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Updated: Jun 12, 2026

Isolation and Culture of Primary Oral Keratinocytes from the Adult Mouse Palate
Published on: September 24, 2021
Immortalization of oral keratinocytes by functional inactivation of the p53 and pRb pathways
Serge J Smeets1, Marlon van der Plas, Tieneke B M Schaaij-Visser
1Department of Otolaryngology/Head-Neck Surgery, VU University Medical Center, Amsterdam, The Netherlands.
Abstract:
A subgroup of head and neck squamous cell carcinomas (HNSCCs) contains high-risk human papillomavirus-type 16 (HPV16). The viral E6 and E7 oncoproteins inactivate the p53 and pRb proteins, respectively. We examined the causative effect of HPV16 E6 and E7 expression on the immortalization of normal oral keratinocytes (OKCs) and compared the resulting phenotype with alternative ways of p53- and pRb-pathway abrogation frequently found in HNSCCs without HPV. Primary OKCs were conditionally immortalized with temperature-sensitive SV40 large T-antigen and human telomerase, allowing these cells to return to their senescent primary state after temperature shift. HPV16 E6 and E7 were introduced to overcome senescence, determined with population doubling (PD) as read-out. For comparison, we downregulated p53 and p16 by short hairpin RNA genes and expressed mutant p53R(175)H and cyclinD1. Expression of HPV16 E6 caused an extended life span similar to expression of mutant p53R(175)H or p53 knockdown. Expression of mutant p53R(175)H seemed to cause additional activation of the hypoxia and WNT signaling pathways. HPV16 E7 expression had no direct effect on lifespan, similar to p16 knockdown or cyclinD1 expression. In combination with HPV16 E6 or other functional inactivations of p53, abrogation of the pRb-pathway by either HPV16 E7 or other manipulations caused an immortal phenotype. Our data show the causative role of HPV16 E6/E7 in early squamous carcinogenesis. Activity of each gene could be mimicked by other genetic events frequently found in HNSCC without HPV. This data provides the experimental proof of causal association of HPV in HNSCC carcinogenesis and further support the crucial role of the p53- and pRb-pathways.
Insights
Human papillomavirus type 16 (HPV16) E6 and E7 oncoproteins drive head and neck squamous cell carcinoma (HNSCC) by inactivating p53 and pRb. This study experimentally proves HPV
Area of Science:
- Oncology
- Virology
- Molecular Biology
Background:
- Head and neck squamous cell carcinomas (HNSCCs) are linked to high-risk human papillomavirus type 16 (HPV16).
- HPV16 E6 and E7 oncoproteins are known to inactivate tumor suppressors p53 and pRb.
- Understanding the role of HPV16 in HNSCC pathogenesis is crucial for targeted therapies.
Purpose of the Study:
- To investigate the causative role of HPV16 E6 and E7 in oral keratinocyte immortalization.
- To compare the effects of HPV16 oncoproteins with genetic alterations in p53 and pRb pathways found in HPV-negative HNSCCs.
- To provide experimental evidence for the causal association of HPV in HNSCC development.
Main Methods:
- Conditional immortalization of primary oral keratinocytes (OKCs) using SV40 large T-antigen and human telomerase.
- Introduction of HPV16 E6 and E7 genes to overcome cellular senescence.
- Downregulation of p53 and p16 using short hairpin RNA (shRNA) and expression of mutant p53R(175)H and cyclinD1 for comparative analysis.
Main Results:
- HPV16 E6 expression extended cell lifespan, mimicking mutant p53 or p53 knockdown.
- Mutant p53R(175)H expression additionally activated hypoxia and WNT signaling pathways.
- HPV16 E7 alone did not affect lifespan, similar to p16 knockdown or cyclinD1 expression.
- Combined inactivation of p53 and pRb pathways (via HPV16 E6/E7 or other genetic events) led to cellular immortalization.
Conclusions:
- HPV16 E6 and E7 play a causative role in the early stages of squamous carcinogenesis.
- The functions of HPV16 E6 and E7 can be replicated by genetic events commonly observed in HPV-negative HNSCCs.
- This study provides experimental validation for the role of HPV in HNSCC and highlights the critical involvement of the p53 and pRb pathways.
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