Atypical E2Fs either Counteract or Cooperate with RB during Tumorigenesis Depending on Tissue Context

Publication date

2021-05-01

Authors

Moreno, Eva
Pandit, Shusil KumarISNI 0000000419433025
Toussaint, HildaISNI 0000000392130779
Bongiovanni, LauraORCID 0000-0001-8942-6048ISNI 0000000492840858
Harkema, LiesbethISNI 0000000506596906
van Essen, Saskia C
van Liere, Elsbeth AISNI 0000000492906650
Westendorp, BartORCID 0000-0003-1043-3638ISNI 0000000396403121
de Bruin, AlainISNI 0000000391378158

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Document Type

Article
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cc_by

Abstract

E2F-transcription factors activate many genes involved in cell cycle progression, DNA repair, and apoptosis. Hence, E2F-dependent transcription must be tightly regulated to prevent tumorigenesis, and therefore metazoan cells possess multiple E2F regulation mechanisms. The best-known is the Retinoblastoma protein (RB), which is mutated in many cancers. Atypical E2Fs (E2F7 and -8) can repress E2F-target gene expression independently of RB and are rarely mutated in cancer. Therefore, they may act as emergency brakes in RB-mutated cells to suppress tumor growth. Currently, it is unknown if and how RB and atypical E2Fs functionally interact in vivo. Here, we demonstrate that mice with liver-specific combinatorial deletion of Rb and E2f7/8 have reduced life-spans compared to E2f7/8 or Rb deletion alone. This was associated with increased proliferation and enhanced malignant progression of liver tumors. Hence, atypical repressor E2Fs and RB cooperatively act as tumor suppressors in hepatocytes. In contrast, loss of either E2f7 or E2f8 largely prevented the formation of pituitary tumors in Rb+/- mice. To test whether atypical E2Fs can also function as oncogenes independent of RB loss, we induced long-term overexpression of E2f7 or E2f8 in mice. E2F7 and -8 overexpression increased the incidence of tumors in the lungs, but not in other tissues. Collectively, these data show that atypical E2Fs can promote but also inhibit tumorigenesis depending on tissue type and RB status. We propose that the complex interactions between atypical E2Fs and RB on maintenance of genetic stability underlie this context-dependency.

Keywords

Atypical E2Fs, Interaction, Rb, Transgenic mice, Tumorigenesis, Oncology, Cancer Research, SDG 3 - Good Health and Well-being

Citation

Moreno, E, Pandit, S K, Toussaint, M J M, Bongiovanni, L, Harkema, L, van Essen, S C, van Liere, E A, Westendorp, B & de Bruin, A 2021, 'Atypical E2Fs either Counteract or Cooperate with RB during Tumorigenesis Depending on Tissue Context', Cancers, vol. 13, no. 9, 2033, pp. 1-14. https://doi.org/10.3390/cancers13092033