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1.
Mol Immunol ; 164: 98-111, 2023 Dec.
Article in English | MEDLINE | ID: mdl-37992541

ABSTRACT

Colorectal cancer (CRC) is one of the most common malignant neoplasms and the second leading cause of death from tumors worldwide. Therefore, there is a great need to study new therapeutical strategies, such as effective immunotherapies against these malignancies. Unfortunately, many CRC patients do not respond to current standard immunotherapies, making it necessary to search for adjuvant treatments. Histone deacetylase 6 (HDAC6) is involved in several processes, including immune response and tumor progression. Specifically, it has been observed that HDAC6 is required to activate the Signal Transducer and Activator of Transcription 3 (STAT3), a transcription factor involved in immunogenicity, by activating different genes in these pathways, such as PD-L1. Over-expression of immunosuppressive pathways in cancer cells deregulates T-cell activation. Therefore, we focused on the pharmacological inhibition of HDAC6 in CRC cells because of its potential as an adjuvant to avoid immunotolerance in immunotherapy. We investigated whether HDAC6 inhibitors (HDAC6is), such as Nexturastat A (NextA), affected STAT3 activation in CRC cells. First, we found that NextA is less cytotoxic than the non-selective HDACis panobinostat. Then, NextA modified STAT3 and decreased the mRNA and protein expression levels of PD-L1. Importantly, transcriptomic analysis showed that NextA treatment affected the expression of critical genes involved in immunomodulatory pathways in CRC malignancies. These results suggest that treatments with NextA reduce the functionality of STAT3 in CRC cells, impacting the expression of immunomodulatory genes involved in the inflammatory and immune responses. Therefore, targeting HDAC6 may represent an interesting adjuvant strategy in combination with immunotherapy.


Subject(s)
B7-H1 Antigen , Colorectal Neoplasms , Humans , Histone Deacetylase 6/metabolism , B7-H1 Antigen/metabolism , STAT3 Transcription Factor/metabolism , Immunity , Colorectal Neoplasms/genetics , Colorectal Neoplasms/pathology
2.
Oncogene ; 36(42): 5852-5860, 2017 10 19.
Article in English | MEDLINE | ID: mdl-28628118

ABSTRACT

Mitogen-activated protein kinase kinase 3 (MKK3) is a dual threonine/tyrosine protein kinase that regulates inflammation, proliferation and apoptosis through specific phosphorylation and activation of the p38 mitogen-activated protein kinase. However, the role of MKK3 beyond p38-signaling remains elusive. Recently, we reported a protein-protein interaction (PPI) network of cancer-associated genes, termed OncoPPi, as a resource for the scientific community to generate new biological models. Analysis of the OncoPPi connectivity identified MKK3 as one of the major hub proteins in the network. Here, we show that MKK3 interacts with a large number of proteins critical for cell growth and metabolism, including the major oncogenic driver MYC. Multiple complementary approaches were used to demonstrate the direct interaction of MKK3 with MYC in vitro and in vivo. Computational modeling and experimental studies mapped the interaction interface to the MYC helix-loop-helix domain and a novel 15-residue MYC-binding motif in MKK3 (MBM). The MBM in MKK3 is distinct from the known binding sites for p38 or upstream kinases. Functionally, MKK3 stabilized MYC protein, enhanced its transcriptional activity and increased expression of MYC-regulated genes. The defined MBM peptide mimicked the MKK3 effect in promoting MYC activity. Together, the exploration of OncoPPi led to a new biological model in which MKK3 operates by two distinct mechanisms in cellular regulation through its phosphorylation of p38 and its activation of MYC through PPI.


Subject(s)
DNA-Binding Proteins/metabolism , Lung Neoplasms/metabolism , MAP Kinase Kinase 3/metabolism , Protein Interaction Maps , Transcription Factors/metabolism , Cell Line, Tumor , DNA-Binding Proteins/chemistry , DNA-Binding Proteins/genetics , Databases, Protein , Enzyme Activation , Humans , Lung Neoplasms/genetics , Lung Neoplasms/pathology , MAP Kinase Kinase 3/genetics , Phosphorylation , Protein Conformation , Signal Transduction/genetics , Transcription Factors/chemistry , Transcription Factors/genetics , p38 Mitogen-Activated Protein Kinases/metabolism
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