High Risk α-HPV E6 Impairs Translesion Synthesis by Blocking POLη Induction

高危 α-HPV E6 通过阻断 POLη 诱导损害跨损伤合成

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作者:Sebastian O Wendel, Jazmine A Snow, Tyler Bastian, Laura Brown, Candy Hernandez, Emily Burghardt, Andrew Kahn, Vaibhav Murthy, Daniel Neill, Zachary C Smith, Kevin Ault, Ossama Tawfik, Cen Wu, Nicholas A Wallace

Abstract

High risk genus α human papillomaviruses (α-HPVs) express two versatile oncogenes (α-HPV E6 and E7) that cause cervical cancer (CaCx) by degrading tumor suppressor proteins (p53 and RB). α-HPV E7 also promotes replication stress and alters DNA damage responses (DDR). The translesion synthesis pathway (TLS) mitigates DNA damage by preventing replication stress from causing replication fork collapse. Computational analysis of gene expression in CaCx transcriptomic datasets identified a frequent increased expression of TLS genes. However, the essential TLS polymerases did not follow this pattern. These data were confirmed with in vitro and ex vivo systems. Further interrogation of TLS, using POLη as a representative TLS polymerase, demonstrated that α-HPV16 E6 blocks TLS polymerase induction by degrading p53. This doomed the pathway, leading to increased replication fork collapse and sensitivity to treatments that cause replication stress (e.g., UV and Cisplatin). This sensitivity could be overcome by the addition of exogenous POLη.

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