Literature DB >> 12824194

HIV-1 p55Gag encoded in the lysosome-associated membrane protein-1 as a DNA plasmid vaccine chimera is highly expressed, traffics to the major histocompatibility class II compartment, and elicits enhanced immune responses.

Ernesto T A Marques1, Priya Chikhlikar, Luciana Barros de Arruda, Ihid C Leao, Yang Lu, Justin Wong, Juei-Suei Chen, Barry Byrne, J Thomas August.   

Abstract

Several genetic vaccines encoding antigen chimeras containing the lysosome-associated membrane protein (LAMP) translocon, transmembrane, and cytoplasmic domain sequences have elicited strong mouse antigen-specific immune responses. The increased immune response is attributed to trafficking of the antigen chimera to the major histocompatibility class II (MHC II) compartment where LAMP is colocalized with MHC II. In this report, we describe a new form of an HIV-1 p55gag DNA vaccine, with the gag sequence incorporated into the complete LAMP cDNA sequence. Gag encoded with the translocon, transmembrane and cytoplasmic lysosomal membrane targeting sequences of LAMP, without the luminal domain, was poorly expressed, did not traffic to lysosomes or MHC II compartments of transfected cells, and elicited a limited immune response from DNA immunized mice. In contrast, addition of the LAMP luminal domain sequence to the construct resulted in a high level of expression of the LAMP/Gag protein chimera in transfected cells that was further increased by including the inverted terminal repeat sequences of the adeno-associated virus to the plasmid vector. This LAMP/Gag chimera with the complete LAMP protein colocalized with endogenous MHC II of transfected cells and elicited strong cellular and humoral immune responses of immunized mice as compared with the response to DNA-encoding native Gag, with a 10-fold increase in CD4+ responses, a 4- to 5-fold increase in CD8+ T-cell responses, and antibody titers of >100,000. These results reveal novel roles of the LAMP luminal domain as a determinant of Gag protein expression, lysosomal trafficking, and possibly of the immune response to Gag.

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Year:  2003        PMID: 12824194     DOI: 10.1074/jbc.M303336200

Source DB:  PubMed          Journal:  J Biol Chem        ISSN: 0021-9258            Impact factor:   5.157


  35 in total

Review 1.  Presentation of cytosolic antigens via MHC class II molecules.

Authors:  Delu Zhou; Janice S Blum
Journal:  Immunol Res       Date:  2004       Impact factor: 2.829

2.  Expansion of HIV-specific CD4+ and CD8+ T cells by dendritic cells transfected with mRNA encoding cytoplasm- or lysosome-targeted Nef.

Authors:  Daniel G Kavanagh; Daniel E Kaufmann; Sherzana Sunderji; Nicole Frahm; Sylvie Le Gall; David Boczkowski; Eric S Rosenberg; David R Stone; Mary N Johnston; Bradford S Wagner; Mohammad T Zaman; Christian Brander; Eli Gilboa; Bruce D Walker; Nina Bhardwaj
Journal:  Blood       Date:  2005-10-25       Impact factor: 22.113

3.  IL-12 DNA as molecular vaccine adjuvant increases the cytotoxic T cell responses and breadth of humoral immune responses in SIV DNA vaccinated macaques.

Authors:  Rashmi Jalah; Vainav Patel; Viraj Kulkarni; Margherita Rosati; Candido Alicea; Brunda Ganneru; Agneta von Gegerfelt; Wensheng Huang; Yongjun Guan; Kate E Broderick; Niranjan Y Sardesai; Celia LaBranche; David C Montefiori; George N Pavlakis; Barbara K Felber
Journal:  Hum Vaccin Immunother       Date:  2012-08-16       Impact factor: 3.452

4.  Comparative analysis of antigen-targeting sequences used in DNA vaccines.

Authors:  Joana A Carvalho; Adriano R Azzoni; Duarte M F Prazeres; Gabriel A Monteiro
Journal:  Mol Biotechnol       Date:  2010-03       Impact factor: 2.695

5.  Heterologous plasmid DNA prime-recombinant human adenovirus 5 boost vaccination generates a stable pool of protective long-lived CD8(+) T effector memory cells specific for a human parasite, Trypanosoma cruzi.

Authors:  Paula Ordonhez Rigato; Bruna C de Alencar; José Ronnie C de Vasconcelos; Mariana R Dominguez; Adriano F Araújo; Alexandre V Machado; Ricardo T Gazzinelli; Oscar Bruna-Romero; Mauricio M Rodrigues
Journal:  Infect Immun       Date:  2011-02-28       Impact factor: 3.441

6.  Genomic Analysis, Phenotype, and Virulence of the Historical Brazilian Smallpox Vaccine Strain IOC: Implications for the Origins and Evolutionary Relationships of Vaccinia Virus.

Authors:  Maria Luiza G Medaglia; Nissin Moussatché; Andreas Nitsche; Pjotr Wojtek Dabrowski; Yu Li; Inger K Damon; Carolina G O Lucas; Luciana B Arruda; Clarissa R Damaso
Journal:  J Virol       Date:  2015-09-16       Impact factor: 5.103

7.  Repeated DNA therapeutic vaccination of chronically SIV-infected macaques provides additional virological benefit.

Authors:  Antonio Valentin; Agneta von Gegerfelt; Margherita Rosati; Georgios Miteloudis; Candido Alicea; Cristina Bergamaschi; Rashmi Jalah; Vainav Patel; Amir S Khan; Ruxandra Draghia-Akli; George N Pavlakis; Barbara K Felber
Journal:  Vaccine       Date:  2010-02-23       Impact factor: 3.641

Review 8.  DNA vaccines against human immunodeficiency virus type 1 in the past decade.

Authors:  Malavika Giri; Kenneth E Ugen; David B Weiner
Journal:  Clin Microbiol Rev       Date:  2004-04       Impact factor: 26.132

9.  Comparison of DNA vaccines producing HIV-1 Gag and LAMP/Gag chimera in rhesus macaques reveals antigen-specific T-cell responses with distinct phenotypes.

Authors:  Antonio Valentin; Priya Chikhlikar; Vainav Patel; Margherita Rosati; Milton Maciel; Kern-Hee Chang; Peter Silvera; Barbara K Felber; George N Pavlakis; J Thomas August; Ernesto T A Marques
Journal:  Vaccine       Date:  2009-06-17       Impact factor: 3.641

10.  Dendritic cell mediated delivery of plasmid DNA encoding LAMP/HIV-1 Gag fusion immunogen enhances T cell epitope responses in HLA DR4 transgenic mice.

Authors:  Gregory G Simon; Yongli Hu; Asif M Khan; Jingshi Zhou; Jerome Salmon; Priya R Chikhlikar; Keun-Ok Jung; Ernesto T A Marques; J Thomas August
Journal:  PLoS One       Date:  2010-01-05       Impact factor: 3.240

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