Role and regulation of coordinately expressedde novopurine biosynthetic enzymesPPATandPAICSin lung cancer

生物 基因敲除 癌症研究 分子生物学 生物化学 基因
作者
Moloy T. Goswami,Guoan Chen,Balabhadrapatruni V. S. K. Chakravarthi,Satya S. Pathi,Sharath Kumar Anand,Shannon L. Carskadon,Thomas J. Giordano,Arul M. Chinnaiyan,Dafydd G. Thomas,Nallasivam Palanisamy,David G. Beer,Sooryanarayana Varambally
出处
期刊:Oncotarget [Impact Journals, LLC]
卷期号:6 (27): 23445-23461 被引量:110
标识
DOI:10.18632/oncotarget.4352
摘要

Cancer cells exhibit altered metabolism including aerobic glycolysis that channels several glycolytic intermediates into de novo purine biosynthetic pathway. We discovered increased expression of phosphoribosyl amidotransferase (PPAT) and phosphoribosylaminoimidazole carboxylase, phosphoribosylaminoimidazole succinocarboxamide synthetase (PAICS) enzymes of de novo purine biosynthetic pathway in lung adenocarcinomas. Transcript analyses from next-generation RNA sequencing and gene expression profiling studies suggested that PPAT and PAICS can serve as prognostic biomarkers for aggressive lung adenocarcinoma. Immunohistochemical analysis of PAICS performed on tissue microarrays showed increased expression with disease progression and was significantly associated with poor prognosis. Through gene knockdown and over-expression studies we demonstrate that altering PPAT and PAICS expression modulates pyruvate kinase activity, cell proliferation and invasion. Furthermore we identified genomic amplification and aneuploidy of the divergently transcribed PPAT-PAICS genomic region in a subset of lung cancers. We also present evidence for regulation of both PPAT and PAICS and pyruvate kinase activity by L-glutamine, a co-substrate for PPAT. A glutamine antagonist, 6-Diazo-5-oxo-L-norleucine (DON) blocked glutamine mediated induction of PPAT and PAICS as well as reduced pyruvate kinase activity. In summary, this study reveals the regulatory mechanisms by which purine biosynthetic pathway enzymes PPAT and PAICS, and pyruvate kinase activity is increased and exposes an existing metabolic vulnerability in lung cancer cells that can be explored for pharmacological intervention.
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