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The HPV16E7 Affibody as a Novel Potential Therapeutic Agent for Treating Cervical Cancer Is Likely Internalized
Qingyuan Zhang1, Hua Zhu2, Zhouying Cui1
1Institute of Molecular Virology and Immunology, Department of Microbiology & Immunology, School of Basic Medical Sciences, Wenzhou Medical University, Wenzhou 325035, China.
Abstract:
Affibodies targeting intracellular proteins have a great potential to function as ideal therapeutic agents. However, little is known about how the affibodies enter target cells to interact with intracellular target proteins. We have previously developed the HPV16E7 affibody (ZHPV16E7384) for HPV16 positive cervical cancer treatment. Here, we explored the underlying mechanisms of ZHPV16E7384 and found that ZHPV16E7384 significantly inhibited the proliferation of target cells and induced a G1/S phase cell cycle arrest. Furthermore, ZHPV16E7384 treatment resulted in the upregulation of retinoblastoma protein (Rb) and downregulation of phosphorylated Rb (pRb), E2F1, cyclin D1, and CDK4 in the target cells. Moreover, treatment with dynamin or the caveolin-1 inhibitor not only significantly suppressed the internalization of ZHPV16E7384 into target cells but also reversed the regulation of cell cycle factors by ZHPV16E7384. Overall, these results indicate that ZHPV16E7384 was likely internalized specifically into target cells through dynamin- and caveolin-1 mediated endocytosis. ZHPV16E7384 induced the cell cycle arrest in the G1/S phase at least partially by interrupting HPV16E7 binding to and degrading Rb, subsequently leading to the downregulation of E2F1, cyclin D1, CDK4, and pRb, which ultimately inhibited target cell proliferation. These findings provide a rationale of using ZHPV16E7384 to conduct a clinical trial for target therapy in cervical cancer.
Insights
The HPV16E7 affibody (ZHPV16E7384) enters cervical cancer cells via endocytosis, inhibiting proliferation by arresting the cell cycle. This affibody targets the retinoblastoma protein (Rb) pathway, offering potential for targeted cancer therapy.
Area of Science:
- Oncology
- Molecular Biology
- Cell Biology
Background:
- Affibodies targeting intracellular proteins show therapeutic potential.
- Understanding affibody internalization mechanisms is crucial for intracellular drug delivery.
- The HPV16E7 affibody (ZHPV16E7384) was developed for HPV16-positive cervical cancer.
Purpose of the Study:
- To elucidate the cellular uptake mechanisms of ZHPV16E7384.
- To investigate the effects of ZHPV16E7384 on cell cycle regulation.
- To determine the molecular targets and pathways affected by ZHPV16E7384.
Main Methods:
- Cell proliferation assays and cell cycle analysis (G1/S phase arrest).
- Western blot analysis to assess protein expression levels (Rb, pRb, E2F1, cyclin D1, CDK4).
- Inhibition studies using dynamin and caveolin-1 inhibitors to investigate internalization pathways.
Main Results:
- ZHPV16E7384 significantly inhibited target cell proliferation and induced G1/S phase cell cycle arrest.
- Treatment upregulated retinoblastoma protein (Rb) and downregulated phosphorylated Rb (pRb), E2F1, cyclin D1, and CDK4.
- Dynamin and caveolin-1 inhibition suppressed ZHPV16E7384 internalization and reversed cell cycle factor regulation.
Conclusions:
- ZHPV16E7384 is internalized via dynamin- and caveolin-1 mediated endocytosis.
- The affibody induces cell cycle arrest by disrupting HPV16E7-Rb interaction and promoting Rb degradation.
- These findings support ZHPV16E7384 as a candidate for clinical trials in cervical cancer targeted therapy.
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