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DNA and RNA Binding Proteins: From Motifs to Roles in Cancer. | LitMetric

DNA and RNA Binding Proteins: From Motifs to Roles in Cancer.

Int J Mol Sci

Research Centre for Applied Molecular Oncology (RECAMO), Masaryk Memorial Cancer Institute (MMCI), Zluty Kopec 7, 656 53 Brno, Czech Republic.

Published: August 2022

AI Article Synopsis

  • DNA and RNA binding proteins (DRBPs) are key regulators of cellular processes and play a vital role in gene expression and nucleotide metabolism across all life forms.
  • Dysregulation of these proteins can lead to various diseases, particularly cancer, as they often have overlapping functions and are crucial for understanding the molecular mechanisms of tumor development.
  • The review highlights different classes of DRBPs, their biochemical properties, and their potential as therapeutic targets in cancer treatment by analyzing existing protein databases and identifying specific DRBPs associated with various cancer types.

Article Abstract

DNA and RNA binding proteins (DRBPs) are a broad class of molecules that regulate numerous cellular processes across all living organisms, creating intricate dynamic multilevel networks to control nucleotide metabolism and gene expression. These interactions are highly regulated, and dysregulation contributes to the development of a variety of diseases, including cancer. An increasing number of proteins with DNA and/or RNA binding activities have been identified in recent years, and it is important to understand how their activities are related to the molecular mechanisms of cancer. In addition, many of these proteins have overlapping functions, and it is therefore essential to analyze not only the loss of function of individual factors, but also to group abnormalities into specific types of activities in regard to particular cancer types. In this review, we summarize the classes of DNA-binding, RNA-binding, and DRBPs, drawing particular attention to the similarities and differences between these protein classes. We also perform a cross-search analysis of relevant protein databases, together with our own pipeline, to identify DRBPs involved in cancer. We discuss the most common DRBPs and how they are related to specific cancers, reviewing their biochemical, molecular biological, and cellular properties to highlight their functions and potential as targets for treatment.

Download full-text PDF

Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9408909PMC
http://dx.doi.org/10.3390/ijms23169329DOI Listing

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