ArticleScientific reports2021
Serine residues 726 and 780 have nonredundant roles regulating STAT5a activity in luminal breast cancer.
Article in Scientific reports, 2021. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 9 papers.
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Who cites it
9 citing papers in PubMed, 11 citations in OpenAlex.
- The tumor suppressor NDRG2 recruits protein phosphatase 2A to suppress STAT5 phosphorylation in adult T-cell leukemia/lymphoma.The Journal of biological chemistry · 2026Article
- Post-translational modifications in CD8Frontiers in immunology · 2026Review
- Reduction of phosphorylated signal transducer and activator of transcription-5 expression in feline mammary carcinoma.The Journal of veterinary medical science · 2024Article
- The Human Intermediate Prolactin Receptor I-tail Contributes Breast Oncogenesis by Targeting Ras/MAPK Pathway.Endocrinology · 2024Article
- Prolactin levels and breast cancer risk by tumor expression of prolactin-related markers.Breast cancer research : BCR · 2023Article
- STAT family of transcription factors in breast cancer: Pathogenesis and therapeutic opportunities and challenges.Seminars in cancer biology · 2022Review
- Genomic Mutations of the STAT5 Transcription Factor Are Associated with Human Cancer and Immune Diseases.International journal of molecular sciences · 2022Review
- Prolactin receptor gene transcriptional control, regulatory modalities relevant to breast cancer resistance and invasiveness.Frontiers in endocrinology · 2022Review
- Investigation of Interferon Gamma Activity Using Bioinformatics Methods.Archives of Razi Institute · 2021Article
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Authors and funding
7 authors at 1 institution in 1 country.
Funding
Abstract
In breast cancer, prolactin-induced activation of the transcription factor STAT5a results from the phosphorylation of STAT5a tyrosine residue 694. However, its role in mammary oncogenesis remains an unsettled debate as STAT5a exhibits functional dichotomy with both pro-differentiative and pro-proliferative target genes. Phosphorylation of STAT5a serine residues, S726 and S780, may regulate STAT5a in such a way to underlie this duality. Given hematopoiesis studies showing phospho-serine STAT5a as necessary for transformation, we hypothesized that serine phosphorylation regulates STAT5a activity to contribute to its role in mammary oncogenesis, specifically in luminal breast cancer. Here, phosphorylation of S726-, S780-, and Y694-STAT5a in response to prolactin in MCF7 luminal breast cancer cells was investigated with STAT5a knockdown and rescue with Y694F-, S726A-, or S780A-STAT5a, where the phospho-sites were mutated. RNA-sequencing and subsequent Ingenuity Pathway Analysis predicted that loss of each phospho-site differentially affected both prolactin-induced gene expression as well as functional pathways of breast cancer (e.g. cell survival, proliferation, and colony formation). In vitro studies of anchorage-independent growth and proliferation confirmed distinct phenotypes: whereas S780A-STAT5a decreased clonogenicity, S726A-STAT5a decreased proliferation in response to prolactin compared to wild type STAT5a. Collectively, these studies provide novel insights into STAT5a activation in breast cancer pathogenesis.
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