TCR到许多其他TCR的信号协同、CD8依赖性传播,可以解释CTL对呈现少数同源pMHC-I复合物的病毒感染细胞作出反应的显著能力。

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