Chronic encephalomyelitis virus exhibits cellular tropism and evades pDCs by binding to sialylated integrins as the cell surface receptors

慢性脑脊髓炎病毒表现出细胞趋向性,通过与唾液酸化整合素结合作为细胞表面受体来逃避 pDC

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作者:Kazuya Takeda, Tomonori Kaifu, Ryunosuke Michihata, Naotaka Kinugawa, Atushi Fujioka, Ayaka Tateno, Kaoru Toshima, Hirotaka Kanoh, Kei-Ichiro Inamori, Keiju Kamijo, Toshiki Himeda, Yoshiro Ohara, Jin-Ichi Inokuchi, Akira Nakamura

Abstract

Theiler's murine encephalomyelitis virus (TMEV) causes a chronic demyelinating disease similar to multiple sclerosis in mice. Although sialic acids have been shown to be essential for TMEV attachment to the host, the surface receptor has not been identified. While type I interferons play a pivotal role in the elimination of the chronic infectious Daniel (DA) strain, the role of plasmacytoid dendritic cells (pDCs) is controversial. We herein found that TMEV binds to conventional DCs but not to pDCs. A glycomics analysis showed that the sialylated N-glycan fractions were lower in pDCs than in conventional DCs, indicating that pDCs are not susceptible to TMEV infection due to the low levels of sialic acid. TMEV capsid proteins contain an integrin recognition motif, and dot blot assays showed that the integrin proteins bind to TMEV and that the viral binding was reduced in the desialylated αX β2 . αX β2 protein suppressed TMEV replication in vivo, and TMEV co-localized with integrin αM at the cell membrane and TLR 3 in the cytoplasm, suggesting that αM serves as the viral attachment and entry. These results show that the chronic encephalomyelitis virus utilizes sialylated integrins as cell surface receptors, leading to cellular tropism to evade pDC activation.

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