Sweetening the hallmarks of cancer: Galectins as multifunctional mediators of tumor progression
Подслащивая признаки рака: галектины как многофункциональные медиаторы прогрессии опухоли
2019-12-24
SCID: 54.1/x2sr8x6g
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galectinsglycosylation-dependent programshallmarks of cancertumor microenvironmenttumor progression
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Abstract (AI)
Hanahan and Weinberg have proposed 10 organizing principles that enable growth and metastatic dissemination of cancer cells. These distinctive and complementary capabilities, defined as the "hallmarks of cancer," include the ability of tumor cells and their microenvironment to sustain proliferative signaling, evade growth suppressors, resist cell death, promote replicative immortality, induce angiogenesis, support invasion and metastasis, reprogram energy metabolism, induce genomic instability and inflammation, and trigger evasion of immune responses. These common features are hierarchically regulated through different mechanisms, including those involving glycosylation-dependent programs that influence the biological and clinical impact of each hallmark. Galectins, an evolutionarily conserved family of glycan-binding proteins, have broad influence in tumor progression by rewiring intracellular and extracellular circuits either in cancer or stromal cells, including immune cells, endothelial cells, and fibroblasts. In this review, we dissect the role of galectins in shaping cellular circuitries governing each hallmark of tumors, illustrating relevant examples and highlighting novel opportunities for treating human cancer.
Key Findings
1
Galectins are evolutionarily conserved glycan-binding proteins that broadly regulate tumor progression across the hallmarks of cancer.
2
Galectins contribute to cellular mechanisms underlying proliferation, immune evasion, angiogenesis, invasion, metastasis, metabolism, inflammation, and resistance to cell death.
3
Galectins rewire intracellular and extracellular signaling circuits in cancer cells and stromal populations, including immune, endothelial, and fibroblast cells.
4
Glycosylation-dependent programs involving galectins influence the biological and clinical impact of multiple cancer hallmarks.
5
Targeting galectin-mediated circuitry represents a potential therapeutic opportunity for treating human cancer.
Research Object
Galectins in cancer cells and the tumor microenvironment
Research Subject
The roles and mechanisms by which galectins shape cellular circuits governing the hallmarks of tumor progression
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2019-12-24
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