Literature DB >> 25810553

African Swine Fever Virus Georgia Isolate Harboring Deletions of MGF360 and MGF505 Genes Is Attenuated in Swine and Confers Protection against Challenge with Virulent Parental Virus.

Vivian O'Donnell1, Lauren G Holinka2, Douglas P Gladue1, Brenton Sanford2, Peter W Krug2, Xiqiang Lu3, Jonathan Arzt2, Bo Reese4, Consuelo Carrillo5, Guillermo R Risatti6, Manuel V Borca7.   

Abstract

UNLABELLED: African swine fever virus (ASFV) is the etiological agent of a contagious and often lethal disease of domestic pigs that has significant economic consequences for the swine industry. The control of African swine fever (ASF) has been hampered by the unavailability of vaccines. Experimental vaccines have been developed using genetically modified live attenuated ASFVs where viral genes involved in virus virulence were removed from the genome. Multigene family 360 (MGF360) and MGF505 represent a group of genes sharing partial sequence and structural identities that have been connected with ASFV host range specificity, blocking of the host innate response, and virus virulence. Here we report the construction of a recombinant virus (ASFV-G-ΔMGF) derived from the highly virulent ASFV Georgia 2007 isolate (ASFV-G) by specifically deleting six genes belonging to MGF360 or MGF505: MGF505-1R, MGF360-12L, MGF360-13L, MGF360-14L, MGF505-2R, and MGF505-3R. ASFV-G-ΔMGF replicates as efficiently in primary swine macrophage cell cultures as the parental virus. In vivo, ASFV-G-ΔMGF is completely attenuated in swine, since pigs inoculated intramuscularly (i.m.) with either 10(2) or 10(4) 50% hemadsorbing doses (HAD50) remained healthy, without signs of the disease. Importantly, when these animals were subsequently exposed to highly virulent parental ASFV-G, no signs of the disease were observed, although a proportion of these animals harbored the challenge virus. This is the first report demonstrating the role of MGF genes acting as independent determinants of ASFV virulence. Additionally, ASFV-G-ΔMGF is the first experimental vaccine reported to induce protection in pigs challenged with highly virulent and epidemiologically relevant ASFV-G. IMPORTANCE: The main problem for controlling ASF is the lack of vaccines. Studies focusing on understanding ASFV virulence led to the production of genetically modified recombinant viruses that, while attenuated, are able to confer protection in pigs challenged with homologous viruses. Here we have produced an attenuated recombinant ASFV derived from highly virulent ASFV strain Georgia (ASFV-G) lacking only six of the multigene family 360 (MGF360) and MGF505 genes (ASFV-G-ΔMGF). It is demonstrated, by first time, that deleting specific MGF genes alone can completely attenuate a highly virulent field ASFV isolate. Recombinant virus ASFV-G-ΔMGF effectively confers protection in pigs against challenge with ASFV-G when delivered once via the intramuscular (i.m.) route. The protection against ASFV-G is highly effective by 28 days postvaccination. This is the first report of an experimental vaccine that induces solid protection against virulent ASFV-G.
Copyright © 2015, American Society for Microbiology. All Rights Reserved.

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Year:  2015        PMID: 25810553      PMCID: PMC4442422          DOI: 10.1128/JVI.00554-15

Source DB:  PubMed          Journal:  J Virol        ISSN: 0022-538X            Impact factor:   5.103


  34 in total

1.  African swine fever virus multigene family 360 and 530 genes are novel macrophage host range determinants.

Authors:  L Zsak; Z Lu; T G Burrage; J G Neilan; G F Kutish; D M Moore; D L Rock
Journal:  J Virol       Date:  2001-04       Impact factor: 5.103

2.  Novel swine virulence determinant in the left variable region of the African swine fever virus genome.

Authors:  J G Neilan; L Zsak; Z Lu; G F Kutish; C L Afonso; D L Rock
Journal:  J Virol       Date:  2002-04       Impact factor: 5.103

3.  African swine fever virus. Pathogenesis.

Authors:  L Coggins
Journal:  Prog Med Virol       Date:  1974

4.  Titration of African swine fever (ASF) virus.

Authors:  L Enjuanes; A L Carrascosa; M A Moreno; E Viñuela
Journal:  J Gen Virol       Date:  1976-09       Impact factor: 3.891

5.  Characterization of pathogenic and non-pathogenic African swine fever virus isolates from Ornithodoros erraticus inhabiting pig premises in Portugal.

Authors:  F S Boinas; G H Hutchings; L K Dixon; P J Wilkinson
Journal:  J Gen Virol       Date:  2004-08       Impact factor: 3.891

6.  Characterization and molecular basis of heterogeneity of the African swine fever virus envelope protein p54.

Authors:  F Rodriguez; C Alcaraz; A Eiras; R J Yáñez; J M Rodriguez; C Alonso; J F Rodriguez; J M Escribano
Journal:  J Virol       Date:  1994-11       Impact factor: 5.103

7.  African swine fever virus multigene family 360 genes affect virus replication and generalization of infection in Ornithodoros porcinus ticks.

Authors:  T G Burrage; Z Lu; J G Neilan; D L Rock; L Zsak
Journal:  J Virol       Date:  2004-03       Impact factor: 5.103

8.  African swine fever virus multigene family 360 and 530 genes affect host interferon response.

Authors:  C L Afonso; M E Piccone; K M Zaffuto; J Neilan; G F Kutish; Z Lu; C A Balinsky; T R Gibb; T J Bean; L Zsak; D L Rock
Journal:  J Virol       Date:  2004-02       Impact factor: 5.103

9.  Neutralizing antibodies to African swine fever virus proteins p30, p54, and p72 are not sufficient for antibody-mediated protection.

Authors:  J G Neilan; L Zsak; Z Lu; T G Burrage; G F Kutish; D L Rock
Journal:  Virology       Date:  2004-02-20       Impact factor: 3.616

Review 10.  Regulation of apoptosis in African swine fever virus-infected macrophages.

Authors:  Laszlo Zsak; John G Neilan
Journal:  ScientificWorldJournal       Date:  2002-05-03
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  92 in total

1.  Simultaneous Deletion of the 9GL and UK Genes from the African Swine Fever Virus Georgia 2007 Isolate Offers Increased Safety and Protection against Homologous Challenge.

Authors:  Vivian O'Donnell; Guillermo R Risatti; Lauren G Holinka; Peter W Krug; Jolene Carlson; Lauro Velazquez-Salinas; Paul A Azzinaro; Douglas P Gladue; Manuel V Borca
Journal:  J Virol       Date:  2016-12-16       Impact factor: 5.103

2.  A novel function of African Swine Fever Virus pE66L in inhibition of host translation by the PKR/eIF2α pathway.

Authors:  Zhou Shen; Chen Chen; Yilin Yang; Zhenhua Xie; Qingying Ao; Lu Lv; Shoufeng Zhang; Huanchun Chen; Rongliang Hu; Hongjun Chen; Guiqing Peng
Journal:  J Virol       Date:  2020-12-16       Impact factor: 5.103

Review 3.  Unraveling the Armor of a Killer: Evasion of Host Defenses by African Swine Fever Virus.

Authors:  Ana Luisa Reis; Chris Netherton; Linda K Dixon
Journal:  J Virol       Date:  2017-02-28       Impact factor: 5.103

4.  Deletion of the A137R Gene from the Pandemic Strain of African Swine Fever Virus Attenuates the Strain and Offers Protection against the Virulent Pandemic Virus.

Authors:  Douglas P Gladue; Elizabeth Ramirez-Medina; Elizabeth Vuono; Ediane Silva; Ayushi Rai; Sarah Pruitt; Nallely Espinoza; Lauro Velazquez-Salinas; Manuel V Borca
Journal:  J Virol       Date:  2021-08-18       Impact factor: 5.103

5.  A Cell Culture-Adapted Vaccine Virus against the Current African Swine Fever Virus Pandemic Strain.

Authors:  M V Borca; A Rai; E Ramirez-Medina; E Silva; L Velazquez-Salinas; E Vuono; S Pruitt; N Espinoza; D P Gladue
Journal:  J Virol       Date:  2021-06-24       Impact factor: 5.103

6.  ASFV-G-∆I177L as an Effective Oral Nasal Vaccine against the Eurasia Strain of Africa Swine Fever.

Authors:  Manuel V Borca; Elizabeth Ramirez-Medina; Ediane Silva; Elizabeth Vuono; Ayushi Rai; Sarah Pruitt; Nallely Espinoza; Lauro Velazquez-Salinas; Cyril G Gay; Douglas P Gladue
Journal:  Viruses       Date:  2021-04-27       Impact factor: 5.048

7.  African Swine Fever Virus MGF-110-9L-deficient Mutant Has Attenuated Virulence in Pigs.

Authors:  Dan Li; Yinguang Liu; Xiaolan Qi; Yuan Wen; Pan Li; Zhao Ma; Yongjie Liu; Haixue Zheng; Zhijie Liu
Journal:  Virol Sin       Date:  2021-03-10       Impact factor: 4.327

8.  Thoughts on African Swine Fever Vaccines.

Authors:  Daniel L Rock
Journal:  Viruses       Date:  2021-05-20       Impact factor: 5.048

9.  The Role of Interleukine-10 and Interferon-γ as Potential Markers of the Evolution of African Swine Fever Virus Infection in Wild Boar.

Authors:  Sandra Barroso-Arévalo; Jose A Barasona; Estefanía Cadenas-Fernández; Jose M Sánchez-Vizcaíno
Journal:  Pathogens       Date:  2021-06-15

10.  The first genotype II African swine fever virus isolated in Africa provides insight into the current Eurasian pandemic.

Authors:  Emma P Njau; Jean-Baka Domelevo Entfellner; Eunice M Machuka; Edwina N Bochere; Sarah Cleaveland; Gabriel M Shirima; Lughano J Kusiluka; Chris Upton; Richard P Bishop; Roger Pelle; Edward A Okoth
Journal:  Sci Rep       Date:  2021-06-22       Impact factor: 4.379

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