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来自鲑鱼病毒性出血性败血症弹状病毒的蛋白G片段在低pH值下诱导细胞间融合和膜磷脂酰丝氨酸易位。

A protein G fragment from the salmonid viral hemorrhagic septicemia rhabdovirus induces cell-to-cell fusion and membrane phosphatidylserine translocation at low pH.

作者信息

Estepa A M, Rocha A I, Mas V, Pérez L, Encinar J A, Nuñez E, Fernandez A, Gonzalez Ros J M, Gavilanes F, Coll J M

机构信息

Centro Biologia Molecular y Celular, Universidad Miguel Hernandez, Elche, Spain 03202.

出版信息

J Biol Chem. 2001 Dec 7;276(49):46268-75. doi: 10.1074/jbc.M108682200. Epub 2001 Oct 4.

Abstract

The fusion-related properties of segments p9, p3, p4, and p9 + p2 surrounding the p2 phospholipid-binding domain of the protein G (pG) of the salmonid rhabdovirus of viral hemorrhagic septicemia (VHS) (Nuñez, E., Fernandez, A. M., Estepa, A., Gonzalez-Ros, J. M., Gavilanes, F., and Coll, J. M. (1998) Virology 243, 322-330; Estepa, A., and Coll, J. M. (1996) Virology 216, 60-70), have been studied at neutral and fusion (low) pH values by using its derived peptides. Cell-to-cell fusion, translocation of phosphatidylserine, and inhibition of fusion of pG-transfected cells defined the p9 + p2 (fragment 11, sequence 56-110) as a fragment with higher specific activity for anionic phospholipid aggregation than the previously reported p2. While fragment 11, p2, and p3 showed interactions with anionic phospholipids, p9 and p4 showed no interactions with any phospholipids. When added to a cell monolayer model at low pH, fragment 11 induced pH-dependent cell-to-cell fusion and translocated phosphatidylserine from the inner to the outer leaflet of the membrane. At low pH and in the presence of anionic phospholipids, fragment 11 showed more than 80% beta-sheet conformation (IR and CD spectroscopies). Finally, anti-fragment 11 antibodies inhibited low pH-dependent pG-transfected cell-to-cell fusion. All of the data support the conclusion that fragment 11 is a primary determinant of some of the viral cell fusion events in VHSV.

摘要

通过使用其衍生肽,在中性和融合(低)pH值条件下,研究了病毒性出血性败血症(VHS)的鲑鱼弹状病毒的蛋白G(pG)的p2磷脂结合结构域周围的片段p9、p3、p4和p9 + p2的融合相关特性(努涅斯,E.,费尔南德斯,A.M.,埃斯特帕,A.,冈萨雷斯 - 罗斯,J.M.,加维兰斯,F.,和科尔,J.M.(1998年)《病毒学》243,322 - 330;埃斯特帕,A.,和科尔,J.M.(1996年)《病毒学》216,60 - 70)。细胞间融合、磷脂酰丝氨酸的转位以及对pG转染细胞融合的抑制作用将p9 + p2(片段11,序列56 - 110)定义为一种片段,其对阴离子磷脂聚集的比活性高于先前报道的p2。虽然片段11、p2和p3显示出与阴离子磷脂的相互作用,但p9和p4未显示出与任何磷脂的相互作用。当在低pH值下添加到细胞单层模型中时,片段11诱导pH依赖性的细胞间融合,并使磷脂酰丝氨酸从膜的内小叶转位到外小叶。在低pH值且存在阴离子磷脂的情况下,片段11显示出超过80%的β - 折叠构象(红外和圆二色光谱)。最后,抗片段11抗体抑制了低pH依赖性的pG转染细胞间融合。所有数据均支持片段11是VHSV中某些病毒细胞融合事件的主要决定因素这一结论。

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