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Published on: March 27, 2020
GATA Transcription Factors and Cancer
1Division of Hematology, The Children's Hospital of Philadelphia, Philadelphia, PA, USA.
Abstract:
It has been almost a quarter century since it was first appreciated that a class of oncogenes contained in rapidly transforming avian retroviruses encoded DNA-binding transcription factors. As with other oncogenes, genetic recombination with the viral genome led to their overexpression or functional alteration. In the years that followed, alterations of numerous transcription factors were shown to be causatively involved in various cancers in human patients and model organisms. Depending on their normal cellular functions, these factors were subsequently categorized as proto-oncogenes or tumor suppressor genes. This review focuses on the role of GATA transcription factors in carcinogenesis. GATA factors are zinc finger DNA binding proteins that control the development of diverse tissues by activating or repressing transcription. GATA factors thus coordinate cellular maturation with proliferation arrest and cell survival. Therefore, a role of this family of genes in human cancers is not surprising. Prominent examples include structural mutations in GATA1 that are found in almost all megakaryoblastic leukemias in patients with Down syndrome; loss of GATA3 expression in aggressive, dedifferentiated breast cancers; and silencing of GATA4 and GATA5 expression in colorectal and lung cancers. Here, we discuss possible mechanisms of carcinogenesis vis-à-vis the normal functions of GATA factors as they pertain to human patients and mouse models of cancer.
Insights
GATA transcription factors regulate cell development and survival. Alterations in these DNA-binding proteins are implicated in various cancers, including leukemia, breast, colorectal, and lung cancers, highlighting their role in carcinogenesis.
Area of Science:
- Molecular Biology
- Genetics
- Oncology
Background:
- Transcription factors are key regulators of gene expression.
- Certain transcription factors function as oncogenes or tumor suppressors.
- GATA factors are crucial for tissue development and cell fate.
Purpose of the Study:
- To review the role of GATA transcription factors in human cancers.
- To discuss mechanisms of GATA factor involvement in carcinogenesis.
- To highlight specific GATA gene alterations in various cancer types.
Main Methods:
- Literature review of GATA factors in cancer.
- Analysis of GATA gene mutations and expression patterns in human cancers.
- Examination of GATA factor functions in mouse models of cancer.
Main Results:
- GATA factors coordinate cell maturation, proliferation, and survival.
- Mutations in GATA1 are linked to megakakaryoblastic leukemias in Down syndrome.
- GATA3 loss is associated with aggressive breast cancers.
- GATA4 and GATA5 silencing occurs in colorectal and lung cancers.
Conclusions:
- GATA transcription factors play a significant role in the development of diverse human cancers.
- Understanding GATA factor dysregulation provides insights into cancer mechanisms.
- Targeting GATA factors may offer therapeutic strategies for specific cancers.
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