Unexpected synergistic HIV neutralization by a triple microbicide produced in rice endosperm

被引:31
作者
Vamvaka, Evangelia [1 ,10 ]
Farre, Gemma [1 ]
Molinos-Albert, Luis M. [2 ,11 ]
Evans, Abbey [3 ]
Canela-Xandri, Anna [1 ]
Twyman, Richard M. [4 ]
Carrillo, Jorge [2 ]
Ordonez, Raziel A. [1 ,12 ]
Shattock, Robin J. [3 ]
O'Keefe, Barry R. [5 ,6 ]
Clotet, Bonaventura [2 ,7 ]
Blanco, Julian [2 ,7 ]
Khush, Gurdev S. [8 ]
Christou, Paul [1 ,9 ]
Capell, Teresa [1 ]
机构
[1] Univ Lleida, Agrotecnio Ctr, Sch Agrifood & Forestry Sci & Engn, Dept Plant Prod & Forestry Sci, Lleida 25198, Spain
[2] Germans Trias & Pujol Univ Hosp, Inst Recerca Germans Trias & Pujol, IrsiCaixa AIDS Res Inst, Barcelona 08916, Spain
[3] Imperial Coll London, Dept Med, London W2 1PG, England
[4] TRM Ltd, Scarborough YO11 9FJ, England
[5] NCI, Mol Targets Lab, Ctr Canc Res, NIH, Ft Detrick, MD 21702 USA
[6] NCI, Nat Prod Branch, Dev Therapeut Program, Div Canc Treatment & Diag,NIH, Ft Detrick, MD 21702 USA
[7] Univ Vic Cent Univ Catalonia, Chair AIDS & Related Dis, Barcelona 08500, Spain
[8] Univ Calif Davis, Dept Plant Sci, Davis, CA 95616 USA
[9] Catalan Inst Res & Adv Studies ICREA, Barcelona 08010, Spain
[10] Univ Calif Berkeley, Dept Plant & Microbial Biol, Berkeley, CA 94720 USA
[11] Inst Pasteur, Dept Immunol, Lab Humoral Response Pathogens, F-75015 Paris, France
[12] Iowa State Univ, Dept Agron, Ames, IA 50011 USA
关键词
HIV combination microbicides; plant-made pharmaceuticals; Oryza sativa; gp120; binding; rice globulins; IMMUNODEFICIENCY-VIRUS TYPE-1; GP120 ENVELOPE GLYCOPROTEIN; SEED-DERIVED EXPLANTS; CYANOVIRIN-N; INACTIVATING PROTEIN; PARTICLE BOMBARDMENT; ANTIBODY; 2G12; HIV-1-INFECTED HUMANS; TRANSGENE INTEGRATION; ECONOMIC-EVALUATION;
D O I
10.1073/pnas.1806022115
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
The transmission of HIV can be prevented by the application of neutralizing monoclonal antibodies and lectins. Traditional recombinant protein manufacturing platforms lack sufficient capacity and are too expensive for developing countries, which suffer the greatest disease burden. Plants offer an inexpensive and scalable alternative manufacturing platform that can produce multiple components in a single plant, which is important because multiple components are required to avoid the rapid emergence of HIV-1 strains resistant to single microbicides. Furthermore, crude extracts can be used directly for prophylaxis to avoid the massive costs of downstream processing and purification. We investigated whether rice could simultaneously produce three functional HIV-neutralizing proteins (the monoclonal antibody 2G12, and the lectins griffithsin and cyanovirin-N). Preliminary in vitro tests showed that the cocktail of three proteins bound to gp120 and achieved HIV-1 neutralization. Remarkably, when we mixed the components with crude extracts of wild-type rice endosperm, we observed enhanced binding to gp120 in vitro and synergistic neutralization when all three components were present. Extracts of transgenic plants expressing all three proteins also showed enhanced in vitro binding to gp120 and synergistic HIV-1 neutralization. Fractionation of the rice extracts suggested that the enhanced gp120 binding was dependent on rice proteins, primarily the globulin fraction. Therefore, the production of HIV-1 microbicides in rice may not only reduce costs compared to traditional platforms but may also provide functional benefits in terms of microbicidal potency.
引用
收藏
页码:E7854 / E7862
页数:9
相关论文
共 82 条
[1]   The lectins griffithsin, cyanovirin-N and scytovirin inhibit HIV-1 binding to the DC-SIGN receptor and transfer to CD4+ cells [J].
Alexandre, Kabamba B. ;
Gray, Elin S. ;
Mufhandu, Hazel ;
McMahon, James B. ;
Chakauya, Ereck ;
O'Keefe, Barry R. ;
Chikwamba, Rachel ;
Morris, Lynn .
VIROLOGY, 2012, 423 (02) :175-186
[2]   Particle bombardment and the genetic enhancement of crops: myths and realities [J].
Altpeter, F ;
Baisakh, N ;
Beachy, R ;
Bock, R ;
Capell, T ;
Christou, P ;
Daniell, H ;
Datta, K ;
Datta, S ;
Dix, PJ ;
Fauquet, C ;
Huang, N ;
Kohli, A ;
Mooibroek, H ;
Nicholson, L ;
Nguyen, TT ;
Nugent, G ;
Raemakers, K ;
Romano, A ;
Somers, DA ;
Stoger, E ;
Taylor, N ;
Visser, R .
MOLECULAR BREEDING, 2005, 15 (03) :305-327
[3]   Polyclonal antibodies for specific detection of tobacco host cell proteins can be efficiently generated following RuBisCO depletion and the removal of endotoxins [J].
Arfi, Zulfaquar Ahmad ;
Hellwig, Stephan ;
Drossard, Jurgen ;
Fischer, Rainer ;
Buyel, Johannes Felix .
BIOTECHNOLOGY JOURNAL, 2016, 11 (04) :507-518
[4]   Optimisation and standardisation of extraction and HPLC analysis of rice grain protein [J].
Balindong, Jeanette L. ;
Liu, Lei ;
Ward, Rachelle M. ;
Barkla, Bronwyn J. ;
Waters, Daniel L. E. .
JOURNAL OF CEREAL SCIENCE, 2016, 72 :124-130
[5]   Targeting the glycans of gp120: a novel approach aimed at the Achilles heel of HIV [J].
Balzarini, O .
LANCET INFECTIOUS DISEASES, 2005, 5 (11) :726-731
[6]   Effect of HIV Antibody VRC01 on Viral Rebound after Treatment Interruption [J].
Bar, K. J. ;
Sneller, M. C. ;
Harrison, L. J. ;
Justement, J. S. ;
Overton, E. T. ;
Petrone, M. E. ;
Salantes, D. B. ;
Seamon, C. A. ;
Scheinfeld, B. ;
Kwan, R. W. ;
Learn, G. H. ;
Proschan, M. A. ;
Kreider, E. F. ;
Blazkova, J. ;
Bardsley, M. ;
Refsland, E. W. ;
Messer, M. ;
Clarridge, K. E. ;
Tustin, N. B. ;
Madden, P. J. ;
Oden, K. S. ;
O'Dell, S. J. ;
Jarocki, B. ;
Shiakolas, A. R. ;
Tressler, R. L. ;
Doria-Rose, N. A. ;
Bailer, R. T. ;
Ledgerwood, J. E. ;
Capparelli, E. V. ;
Lynch, R. M. ;
Graham, B. S. ;
Moir, S. ;
Koup, R. A. ;
Mascola, J. R. ;
Hoxie, J. A. ;
Fauci, A. S. ;
Tebas, P. ;
Chun, T-W .
NEW ENGLAND JOURNAL OF MEDICINE, 2016, 375 (21) :2037-2050
[7]   Dissecting carbohydrate-Cyanovirin-N binding by structure-guided mutagenesis: functional implications for viral entry inhibition [J].
Barrientos, Laura G. ;
Matei, Elena ;
Lasala, Fatima ;
Delgado, Rafael ;
Gronenborn, Angela M. .
PROTEIN ENGINEERING DESIGN & SELECTION, 2006, 19 (12) :525-535
[8]   Discovery of cyanovirin-N, a novel human immunodeficiency virus-inactivating protein that binds viral surface envelope glycoprotein gp120: Potential applications to microbicide development [J].
Boyd, MR ;
Gustafson, KR ;
McMahon, JB ;
Shoemaker, RH ;
OKeefe, BR ;
Mori, T ;
Gulakowski, RJ ;
Wu, L ;
Rivera, MI ;
Laurencot, CM ;
Currens, MJ ;
Cardellina, JH ;
Buckheit, RW ;
Nara, PL ;
Pannell, LK ;
Sowder, RC ;
Henderson, LE .
ANTIMICROBIAL AGENTS AND CHEMOTHERAPY, 1997, 41 (07) :1521-1530
[9]   PROTEIN PRECIPITATION TECHNIQUES [J].
Burgess, Richard R. .
GUIDE TO PROTEIN PURIFICATION, SECOND EDITION, 2009, 463 :331-342
[10]   Extraction and downstream processing of plant-derived recombinant proteins [J].
Buyel, J. F. ;
Twyman, R. M. ;
Fischer, R. .
BIOTECHNOLOGY ADVANCES, 2015, 33 (06) :902-913