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Published on: May 10, 2017
XPO1 in B cell hematological malignancies: from recurrent somatic mutations to targeted therapy
Vincent Camus1,2, Hadjer Miloudi1, Antoine Taly3
1Normandie Univ, INSERM U1245, UNICAEN, UNIROUEN, Caen, France.
Abstract:
Many recent publications highlight the large role of the pivotal eukaryotic nuclear export protein exportin-1 (XPO1) in the oncogenesis of several malignancies, and there is emerging evidence that XPO1 inhibition is a key target against cancer. The clinical validation of the pharmacological inhibition of XPO1 was recently achieved with the development of the selective inhibitor of nuclear export compounds, displaying an interesting anti-tumor activity in patients with massive pre-treated hematological malignancies. Recent reports have shown molecular alterations in the gene encoding XPO1 and showed a mutation hotspot (E571K) in the following two hematological malignancies with similar phenotypes and natural histories: primary mediastinal diffuse large B cell lymphoma and classical Hodgkin's lymphoma. Emerging evidence suggests that the mutant XPO1 E571K plays a role in carcinogenesis, and this variant is quantifiable in tumor and plasma cell-free DNA of patients using highly sensitive molecular biology techniques, such as digital PCR and next-generation sequencing. Therefore, it was proposed that the XPO1 E571K variant may serve as a minimal residual disease tool in this setting. To clarify and summarize the recent findings on the role of XPO1 in B cell hematological malignancies, we conducted a literature search to present the major publications establishing the landscape of XPO1 molecular alterations, their impact on the XPO1 protein, their interest as biomarkers, and investigations into the development of new XPO1-targeted therapies in B cell hematological malignancies.
Insights
Exportin-1 (XPO1) mutations, particularly E571K, are implicated in B cell hematological malignancies. This XPO1 variant shows potential as a minimal residual disease biomarker and therapeutic target.
Area of Science:
- Oncology
- Molecular Biology
- Hematology
Background:
- Exportin-1 (XPO1) is a key nuclear export protein implicated in oncogenesis.
- XPO1 inhibition shows anti-tumor activity in hematological malignancies.
- The XPO1 E571K mutation hotspot is identified in specific B cell lymphomas.
Purpose of the Study:
- To summarize recent findings on XPO1's role in B cell hematological malignancies.
- To review XPO1 molecular alterations, their impact, and biomarker potential.
- To discuss novel XPO1-targeted therapies.
Main Methods:
- Literature search of major publications on XPO1 in B cell hematological malignancies.
- Review of studies on XPO1 molecular alterations and their functional impact.
- Analysis of XPO1 as a potential biomarker and therapeutic target.
Main Results:
- XPO1 mutations, including E571K, are linked to carcinogenesis in B cell lymphomas.
- The XPO1 E571K variant is quantifiable in patient tumor and plasma DNA.
- XPO1 inhibition demonstrates clinical anti-tumor activity.
Conclusions:
- The XPO1 E571K variant may serve as a minimal residual disease biomarker.
- Targeting XPO1 represents a promising therapeutic strategy for B cell hematological malignancies.
- Further research into XPO1 alterations and targeted therapies is warranted.
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