Serine and one-carbon metabolisms bring new therapeutic venues in prostate cancer

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作者
Carlo Ganini
Ivano Amelio
Riccardo Bertolo
Eleonora Candi
Angela Cappello
Chiara Cipriani
Alessandro Mauriello
Carla Marani
Gerry Melino
Manuela Montanaro
Maria Emanuela Natale
Giuseppe Tisone
Yufang Shi
Ying Wang
Pierluigi Bove
机构
[1] University of Rome Tor Vergata,Department of Experimental Medicine, Torvergata Oncoscience Research Centre of Excellence, TOR
[2] San Carlo di Nancy Hospital,CAS Key Laboratory of Tissue Microenvironment and Tumor, Shanghai Institute of Nutrition and Health, Shanghai Institutes for Biological Sciences
[3] IDI-IRCCS,The First Affiliated Hospital of Soochow University and State Key Laboratory of Radiation Medicine and Protection, Institutes for Translational Medicine
[4] University of Chinese Academy of Sciences,undefined
[5] Chinese Academy of Sciences,undefined
[6] Soochow University,undefined
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关键词
Serine; One-carbon metabolism; Prostate cancer metabolism;
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摘要
Serine and one-carbon unit metabolisms are essential biochemical pathways implicated in fundamental cellular functions such as proliferation, biosynthesis of important anabolic precursors and in general for the availability of methyl groups. These two distinct but interacting pathways are now becoming crucial in cancer, the de novo cytosolic serine pathway and the mitochondrial one-carbon metabolism. Apart from their role in physiological conditions, such as epithelial proliferation, the serine metabolism alterations are associated to several highly neoplastic proliferative pathologies. Accordingly, prostate cancer shows a deep rearrangement of its metabolism, driven by the dependency from the androgenic stimulus. Several new experimental evidence describes the role of a few of the enzymes involved in the serine metabolism in prostate cancer pathogenesis. The aim of this study is to analyze gene and protein expression data publicly available from large cancer specimens dataset, in order to further dissect the potential role of the abovementioned metabolism in the complex reshaping of the anabolic environment in this kind of neoplasm. The data suggest a potential role as biomarkers as well as in cancer therapy for the genes (and enzymes) belonging to the one-carbon metabolism in the context of prostatic cancer.
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