The p53 pathway is inactivated in the majority of human cancers. Although this perturbation frequently occurs through the mutation or deletion of p53 itself, there are other mechanisms that can attenuate the pathway and contribute to tumorigenesis. For example, overexpression of important p53 negative regulators, such as murine double minute 2 (MDM2) or murine double minute 4 (MDM4), epigenetic deregulation, or even alterations in TP53 mRNA splicing. In this work, we will review the different mechanisms of p53 pathway inhibition in cancer with special focus on multiple myeloma (MM), the second most common hematological malignancy, with low incidence of p53 mutations/deletions but growing evidence of indirect p53 pathway deregulation. Transl...
Abstract The molecular mechanisms underlying dysregulated wild type (wt) p53 in multip...
Abstract The molecular mechanisms underlying dysregulated wild type (wt) p53 in multip...
Tumor suppressor p53 plays a central role in preventing tumor formation. The levels and activity of ...
The p53 pathway is inactivated in the majority of human cancers. Although this perturbation frequent...
This article belongs to the Special Issue Emerging Non-Canonical Functions and Regulation of p53.The...
Multiple Myeloma (MM) is an incurable disease characterized by a clonal evolution across the course ...
International audienceMutations in TP53, the gene that encodes the tumour suppressor p53, are found ...
International audienceMutations in TP53, the gene that encodes the tumour suppressor p53, are found ...
International audienceMutations in TP53, the gene that encodes the tumour suppressor p53, are found ...
Multiple myeloma (MM) is an incurable plasma cell neoplasm. Pathogenesis involves upregulation of D-...
Missense mutant forms of p53 are expressed at high lev-els in some human cancers and may contribute ...
Abstract The molecular mechanisms underlying dysregulated wild type (wt) p53 in multiple myeloma (MM...
Background: MDM2 is elevated in multiple myeloma (MM). Although traditionally, MDM2 negatively regul...
Background: MDM2 is elevated in multiple myeloma (MM). Although traditionally, MDM2 negatively regul...
Background: MDM2 is elevated in multiple myeloma (MM). Although traditionally, MDM2 negatively regul...
Abstract The molecular mechanisms underlying dysregulated wild type (wt) p53 in multip...
Abstract The molecular mechanisms underlying dysregulated wild type (wt) p53 in multip...
Tumor suppressor p53 plays a central role in preventing tumor formation. The levels and activity of ...
The p53 pathway is inactivated in the majority of human cancers. Although this perturbation frequent...
This article belongs to the Special Issue Emerging Non-Canonical Functions and Regulation of p53.The...
Multiple Myeloma (MM) is an incurable disease characterized by a clonal evolution across the course ...
International audienceMutations in TP53, the gene that encodes the tumour suppressor p53, are found ...
International audienceMutations in TP53, the gene that encodes the tumour suppressor p53, are found ...
International audienceMutations in TP53, the gene that encodes the tumour suppressor p53, are found ...
Multiple myeloma (MM) is an incurable plasma cell neoplasm. Pathogenesis involves upregulation of D-...
Missense mutant forms of p53 are expressed at high lev-els in some human cancers and may contribute ...
Abstract The molecular mechanisms underlying dysregulated wild type (wt) p53 in multiple myeloma (MM...
Background: MDM2 is elevated in multiple myeloma (MM). Although traditionally, MDM2 negatively regul...
Background: MDM2 is elevated in multiple myeloma (MM). Although traditionally, MDM2 negatively regul...
Background: MDM2 is elevated in multiple myeloma (MM). Although traditionally, MDM2 negatively regul...
Abstract The molecular mechanisms underlying dysregulated wild type (wt) p53 in multip...
Abstract The molecular mechanisms underlying dysregulated wild type (wt) p53 in multip...
Tumor suppressor p53 plays a central role in preventing tumor formation. The levels and activity of ...