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有袋目 MHC I 类分子肽段展示了与蝙蝠平行的低等哺乳动物的免疫特征。

Peptide Presentations of Marsupial MHC Class I Visualize Immune Features of Lower Mammals Paralleled with Bats.

机构信息

School of Laboratory Medicine and Life Sciences, Wenzhou Medical University, Wenzhou, China.

NHC Key Laboratory of Biosafety, National Institute for Viral Disease Control and Prevention, Chinese Center for Disease Control and Prevention, Beijing, China.

出版信息

J Immunol. 2021 Oct 15;207(8):2167-2178. doi: 10.4049/jimmunol.2100350. Epub 2021 Sep 17.

DOI:10.4049/jimmunol.2100350
PMID:34535575
Abstract

Marsupials are one of three major mammalian lineages that include the placental eutherians and the egg-laying monotremes. The marsupial brushtail possum is an important protected species in the Australian forest ecosystem. Molecules encoded by the MHC genes are essential mediators of adaptive immune responses in virus-host interactions. Yet, nothing is known about the peptide presentation features of any marsupial MHC class I (MHC I). This study identified a series of possum MHC I Trvu-UB01:01 binding peptides derived from wobbly possum disease virus (WPDV), a lethal virus of both captive and feral possum populations, and unveiled the structure of marsupial peptide/MHC I complex. Notably, we found the two brushtail possum-specific insertions, the 3-aa IleGluArg and 1-aa Arg insertions are located in the Trvu-UB01:01 peptide binding groove (PBG). The 3-aa insertion plays a pivotal role in maintaining the stability of the N terminus of Trvu-UB01:01 PBG. This aspect of marsupial PBG is unexpectedly similar to the bat MHC I Ptal-N01:01 and is shared with lower vertebrates from elasmobranch to monotreme, indicating an evolution hotspot that may have emerged from the pathogen-host interactions. Residue Arg insertion, located in the α2 helix, is available for TCR recognition, and it has a particular influence on promoting the anchoring of peptide WPDV-12. These findings add significantly to our understanding of adaptive immunity in marsupials and its evolution in vertebrates. Our findings have the potential to impact the conservation of the protected species brushtail possum and other marsupial species.

摘要

有袋类动物是包括胎盘真兽类和卵生单孔类动物在内的三大哺乳动物谱系之一。袋貂 Brush-tailed Possum 是澳大利亚森林生态系统中一种重要的受保护物种。MHC 基因编码的分子是病毒-宿主相互作用中适应性免疫反应的重要介质。然而,对于任何有袋类 MHC I(MHC I)的肽呈递特征,人们一无所知。本研究鉴定了一系列袋貂 MHC I Trvu-UB01:01 结合肽,这些肽源自 wobblies 袋貂病毒(WPDV),WPDV 是一种对圈养和野生袋貂种群均致命的病毒,并揭示了袋貂肽/MHC I 复合物的结构。值得注意的是,我们发现了两个袋貂特异性插入,即 3-aa IleGluArg 和 1-aa Arg 插入,位于 Trvu-UB01:01 肽结合槽(PBG)中。3-aa 插入在维持 Trvu-UB01:01 PBG 的 N 端稳定性方面起着关键作用。袋貂 PBG 的这一方面出乎意料地类似于蝙蝠 MHC I Ptal-N01:01,并与从鲨鱼到单孔类动物的更低等脊椎动物共享,表明这是一个可能源于病原体-宿主相互作用的进化热点。位于 α2 螺旋中的残基 Arg 插入可用于 TCR 识别,并且对促进肽 WPDV-12 的锚定具有特殊影响。这些发现极大地增加了我们对有袋动物适应性免疫及其在脊椎动物中的进化的理解。我们的发现有可能影响受保护物种袋貂 Brush-tailed Possum 和其他有袋类物种的保护。

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