Cervical cancers, a malignancy associated with oncogenic papillomaviruses, remain a major disease burden in the absence of effective implementation of preventive strategies. CD66+ cells have previously been identified as a tumor propagating subset in cervical cancers. We investigated the existence, differentiation state and neoplastic potential of CD66+ cells in a pre-cancer cell line harboring HPV31b episomes. The gene expression profile of CD66High cells overlaps with differentiated keratinocytes, neoplastic mesenchymal transition, cells of the squamo-columnar junction and cervical cancer cell line derived spheroids. There is elevated expression of DNMT1, Notch1 and the viral gene product E1^E4, in CD66High cells. Thus CD66High cells, in the absence of differentiating signals, express higher levels of key regulators of keratinocytes stemness, differentiation and the viral life cycle respectively. We also find a striking association of neoplastic traits including migration, invasion and colony formation in soft agar with CD66High cells. These properties and a distinct G2M enriched cell cycle profile are conserved in cells from cervical cancers. Principally, using a precancerous cell line, we propose that CD66High cells have an intermediate differentiation state with a cellular milieu connected with both viral replication and neoplastic potential and validate some key features in pre-cancer lesions. Such pathophysiologically relevant systems for defining cellular changes in the early phases of the disease process provide both mechanistic insight and potential therapeutic strategies. Collectively, our data provides a rationale for exploring novel therapeutic targets in CD66+ sub-sets during cancer progression.


