Competition among variants is predictable and contributes to the antigenic variation dynamics of African trypanosomes

被引:0
作者
Escrivani, Douglas [1 ]
Scheidt, Viktor [1 ,2 ]
Tinti, Michele [1 ]
Faria, Joana [1 ,3 ]
Horn, David [1 ]
机构
[1] Univ Dundee, Wellcome Ctr Antiinfect Res, Sch Life Sci, Dow St, Dundee, Scotland
[2] Dr Brill& KEBOS GmbH, Inst Hyg & Microbiol, Hamburg, Germany
[3] Univ York, York Biomed Res Inst, Dept Biol, York, England
基金
英国惠康基金;
关键词
GENE-EXPRESSION; BRUCEI; GLYCOPROTEIN; CLONES; PROGRESSION;
D O I
10.1371/journal.ppat.1011530
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
Several persistent pathogens employ antigenic variation to continually evade mammalian host adaptive immune responses. African trypanosomes use variant surface glycoproteins (VSGs) for this purpose, transcribing one telomeric VSG expression-site at a time, and exploiting a reservoir of (sub)telomeric VSG templates to switch the active VSG. It has been known for over fifty years that new VSGs emerge in a predictable order in Trypanosoma brucei, and differential activation frequencies are now known to contribute to the hierarchy. Switching of approximately 0.01% of dividing cells to many new VSGs, in the absence of post-switching competition, suggests that VSGs are deployed in a highly profligate manner, however. Here, we report that switched trypanosomes do indeed compete, in a highly predictable manner that is dependent upon the activated VSG. We induced VSG gene recombination and switching in in vitro culture using CRISPR-Cas9 nuclease to target the active VSG. VSG dynamics, that were independent of host immune selection, were subsequently assessed using RNA-seq. Although trypanosomes activated VSGs from repressed expression-sites at relatively higher frequencies, the population of cells that activated minichromosomal VSGs subsequently displayed a competitive advantage and came to dominate. Furthermore, the advantage appeared to be more pronounced for longer VSGs. Differential growth of switched clones was also associated with wider differences, affecting transcripts involved in nucleolar function, translation, and energy metabolism. We conclude that antigenic variants compete, and that the population of cells that activates minichromosome derived VSGs displays a competitive advantage. Thus, competition among variants impacts antigenic variation dynamics in African trypanosomes and likely prolongs immune evasion with a limited set of antigens. Author summaryHuman and animal parasites, including those that cause sleeping sickness, malaria and giardiasis, have evolved effective mechanisms to counter host adaptive immunity. These parasite genomes typically incorporate large gene-families encoding variant surface antigens that are deployed during infection, allowing parasites to remain 'one step ahead' of host immune responses. It remains unclear, however, how these reservoirs of surface antigens are effectively deployed. We generated a complex mixture of African trypanosome variants and quantitatively monitored their dynamic behavior over time. The results confirm differential activation rates, and also reveal differential growth rates, which are predictable. Differential growth can facilitate persistence through sparing, rather than profligate, presentation of variant antigens.
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页数:21
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共 53 条
  • [1] ORDERED APPEARANCE OF ANTIGENIC VARIANTS OF AFRICAN TRYPANOSOMES EXPLAINED IN A MATHEMATICAL-MODEL BASED ON A STOCHASTIC SWITCH PROCESS AND IMMUNE-SELECTION AGAINST PUTATIVE SWITCH INTERMEDIATES
    AGUR, Z
    ABIRI, D
    VANDERPLOEG, LHT
    [J]. PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1989, 86 (23) : 9626 - 9630
  • [2] Mechanistic Similarities between Antigenic Variation and Antibody Diversification during Trypanosoma brucei Infection
    Aresta-Branco, Francisco
    Erben, Esteban
    Papavasiliou, F. Nina
    Stebbins, C. Erec
    [J]. TRENDS IN PARASITOLOGY, 2019, 35 (04) : 302 - 315
  • [3] TriTrypDB: a functional genomic resource for the Trypanosomatidae
    Aslett, Martin
    Aurrecoechea, Cristina
    Berriman, Matthew
    Brestelli, John
    Brunk, Brian P.
    Carrington, Mark
    Depledge, Daniel P.
    Fischer, Steve
    Gajria, Bindu
    Gao, Xin
    Gardner, Malcolm J.
    Gingle, Alan
    Grant, Greg
    Harb, Omar S.
    Heiges, Mark
    Hertz-Fowler, Christiane
    Houston, Robin
    Innamorato, Frank
    Iodice, John
    Kissinger, Jessica C.
    Kraemer, Eileen
    Li, Wei
    Logan, Flora J.
    Miller, John A.
    Mitra, Siddhartha
    Myler, Peter J.
    Nayak, Vishal
    Pennington, Cary
    Phan, Isabelle
    Pinney, Deborah F.
    Ramasamy, Gowthaman
    Rogers, Matthew B.
    Roos, David S.
    Ross, Chris
    Sivam, Dhileep
    Smith, Deborah F.
    Srinivasamoorthy, Ganesh
    Stoeckert, Christian J., Jr.
    Subramanian, Sandhya
    Thibodeau, Ryan
    Tivey, Adrian
    Treatman, Charles
    Velarde, Giles
    Wang, Haiming
    [J]. NUCLEIC ACIDS RESEARCH, 2010, 38 : D457 - D462
  • [4] Trypanosoma brucei homologous recombination is dependent on substrate length and homology, though displays a differential dependence on mismatch repair as substrate length decreases
    Barnes, Rebecca L.
    McCulloch, Richard
    [J]. NUCLEIC ACIDS RESEARCH, 2007, 35 (10) : 3478 - 3493
  • [5] The genome of the African trypanosome Trypanosoma brucei
    Berriman, M
    Ghedin, E
    Hertz-Fowler, C
    Blandin, G
    Renauld, H
    Bartholomeu, DC
    Lennard, NJ
    Caler, E
    Hamlin, NE
    Haas, B
    Böhme, W
    Hannick, L
    Aslett, MA
    Shallom, J
    Marcello, L
    Hou, LH
    Wickstead, B
    Alsmark, UCM
    Arrowsmith, C
    Atkin, RJ
    Barron, AJ
    Bringaud, F
    Brooks, K
    Carrington, M
    Cherevach, I
    Chillingworth, TJ
    Churcher, C
    Clark, LN
    Corton, CH
    Cronin, A
    Davies, RM
    Doggett, J
    Djikeng, A
    Feldblyum, T
    Field, MC
    Fraser, A
    Goodhead, I
    Hance, Z
    Harper, D
    Harris, BR
    Hauser, H
    Hostetter, J
    Ivens, A
    Jagels, K
    Johnson, D
    Johnson, J
    Jones, K
    Kerhornou, AX
    Koo, H
    Larke, N
    [J]. SCIENCE, 2005, 309 (5733) : 416 - 422
  • [6] A yeast-endonuclease-generated DNA break induces antigenic switching in Trypanosoma brucei
    Boothroyd, Catharine E.
    Dreesen, Oliver
    Leonova, Tatyana
    Ly, K. Ina
    Figueiredo, Luisa M.
    Cross, George A. M.
    Papavasiliou, F. Nina
    [J]. NATURE, 2009, 459 (7244) : 278 - U168
  • [7] VARIANT SPECIFIC GLYCOPROTEIN OF TRYPANOSOMA-BRUCEI CONSISTS OF 2 DOMAINS EACH HAVING AN INDEPENDENTLY CONSERVED PATTERN OF CYSTEINE RESIDUES
    CARRINGTON, M
    MILLER, N
    BLUM, M
    RODITI, I
    WILEY, D
    TURNER, M
    [J]. JOURNAL OF MOLECULAR BIOLOGY, 1991, 221 (03) : 823 - 835
  • [8] Structural similarities between the metacyclic and bloodstream form variant surface glycoproteins of the African trypanosome
    Chandra, Monica
    Dakovic, Sara
    Foti, Konstantina
    Zeelen, Johan P.
    van Straaten, Monique
    Aresta-Branco, Francisco
    Tihon, Eliane
    Luebbehusen, Nicole
    Ruppert, Thomas
    Glover, Lucy
    Papavasiliou, F. Nina
    Stebbins, C. Erec
    [J]. PLOS NEGLECTED TROPICAL DISEASES, 2023, 17 (02):
  • [9] Allele-specific assembly of a eukaryotic genome corrects apparent frameshifts and reveals a lack of nonsense-mediated mRNA decay
    Cosentino, Raul O.
    Brink, Benedikt G.
    Siegel, T. Nicolai
    [J]. NAR GENOMICS AND BIOINFORMATICS, 2021, 3 (03)
  • [10] Capturing the variant surface glycoprotein repertoire (the VSGnome) of Trypanosoma brucei Lister 427
    Cross, George A. M.
    Kim, Hee-Sook
    Wickstead, Bill
    [J]. MOLECULAR AND BIOCHEMICAL PARASITOLOGY, 2014, 195 (01) : 59 - 73