Evidence map›Paper›PMID 42157167›Full record

ArticleBMC cancer2026

P53 - a new player in the metabolic adaptation of colorectal carcinoma cells under hypoxia.

Stefanie Saoub, Eric Metzen, Basant Kumar Thakur, Yoshiyuki Henning, Yves Schild, Tristan Leu, Joachim Fandrey, Anna Wrobeln

Abstract read
In one paragraph

Article in BMC cancer, 2026. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Not yet cited in PubMed.

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1 · What the graph read from it

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2 · The registry

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3 · Its place in the literature

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4 · The record

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5 · Who and what money

Authors and funding

8 authors.

Stefanie SaoubInstitute of Physiology, University of Duisburg Essen, Hufelandstraße 55, Essen, 45147, Germany.
Eric MetzenInstitute of Physiology, University of Duisburg Essen, Hufelandstraße 55, Essen, 45147, Germany.
Basant Kumar ThakurDepartment of Pediatrics III, University Hospital Essen, Hufelandstraße 55, Essen, 45147, Germany.
Yoshiyuki HenningInstitute of Physiology, University of Duisburg Essen, Hufelandstraße 55, Essen, 45147, Germany.
Yves SchildInstitute of Physiology, University of Duisburg Essen, Hufelandstraße 55, Essen, 45147, Germany.
Tristan LeuInstitute of Physiology, University of Duisburg Essen, Hufelandstraße 55, Essen, 45147, Germany.
Joachim FandreyInstitute of Physiology, University of Duisburg Essen, Hufelandstraße 55, Essen, 45147, Germany.
Anna WrobelnInstitute of Physiology, University of Duisburg Essen, Hufelandstraße 55, Essen, 45147, Germany. anna.wrobeln@uk-essen.de.

Funding

No grant is acknowledged in the PubMed record.

6 · The paper itself

Abstract

backgroundColorectal cancer (CRC) frequently exhibits hypoxic regions due to poor vascularization, leading to the stabilization of hypoxia-inducible factor 1 alpha (HIF-1α). Moreover, mutations in the tumour suppressor p53 occur in approximately half of all CRCs. While the individual roles of both transcription factors in tumour cell survival are well characterized, their interaction and its influence on the metabolic adaptation of CRC cells under hypoxic stress remain unclear.

methodsUsing HCT116 CRC cells with targeted deletions of TP53 and HIF1A, we examined the effects of p53 loss on HIF-1 signalling and the respective consequences for metabolic adaptation as well as the survival of CRC cells under moderate (1% O₂) and severe (0.1% O₂) hypoxia.

resultsSevere hypoxia stabilized p53 protein levels despite the transcriptional repression of TP53, possibly through posttranslational mechanisms and dependent on nutrient availability. In contrast to the assumption that p53 is transcriptionally inactive under hypoxia, we observed stable expression of p53 target genes (P21, BAX) under severe hypoxia, indicating functional transactivation. Loss of p53 impaired the early induction of HIF-1 target genes (VEGF, PHD2), although HIF-1α protein levels and DNA binding were unaffected, suggesting a coactivator role for p53. Furthermore, compared with wild-type cells, p53-deficient cells presented delayed but exaggerated expression of glycolytic genes, including Glucose Uptake Transporter 1 (GLUT1), Phosphofructokinase Liver-Type (PFKL) and Lactate Dehydrogenase A (LDHA), under hypoxia, with no impairment of glycolytic function or cell viability. Remarkably, even HIF1A knockout cells preserved glycolysis, whereas glycolytic genes were significantly downregulated, indicating HIF-1-independent metabolic compensation.

conclusionOur findings position p53 as a temporal gatekeeper and key regulator of hypoxic adaptation in CRC cells, coordinating early gene induction and metabolic responses. The ability of CRC cells to maintain glycolysis despite the loss of p53, respectively, HIF-1α underscores the existence of compensatory HIF-independent pathways. Targeting these alternative circuits may represent a promising strategy in hypoxic, p53-deficient CRC.

Indexed as

Colorectal NeoplasmsTumor Suppressor Protein p53Adaptation, PhysiologicalCell HypoxiaCell Line, TumorCell SurvivalGene Expression Regulation, NeoplasticGlucose Transporter Type 1GlycolysisHCT116 CellsHumansHypoxia-Inducible Factor 1, alpha SubunitHypoxia-Inducible Factor-Proline DioxygenasesMetabolic ReprogrammingSignal TransductionVascular Endothelial Growth Factor AEGLN1 protein, humanGlucose Transporter Type 1HIF1A protein, humanHypoxia-Inducible Factor 1, alpha SubunitHypoxia-Inducible Factor-Proline DioxygenasesSLC2A1 protein, humanTP53 protein, humanTumor Suppressor Protein p53Vascular Endothelial Growth Factor AColorectal cancerGlycolysisHIF-1αHypoxiaMetabolic adaptationP53Transcriptional regulation

Identifiers

PMID42157167
PMCPMC13185365

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Read under generation 80e0d062 · epoch 390. Bibliography from PubMed, PubMed Central and OpenAlex; grants from NIH RePORTER; trial links from ClinicalTrials.gov; estimates, votes and beliefs from the OpenQuestion graph.