ONCOGENEVOL · The evolutionary history of oncogenic and non-oncogenic papillomaviruses
Horizon 2020 — Marie Skłodowska-Curie Actions
- Duration
- 2017-06-01 → 2019-07-31
- EU contribution
- €185,076
- Participants
- 1
- Scheme
- MSCA-IF-EF-ST
Lines connect the coordinator with its partners.
Results in brief
The evolutionary history of oncogenic and non-oncogenic papillomaviruses
Papillomaviruses (PVs) have a wide host range, infecting mammals, birds, turtles, snakes and fish. Certain PVs are a major public health concern as in humans they are responsible for virtually all cases of cervical cancer, and for a fraction of cancers on the anus, penis, vagina, vulva and oropharynx. But oncogenic PVs are actually an unfortunate exception, as most PVs cause asymptomatic infections, and a few cause benign, wart-like lesions. Despite the efforts directed towards the understanding of the different clinical manifestations of infection, our knowledge on PV evolution remains fragmentary. A better understanding of the evolutionary history of PVs will expand our current knowledge on the origin of these viruses and on the evolutionary changes that make these viruses oncogenic. The main aim of this project was to better understand the factors that differentiate between oncogenic and non-oncogenic PVs. To investigate this, we have combined computational and experimental methods to study specific events that occurred during PV genome evolution. In WP1 the goal was to resurrect the ancestral oncogenes and experimentally test hypotheses about the function of the ancestral proteins in different environmental contexts. In WP2 the goal was to computationally generate comprehensive scenario of all the events that led to the PV genomes that we observe today, such as the emergence of the viral oncogenes. We further investigated how the presence of these oncogenes is linked to the phenotype we observe. In WP3 the goal was to explore the evolutionary origin of PVs and test whether they share a common ancestor with other closely related viruses. Here, we conclude that ancestral PVs existed already 430 million years ago. Moreover, we inferred that the ancestral PV genome did not contain any of the oncogenes (E5, E6 and E7) and thus these were acquired later during PV evolution. The E6 and E7 oncogenes, that are present in most PV genomes we observe today, appear to have evolved from a common ancestor. The E5 oncogene, that is present in only a few PV genomes, does not appear to have evolved from a common ancestor, and thus evolved independently multiple times. The mechanism that best explains the independent origin is de novo gene evolution in a long non-coding region in the PV genome. As little is known about the functions of E5, we have shown that E5 displays the properties of a genuine gene. In addition, the role of E5 in the differential oncogenic potential of human PVs is supported by the sharp match between the type of E5 protein encoded in the PV genome and the infection phenotype we observe. Our results compile the current knowledge on PV diversity and present an ancient evolutionary timeline punctuated by evolutionary innovations in the history of this successful viral family.
Data: CORDIS, © European Union
Project objective
Certain papillomaviruses (PVs) are a major public health concern as in humans they are responsible for virtually all cases of cervical and anal cancer, and for a fraction of cancers on the penis, vagina, vulva and oropharynx. But oncogenic PVs are actually an unfortunate exception, as most PVs cause asymptomatic infections, and a few cause benign, wart-like lesions. Despite the efforts directed towards the understanding of the different clinical manifestations of infection, our knowledge on PV evolution remains fragmentary.Oncogenic human PVs arose recently, after acquiring the E5, E6 and E7 genes. The integration of the E5 proto-oncogene in the ancestral AlphaPV genome allowed viruses to evade host immune response. Thereafter E6 and E7 acquired the ability to target essential tumor suppressor proteins, paving the way for carcinogenesis. Tracking the evolutionary history of the E5, E6 and E7 oncogenes will thus help understand the emergence of oncogenic human PVs. Regarding the deep roots of PVs, small DNA viruses may share a common ancestor as they encode proteins sharing similar functions and domains, but their evolutionary origin is still an enigma.Here I propose to apply an evolutionary medicine approach, combining in silico and wet-lab approaches, to study key events that occurred during PV genome evolution. We will go back into history and study how and when certain PVs became oncogenic. We will resurrect the ancestral oncogenes, and experimentally test hypotheses about the function of the resurrected proteins in different environmental contexts. We will then generate a comprehensive scenario modelling the appearance of the modern PV genome and the emergence of the oncogenic phenotype of certain PVs. Finally we will explore the relationships between small DNA viruses and test whether they may have a common origin. Our ultimate aim is to understand why a few PVs are oncogenic for a few host species, while most PVs cause asymptomatic infections in most hosts.
Original text from CORDIS.
Participants
- CENTRE NATIONAL DE LA RECHERCHE SCIENTIFIQUE CNRS · ParisCoordinatorFrance
Links
Data: CORDIS, © European Union
