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Published on: March 8, 2012
HPV 16E7 and 48E7 proteins use different mechanisms to target p130 to overcome cell cycle block
Nurshamimi Nor Rashid1,2, Zi Ling Yong3, Rohana Yusof4
1Section of Virology, Department of Medicine, Imperial College London, London, UK. nurshamimi@um.edu.my.
Background:
Retinoblastoma like protein 2 (RBL2) or p130 is a member of the pocket protein family, which is infrequently mutated in human tumours. Its expression is posttranscriptionally regulated and largely G0 restricted. We have previously shown that E6/E7 oncoproteins encoded by human papillomavirus (HPV) type 16, which is a high-risk type for cervical cancer development, must target p130 to promote the host cell to exit from quiescence (G0) state and enter S phase of the cell cycle. P130 is associated with the DREAM (DP, RB-like, E2F and MuvB) complex in G0/G1, which prevents S phase progression by repressing transcription of E2F-regulated genes. E7 proteins could potentially disrupt the p130-DREAM complex through two known mechanisms: direct interaction with p130 or induction of cyclin dependent kinase 2 (CDK2) phosphorylation by interacting with its inhibitor, p21(CIP1).
Methods:
In this study we have used p130 mutants deficient in binding the E7 LXCXE domain (p130mE7), unphosphorylatable by CDK2 (p130PM22) or a combination of both (p130PM22/mE7) to investigate these mechanisms used by E7 proteins to disrupt the p130-DREAM complex and promote cell cycle progression.
Results:
We found that HPV16 E7 binding to p130 through its LXCXE domain was absolutely required to disrupt p130-DREAM to promote S phase of the cell cycle, as HPV16 E7 was unable to suppress p130mE7 but could suppress p130PM22. In contrast, the E7 protein encoded by a cutaneous HPV type that lacks a functional LXCXE domain, HPV 48 E7, was also able to disrupt p130-DREAM to promote cell cycling, but through the alternative mechanism. Thus, HPV48 E7 could suppress a cell cycle block imposed by p130mE7, but was unable to suppress p130PM22.
Conclusions:
Overall, these results indicate that suppression of p130 is required for HPV-induced cell cycling, and that different HPV E7 proteins can use alternative mechanisms to achieve this.
Insights
Human papillomavirus (HPV) E7 proteins disrupt the p130-DREAM complex to drive cell cycle progression. Different HPV types utilize distinct mechanisms involving p130 binding or phosphorylation to achieve this disruption.
Area of Science:
- Cell biology
- Virology
- Molecular oncology
Background:
- Retinoblastoma like protein 2 (RBL2), also known as p130, is a pocket protein involved in cell cycle regulation.
- p130 normally restricts cells to the quiescent G0 phase by associating with the DREAM complex.
- High-risk human papillomaviruses (HPVs), such as HPV type 16, target p130 to induce cell cycle entry and promote cancer development.
Purpose of the Study:
- To investigate the mechanisms by which HPV E7 oncoproteins disrupt the p130-DREAM complex.
- To determine whether E7 interaction with p130's LXCXE domain or CDK2-mediated phosphorylation of p130 is critical for cell cycle progression.
Main Methods:
- Utilized p130 mutants deficient in E7 binding (p130mE7) or unphosphorylatable by CDK2 (p130PM22).
- Assessed the ability of HPV16 E7 and HPV48 E7 oncoproteins to disrupt the p130-DREAM complex and promote cell cycle progression using these mutants.
Main Results:
- HPV16 E7 requires direct binding to p130 via its LXCXE domain to disrupt the p130-DREAM complex and promote S phase entry.
- HPV48 E7, lacking a functional LXCXE domain, disrupts the p130-DREAM complex and promotes cell cycling through an alternative mechanism, independent of direct p130 binding.
- HPV48 E7's mechanism involves overcoming p130's phosphorylation status, as it could suppress a cell cycle block imposed by p130mE7 but not p130PM22.
Conclusions:
- Suppression of p130 function is essential for HPV-driven cell cycle progression.
- Different HPV E7 proteins have evolved distinct strategies to inactivate p130, highlighting the adaptability of viral oncogenes.
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