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神经节苷脂在轮状病毒细胞进入过程中具有功能作用。

Gangliosides have a functional role during rotavirus cell entry.

机构信息

Departamento de Genética del Desarrollo y Fisiología Molecular, Instituto de Biotecnología, Universidad Nacional Autónoma de México, Cuernavaca, Morelos, Mexico.

出版信息

J Virol. 2013 Jan;87(2):1115-22. doi: 10.1128/JVI.01964-12. Epub 2012 Nov 7.

Abstract

Cell entry of rotaviruses is a complex process, which involves sequential interactions with several cell surface molecules. Among the molecules implicated are gangliosides, glycosphingolipids with one or more sialic acid (SA) residues. The role of gangliosides in rotavirus cell entry was studied by silencing the expression of two key enzymes involved in their biosynthesis--the UDP-glucose:ceramide glucosyltransferase (UGCG), which transfers a glucose molecule to ceramide to produce glucosylceramide GlcCer, and the lactosyl ceramide-α-2,3-sialyl transferase 5 (GM3-s), which adds the first SA to lactoceramide-producing ganglioside GM3. Silencing the expression of both enzymes resulted in decreased ganglioside levels (as judged by GM1a detection). Four rotavirus strains tested (human Wa, simian RRV, porcine TFR-41, and bovine UK) showed a decreased infectivity in cells with impaired ganglioside synthesis; however, their replication after bypassing the entry step was not affected, confirming the importance of gangliosides for cell entry of the viruses. Interestingly, viral binding to the cell surface was not affected in cells with inhibited ganglioside synthesis, but the infectivity of all strains tested was inhibited by preincubation of gangliosides with virus prior to infection. These data suggest that rotaviruses can attach to cell surface in the absence of gangliosides but require them for productive cell entry, confirming their functional role during rotavirus cell entry.

摘要

轮状病毒的细胞进入是一个复杂的过程,涉及与几种细胞表面分子的顺序相互作用。涉及的分子包括神经节苷脂,一种或多种唾液酸 (SA) 残基的糖脂。通过沉默参与其生物合成的两种关键酶的表达来研究神经节苷脂在轮状病毒细胞进入中的作用 - UDP-葡萄糖:神经酰胺葡萄糖基转移酶 (UGCG),将葡萄糖分子转移到神经酰胺上产生葡萄糖神经酰胺 GlcCer,以及乳糖基神经酰胺-α-2,3-唾液酸转移酶 5 (GM3-s),它将第一个 SA 添加到产生神经节苷脂 GM3 的乳糖神经酰胺上。沉默这两种酶的表达会导致神经节苷脂水平降低(通过 GM1a 检测判断)。测试的四种轮状病毒株(人 Wa、猿猴 RRV、猪 TFR-41 和牛 UK)在合成神经节苷脂受损的细胞中感染性降低;然而,它们绕过进入步骤后的复制不受影响,证实了神经节苷脂对病毒进入细胞的重要性。有趣的是,在抑制神经节苷脂合成的细胞中,病毒与细胞表面的结合不受影响,但在用病毒预先孵育神经节苷脂后,所有测试株的感染性都受到抑制。这些数据表明,轮状病毒可以在没有神经节苷脂的情况下附着在细胞表面,但需要它们才能进行有效的细胞进入,证实了它们在轮状病毒细胞进入过程中的功能作用。

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本文引用的文献

1
Rotavirus VP8*: phylogeny, host range, and interaction with histo-blood group antigens.
J Virol. 2012 Sep;86(18):9899-910. doi: 10.1128/JVI.00979-12. Epub 2012 Jul 3.
3
Spike protein VP8* of human rotavirus recognizes histo-blood group antigens in a type-specific manner.
J Virol. 2012 May;86(9):4833-43. doi: 10.1128/JVI.05507-11. Epub 2012 Feb 15.
4
Glycosphingolipids as receptors for non-enveloped viruses.
Viruses. 2010 Apr;2(4):1011-1049. doi: 10.3390/v2041011. Epub 2010 Apr 15.
5
Novel structural insights into rotavirus recognition of ganglioside glycan receptors.
J Mol Biol. 2011 Nov 11;413(5):929-39. doi: 10.1016/j.jmb.2011.09.005. Epub 2011 Sep 17.
6
8
Gangliosides in cell recognition and membrane protein regulation.
Curr Opin Struct Biol. 2009 Oct;19(5):549-57. doi: 10.1016/j.sbi.2009.06.001. Epub 2009 Jul 14.
9
A lipid receptor sorts polyomavirus from the endolysosome to the endoplasmic reticulum to cause infection.
PLoS Pathog. 2009 Jun;5(6):e1000465. doi: 10.1371/journal.ppat.1000465. Epub 2009 Jun 5.

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