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MTA1 expression in human cancers - Clinical and pharmacological significance
Vijaya Lakshmi Malisetty1, Vasudevarao Penugurti2, Prashanth Panta3
1Department of Biotechnology, Acharya Nagarjuna University, Guntur, AP, India.
Abstract:
Remarkably, majority of the cancer deaths are due to metastasis, not because of primary tumors. Metastasis is one of the important hallmarks of cancer. During metastasis invasion of primary tumor cells from the site of origin to a new organ occurs. Metastasis associated proteins (MTAs) are a small family of transcriptional coregulators that are closely associated with tumor metastasis. These proteins are integral components of nuclear remodeling and deacetylation complex (NuRD). By virtue of being integral components of NuRD, these proteins regulate the gene expression by altering the epigenetic changes such as acetylation and methylation on the target gene chromatin. Among the MTA proteins, MTA1 expression is very closely correlated with the aggressiveness of several cancers that includes breast, liver, colon, pancreas, prostate, blood, esophageal, gastro-intestinal etc. Considering its close association with aggressiveness in human cancers, MTA1 may be considered as a potential therapeutic target for cancer treatment. The recent developments in its crystal structure further strengthened the idea of developing small molecule inhibitors for MTA1. In this review, we discuss the recent trends on the diverse functions of MTA1 and its role in various cancers, with the focus to consider MTA1 as a 'druggable' target in the control of human cancers.
Insights
Metastasis-associated protein 1 (MTA1) drives cancer aggressiveness and metastasis. Targeting MTA1 offers a promising therapeutic strategy for controlling various human cancers.
Area of Science:
- Oncology
- Molecular Biology
- Epigenetics
Background:
- Metastasis, not primary tumors, causes most cancer deaths.
- Metastasis-associated proteins (MTAs) are key transcriptional coregulators in cancer metastasis.
- MTAs are integral components of the NuRD complex, influencing gene expression via epigenetic modifications.
Purpose of the Study:
- To review the diverse functions of MTA1 in various cancers.
- To highlight MTA1's role in cancer aggressiveness and metastasis.
- To evaluate MTA1 as a druggable target for cancer therapy.
Main Methods:
- Literature review of MTA1 functions and roles in cancer.
- Analysis of MTA1's correlation with cancer aggressiveness.
- Examination of recent structural data for MTA1 inhibitor development.
Main Results:
- MTA1 expression strongly correlates with the aggressiveness of numerous cancers.
- MTA1's involvement in epigenetic regulation is crucial for metastasis.
- Recent crystal structure data supports the development of small molecule inhibitors for MTA1.
Conclusions:
- MTA1 is a critical driver of cancer metastasis and aggressiveness.
- Targeting MTA1 presents a viable therapeutic strategy for cancer control.
- Further research into MTA1 inhibitors is warranted for effective cancer treatment.
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