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与TCRβ链结合的两种链球菌超抗原的结构揭示了T细胞信号复合物结构的多样性。

Structures of two streptococcal superantigens bound to TCR beta chains reveal diversity in the architecture of T cell signaling complexes.

作者信息

Sundberg Eric J, Li Hongmin, Llera Andrea S, McCormick John K, Tormo José, Schlievert Patrick M, Karjalainen Klaus, Mariuzza Roy A

机构信息

Center for Advanced Research in Biotechnology, W.M. Keck Laboratory for Structural Biology, University of Maryland Biotechnology Institute, 9600 Gudelsky Drive, Rockville, MD 20850, USA.

出版信息

Structure. 2002 May;10(5):687-99. doi: 10.1016/s0969-2126(02)00759-1.

Abstract

Superantigens (SAGs) crosslink MHC class II and TCR molecules, resulting in an overstimulation of T cells associated with human disease. SAGs interact with several different surfaces on MHC molecules, necessitating the formation of multiple distinct MHC-SAG-TCR ternary signaling complexes. Variability in SAG-TCR binding modes could also contribute to the structural heterogeneity of SAG-dependent signaling complexes. We report crystal structures of the streptococcal SAGs SpeA and SpeC in complex with their corresponding TCR beta chain ligands that reveal distinct TCR binding modes. The SpeC-TCR beta chain complex structure, coupled with the recently determined SpeC-HLA-DR2a complex structure, provides a model for a novel T cell signaling complex that precludes direct TCR-MHC interactions. Thus, highly efficient T cell activation may be achieved through structurally diverse strategies of TCR ligation.

摘要

超抗原(SAGs)使MHC II类分子和TCR分子交联,导致与人类疾病相关的T细胞过度刺激。SAGs与MHC分子上的几个不同表面相互作用,需要形成多个不同的MHC-SAG-TCR三元信号复合物。SAG-TCR结合模式的变异性也可能导致SAG依赖性信号复合物的结构异质性。我们报告了链球菌SAGs SpeA和SpeC与其相应的TCRβ链配体复合物的晶体结构,这些结构揭示了不同的TCR结合模式。SpeC-TCRβ链复合物结构,加上最近确定的SpeC-HLA-DR2a复合物结构,为一种新型T细胞信号复合物提供了模型,该复合物排除了TCR与MHC的直接相互作用。因此,通过TCR连接的结构多样策略可以实现高效的T细胞激活。

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