Literature DB >> 8385343

Fragmentation and dispersal of Golgi proteins and redistribution of glycoproteins and glycolipids processed through the Golgi apparatus after infection with herpes simplex virus 1.

G Campadelli1, R Brandimarti, C Di Lazzaro, P L Ward, B Roizman, M R Torrisi.   

Abstract

In Vero monkey cells and HEp-2 human epidermoid carcinoma cells infected with herpes simplex virus 1 the proteins beta-COP, galactosyltransferase, and alpha-mannosidase II associated with the Golgi apparatus appear to be associated with numerous smaller structures dispersed throughout the cytoplasm. Concomitantly, the intracytoplasmic ligands of lectins normally associated wholly (Helix pomatia or Ricinus communis agglutinin) or in part (wheat germ agglutinin) with the Golgi apparatus increased in amount and became dispersed. This phenomenon was seen in some of the baby hamster kidney cells analyzed but not in others and not in the human 143TK- cells. The fragmentation and dispersal of the Golgi apparatus was a late event in the reproductive cycle coinciding with virion assembly, processing of viral glycoproteins, and exocytosis from infected cells. The fragmentation of the Golgi apparatus is morphologically different from that seen with brefeldin A and may reflect disequilibration between the anterograde and retrograde Golgi transport caused by the huge influx of viral glycoproteins contained in virions and membranes flowing through the exocytic pathway.

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Year:  1993        PMID: 8385343      PMCID: PMC46183          DOI: 10.1073/pnas.90.7.2798

Source DB:  PubMed          Journal:  Proc Natl Acad Sci U S A        ISSN: 0027-8424            Impact factor:   11.205


  30 in total

1.  Membrane proteins specified by herpes simplex viruses. V. Identification of an Fc-binding glycoprotein.

Authors:  R B Baucke; P G Spear
Journal:  J Virol       Date:  1979-12       Impact factor: 5.103

Review 2.  Assembly of asparagine-linked oligosaccharides.

Authors:  R Kornfeld; S Kornfeld
Journal:  Annu Rev Biochem       Date:  1985       Impact factor: 23.643

3.  Monensin inhibits the processing of herpes simplex virus glycoproteins, their transport to the cell surface, and the egress of virions from infected cells.

Authors:  D C Johnson; P G Spear
Journal:  J Virol       Date:  1982-09       Impact factor: 5.103

4.  Specificity of twelve lectins towards oligosaccharides and glycopeptides related to N-glycosylproteins.

Authors:  H Debray; D Decout; G Strecker; G Spik; J Montreuil
Journal:  Eur J Biochem       Date:  1981-06

5.  Galactosyltransferase and sialyltransferase are located in different subcellular compartments in HeLa cells.

Authors:  E G Berger; M Thurnher; U Müller
Journal:  Exp Cell Res       Date:  1987-11       Impact factor: 3.905

6.  Infectivity and glycoprotein processing of herpes simplex virus type 1 grown in a ricin-resistant cell line deficient in N-acetylglucosaminyl transferase I.

Authors:  G Campadelli-Fiume; L Poletti; F Dall'Olio; F Serafini-Cessi
Journal:  J Virol       Date:  1982-09       Impact factor: 5.103

7.  Sialylated oligosaccharides O-glycosidically linked to glycoprotein C from herpes simplex virus type 1.

Authors:  F Dall'Olio; N Malagolini; V Speziali; G Campadelli-Fiume; F Serafini-Cessi
Journal:  J Virol       Date:  1985-10       Impact factor: 5.103

8.  Oligosaccharide chains of herpes simplex virus type 2 glycoprotein gG.2.

Authors:  F Serafini-Cessi; N Malagolini; F Dall'Olio; L Pereira; G Campadelli-Fiume
Journal:  Arch Biochem Biophys       Date:  1985-08-01       Impact factor: 4.013

9.  Processing of herpes simplex virus-1 glycans in cells defective in glycosyl transferases of the Golgi system: relationship to cell fusion and virion egress.

Authors:  F Serafini-Cessi; F Dall'Olio; M Scannavini; G Campadelli-Fiume
Journal:  Virology       Date:  1983-11       Impact factor: 3.616

10.  A microtubule-binding protein associated with membranes of the Golgi apparatus.

Authors:  V J Allan; T E Kreis
Journal:  J Cell Biol       Date:  1986-12       Impact factor: 10.539

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  73 in total

1.  Cytoplasmic domain of herpes simplex virus gE causes accumulation in the trans-Golgi network, a site of virus envelopment and sorting of virions to cell junctions.

Authors:  T N McMillan; D C Johnson
Journal:  J Virol       Date:  2001-02       Impact factor: 5.103

Review 2.  HSV-1-based vectors for gene therapy of neurological diseases and brain tumors: part I. HSV-1 structure, replication and pathogenesis.

Authors:  A Jacobs; X O Breakefield; C Fraefel
Journal:  Neoplasia       Date:  1999-11       Impact factor: 5.715

3.  Identification and characterization of the UL56 gene product of herpes simplex virus type 2.

Authors:  Tetsuo Koshizuka; Fumi Goshima; Hiroki Takakuwa; Naoki Nozawa; Tohru Daikoku; Osamu Koiwai; Yukihiro Nishiyama
Journal:  J Virol       Date:  2002-07       Impact factor: 5.103

4.  Compartmentalization of VP16 in cells infected with recombinant herpes simplex virus expressing VP16-green fluorescent protein fusion proteins.

Authors:  Sylvie La Boissière; Ander Izeta; Sophie Malcomber; Peter O'Hare
Journal:  J Virol       Date:  2004-08       Impact factor: 5.103

5.  Redistribution of cellular and herpes simplex virus proteins from the trans-golgi network to cell junctions without enveloped capsids.

Authors:  Todd W Wisner; David C Johnson
Journal:  J Virol       Date:  2004-11       Impact factor: 5.103

6.  Association of two membrane proteins encoded by herpes simplex virus type 2, UL11 and UL56.

Authors:  Tetsuo Koshizuka; Yasushi Kawaguchi; Fumi Goshima; Isamu Mori; Yukihiro Nishiyama
Journal:  Virus Genes       Date:  2006-04       Impact factor: 2.332

7.  UL20 protein functions precede and are required for the UL11 functions of herpes simplex virus type 1 cytoplasmic virion envelopment.

Authors:  Preston A Fulmer; Jeffrey M Melancon; Joel D Baines; Konstantin G Kousoulas
Journal:  J Virol       Date:  2007-01-10       Impact factor: 5.103

8.  Glycoprotein M of herpes simplex virus 1 is incorporated into virions during budding at the inner nuclear membrane.

Authors:  Joel D Baines; Elizabeth Wills; Robert J Jacob; Janice Pennington; Bernard Roizman
Journal:  J Virol       Date:  2006-11-01       Impact factor: 5.103

Review 9.  Golgi tubules: their structure, formation and role in intra-Golgi transport.

Authors:  Emma Martínez-Alonso; Mónica Tomás; José A Martínez-Menárguez
Journal:  Histochem Cell Biol       Date:  2013-06-29       Impact factor: 4.304

10.  Fragmentation of the Golgi apparatus of motor neurons in amyotrophic lateral sclerosis (ALS). Clinical studies in ALS of Guam and experimental studies in deafferented neurons and in beta,beta'-iminodipropionitrile axonopathy.

Authors:  Z Mourelatos; A Hirano; A C Rosenquist; N K Gonatas
Journal:  Am J Pathol       Date:  1994-06       Impact factor: 4.307

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