The herpes simplex virus UL20 protein functions in glycoprotein K (gK) intracellular transport and virus-induced cell fusion are independent of UL20 functions in cytoplasmic virion envelopment

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作者
Jeffrey M Melancon
Preston A Fulmer
Konstantin G Kousoulas
机构
[1] Louisiana State University,Division of Biotechnology and Molecular Medicine, School of Veterinary Medicine
来源
Virology Journal | / 4卷
关键词
Intracellular Transport; Trans Golgi Network; UL20 Gene; Herpes Simplex Virus; Viral Plaque;
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摘要
The HSV-1 UL20 protein (UL20p) and glycoprotein K (gK) are both important determinants of cytoplasmic virion morphogenesis and virus-induced cell fusion. In this manuscript, we examined the effect of UL20 mutations on the coordinate transport and Trans Golgi Network (TGN) localization of UL20p and gK, virus-induced cell fusion and infectious virus production. Deletion of 18 amino acids from the UL20p carboxyl terminus (UL20 mutant 204t) inhibited intracellular transport and cell-surface expression of both gK and UL20, resulting in accumulation of UL20p and gK in the endoplasmic reticulum (ER) in agreement with the inability of 204t to complement UL20-null virus replication and virus-induced cell fusion. In contrast, less severe carboxyl terminal deletions of either 11 or six amino acids (UL20 mutants 211t and 216t, respectively) allowed efficient UL20p and gK intracellular transport, cell-surface expression and TGN colocalization. However, while both 211t and 216t failed to complement for infectious virus production, 216t complemented for virus-induced cell fusion, but 211t did not. These results indicated that the carboxyl terminal six amino acids of UL20p were crucial for infectious virus production, but not involved in intracellular localization of UL20p/gK and concomitant virus-induced cell fusion. In the amino terminus of UL20, UL20p mutants were produced changing one or both of the Y38 and Y49 residues found within putative phosphorylation sites. UL20p tyrosine-modified mutants with both tyrosine residues changed enabled efficient intracellular transport and TGN localization of UL20p and gK, but failed to complement for either infectious virus production, or virus-induced cell fusion. These results show that UL20p functions in cytoplasmic envelopment are separable from UL20 functions in UL20p intracellular transport, cell surface expression and virus-induced cell fusion.
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[11]  
Granzow H(1984)Nucleotide sequence of a region of the herpes simplex virus type 1 gB glycoprotein gene: mutations affecting rate of virus entry and cell fusion Virology 137 185-190
[12]  
Baines JD(1985)Anatomy of the herpes simplex virus 1 strain F glycoprotein B gene: primary sequence and predicted protein structure of the wild type and of monoclonal antibody-resistant mutants J Virol 53 243-253
[13]  
Ward PL(1984)Fine structure physical map locations of alterations that affect cell fusion in herpes simplex virus type 1 Virology 132 368-376
[14]  
Campadelli-Fiume G(1985)Nucleotide sequence of a herpes simplex virus type 1 gene that causes cell fusion Virology 145 36-48
[15]  
Roizman B(1992)Identification and characterization of a novel herpes simplex virus glycoprotein, gK, involved in cell fusion J Virol 66 5603-5609
[16]  
MacLean CA(1984)Fine mapping of mutations in the fusion-inducing MP strain of herpes simplex virus type 1 Virology 136 100-109
[17]  
Efstathiou S(1979)Molecular genetics of herpes simplex virus. II. Mapping of the major viral glycoproteins and of the genetic loci specifying the social behavior of infected cells J Virol 29 677-697
[18]  
Elliott ML(1999)Genetic analysis of the role of herpes simplex virus type 1 glycoprotein K in infectious virus production and egress J Virol 73 8457-8468
[19]  
Jamieson FE(1997)The UL20 gene product of pseudorabies virus functions in virus egress J Virol 71 5639-5646
[20]  
McGeoch DJ(1995)Herpes simplex virus glycoprotein K promotes egress of virus particles J Virol 69 5401-5413