Patterns of Diversity and Humoral Immunogenicity for HIV-1 Antisense Protein (ASP)

被引:1
|
作者
Caetano, Diogo Gama [1 ]
Napoleao-Pego, Paloma [2 ]
Villela, Larissa Melo [2 ]
Cortes, Fernanda Heloise [1 ]
Cardoso, Sandra Wagner [3 ]
Hoagland, Brenda [3 ]
Grinsztejn, Beatriz [3 ]
Veloso, Valdilea Goncalves [3 ]
De-Simone, Salvatore Giovanni [2 ,4 ,5 ]
Guimaraes, Monick Lindenmeyer [1 ]
机构
[1] Fundacao Oswaldo Cruz, Oswaldo Cruz Inst, AIDS & Mol Immunol Lab, BR-21040360 Rio De Janeiro, Brazil
[2] Fundacao Oswaldo Cruz, Oswaldo Cruz Inst, Epidemiol & Mol Systemat Lab LEMS, BR-21040360 Rio De Janeiro, Brazil
[3] Fundacao Oswaldo Cruz, Inst Nacl Infectol Evandro Chagas, BR-21040360 Rio De Janeiro, Brazil
[4] Fundacao Oswaldo Cruz, Natl Inst Sci & Technol Innovat Neglected Populat, Ctr Technol Dev Hlth CDTS, BR-21040900 Rio De Janeiro, Brazil
[5] Fed Fluminense Univ, Biol Inst, Dept Mol & Cellular Biol, Program Postgrad Sci & Biotechnol, BR-22040036 Niteroi, Brazil
关键词
HIV-1; ASP; antisense protein; subtypes; humoral response; HUMAN-IMMUNODEFICIENCY-VIRUS; IDENTIFICATION; EPITOPES; PROMOTER; STRAND; CELLS; GENE; DNA;
D O I
10.3390/vaccines12070771
中图分类号
R392 [医学免疫学]; Q939.91 [免疫学];
学科分类号
100102 ;
摘要
HIV-1 has an antisense gene overlapping env that encodes the ASP protein. ASP functions are still unknown, but it has been associated with gp120 in the viral envelope and membrane of infected cells, making it a potential target for immune response. Despite this, immune response patterns against ASP are poorly described and can be influenced by the high genetic variability of the env gene. To explore this, we analyzed 100k HIV-1 ASP sequences from the Los Alamos HIV sequence database using phylogenetic, Shannon entropy (Hs), and logo tools to study ASP variability in worldwide and Brazilian sequences from the most prevalent HIV-1 subtypes in Brazil (B, C, and F1). Data obtained in silico guided the design and synthesis of 15-mer overlapping peptides through spot synthesis on cellulose membranes. Peptide arrays were screened to assess IgG and IgM responses in pooled plasma samples from HIV controllers and individuals with acute or recent HIV infection. Excluding regions with low alignment accuracy, several sites with higher variability (Hs > 1.5) were identified among the datasets (25 for worldwide sequences, 20 for Brazilian sequences). Among sites with Hs < 1.5, sequence logos allowed the identification of 23 other sites with subtype-specific signatures. Altogether, amino acid variations with frequencies > 20% in the 48 variable sites identified were included in 92 peptides, divided into 15 sets, representing near full-length ASP. During the immune screening, the strongest responses were observed in three sets, one in the middle and one at the C-terminus of the protein. While some sets presented variations potentially associated with epitope displacement between IgG and IgM targets and subtype-specific signatures appeared to impact the level of response for some peptides, signals of cross-reactivity were observed for some sets despite the presence of B/C/F1 signatures. Our data provides a map of ASP regions preferentially targeted by IgG and IgM responses. Despite B/C/F1 subtype signatures in ASP, the amino acid variation in some areas preferentially targeted by IgM and IgG did not negatively impact the response against regions with higher immunogenicity.
引用
收藏
页数:17
相关论文
共 50 条
  • [21] Creation of the HIV-1 antisense gene asp coincided with the emergence of the pandemic group M and is associated with faster disease progression
    Pavesi, Angelo
    Romerio, Fabio
    MICROBIOLOGY SPECTRUM, 2024, 12 (02):
  • [22] Polyvalent vaccine approaches to combat HIV-1 diversity
    Korber, Bette
    Hraber, Peter
    Wagh, Kshitij
    Hahn, Beatrice H.
    IMMUNOLOGICAL REVIEWS, 2017, 275 (01) : 230 - 244
  • [23] Update on HIV-1 Diversity in Africa: A Decade in Review
    Lihana, Raphael W.
    Ssemwanga, Deogratius
    Abimiku, Alash'le
    Ndembi, Nicaise
    AIDS REVIEWS, 2012, 14 (02) : 83 - 100
  • [24] Genetic Diversity of HIV-1 in Tunisia
    El Moussi, Awatef
    Thomson, Michael M.
    Delgado, Elena
    Teresa Cuevas, Maria
    Nasr, Majda
    Abid, Salma
    Kacem, Mohamed Ali Ben Hadj
    Tiouiri, Hanene Benaissa
    Letaief, Amel
    Chakroun, Mohamed
    Ben Jemaa, Mounir
    Hamdouni, Hayet
    Dellagi, Rafla Tej
    Kheireddine, Khaled
    Boutiba, Ilhem
    Perez-Alvarez, Lucia
    Slim, Amine
    AIDS RESEARCH AND HUMAN RETROVIRUSES, 2017, 33 (01) : 77 - 81
  • [25] Dissecting the Dynamics of HIV-1 Protein Sequence Diversity
    Hu, Yongli
    Tan, Paul ThiamJoo
    Tan, Tin Wee
    August, J. Thomas
    Khan, Asif M.
    PLOS ONE, 2013, 8 (04):
  • [26] HIV-1 RNAs: sense and antisense, large mRNAs and small siRNAs and miRNAs
    Harwig, Alex
    Das, Atze T.
    Berkhout, Ben
    CURRENT OPINION IN HIV AND AIDS, 2015, 10 (02) : 103 - 109
  • [27] HIV-1 drug resistance and genetic diversity in a cohort of people with HIV-1 in Nigeria
    Oluniyi, Paul E.
    Ajogbasile, Fehintola, V
    Zhou, Shuntai
    Fred-Akintunwa, Iyanuoluwa
    Polyak, Christina S.
    Ake, Julie A.
    Tovanabutra, Sodsai
    Iroezindu, Michael
    Rolland, Morgane
    Happi, Christian T.
    AIDS, 2022, 36 (01) : 137 - 146
  • [28] Inhibition of the trans-activation of HIV-1 Tat protein by antisense polyTAR
    Bai, LC
    Yuan, JG
    Yin, B
    Qiang, BQ
    PROGRESS IN NATURAL SCIENCE, 1997, 7 (03) : 310 - 315
  • [29] Inhibition of the trans-activation of HIV-1 Tat protein by antisense polyTAR
    白龙川
    袁建刚
    阴彬
    强伯勤
    Progress in Natural Science, 1997, (03) : 56 - 61
  • [30] The antisense protein of HTLV-2 positively modulates HIV-1 replication
    Cynthia Torresilla
    Sonia Do Carmo
    Émilie Larocque
    Estelle Douceron
    Jean-Michel Mesnard
    Renaud Mahieux
    Benoit Barbeau
    Retrovirology, 11 (Suppl 1)