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DNA double strand break position leads to distinct gene expression changes and regulates VSG switching pathway choice

Alix Thivole, Ann-Kathrin Mehnert, Eliane Tihon, Emilia McLaughlin, Annick Dujeancourt-Henry, View ORCID ProfileLucy Glover
doi: https://doi.org/10.1101/2021.07.15.452463
Alix Thivole
1Trypanosome Molecular Biology, Department of Parasites and Insect Vectors, Institut Pasteur, 25-28 Rue du Docteur Roux 75015, Paris, France
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Ann-Kathrin Mehnert
1Trypanosome Molecular Biology, Department of Parasites and Insect Vectors, Institut Pasteur, 25-28 Rue du Docteur Roux 75015, Paris, France
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Eliane Tihon
1Trypanosome Molecular Biology, Department of Parasites and Insect Vectors, Institut Pasteur, 25-28 Rue du Docteur Roux 75015, Paris, France
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Emilia McLaughlin
1Trypanosome Molecular Biology, Department of Parasites and Insect Vectors, Institut Pasteur, 25-28 Rue du Docteur Roux 75015, Paris, France
2Université de Paris, Sorbonne Paris Cité, Paris, France
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Annick Dujeancourt-Henry
1Trypanosome Molecular Biology, Department of Parasites and Insect Vectors, Institut Pasteur, 25-28 Rue du Docteur Roux 75015, Paris, France
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Lucy Glover
1Trypanosome Molecular Biology, Department of Parasites and Insect Vectors, Institut Pasteur, 25-28 Rue du Docteur Roux 75015, Paris, France
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  • ORCID record for Lucy Glover
  • For correspondence: lucy.glover@pasteur.fr
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ABSTRACT

Antigenic variation is an immune evasion strategy used by Trypanosoma brucei that results in the periodic exchange of the surface protein coat. Underlying this process is the movement of variant surface glycoprotein genes in or out of a specialized locus known as bloodstream form expression site by homologous recombination, facilitated by blocks of repetitive sequence known as the 70-bp repeats, that provide homology for gene conversion events. DNA double strand breaks are potent drivers of antigenic variation, however where these breaks must fall to elicit a switch is not well understood. To understand how the position of a break influences antigenic variation we established a series of cell lines to study the effect of an I-SceI meganuclease break in the active expression site. We found that a DNA break within repetitive regions is not productive for VSG switching, and show that the break position leads to a distinct gene expression profile and DNA repair response which dictates how antigenic variation proceeds in African trypanosomes.

Competing Interest Statement

The authors have declared no competing interest.

Copyright 
The copyright holder for this preprint is the author/funder, who has granted bioRxiv a license to display the preprint in perpetuity. It is made available under a CC-BY-NC-ND 4.0 International license.
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Posted July 15, 2021.
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DNA double strand break position leads to distinct gene expression changes and regulates VSG switching pathway choice
Alix Thivole, Ann-Kathrin Mehnert, Eliane Tihon, Emilia McLaughlin, Annick Dujeancourt-Henry, Lucy Glover
bioRxiv 2021.07.15.452463; doi: https://doi.org/10.1101/2021.07.15.452463
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DNA double strand break position leads to distinct gene expression changes and regulates VSG switching pathway choice
Alix Thivole, Ann-Kathrin Mehnert, Eliane Tihon, Emilia McLaughlin, Annick Dujeancourt-Henry, Lucy Glover
bioRxiv 2021.07.15.452463; doi: https://doi.org/10.1101/2021.07.15.452463

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