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Glucose insult elicits hyperactivation of cancer stem cells through miR-424-cdc42-prdm14 signalling axis

  • Sushmita Bose Nandy
  • , Alexis Orozco
  • , Rebecca Lopez-Valdez
  • , Rene Roberts
  • , Ramadevi Subramani
  • , Arunkumar Arumugam
  • , Alok Kumar Dwivedi
  • , Viktoria Stewart
  • , Gautham Prabhakar
  • , Stephanie Jones
  • , Rajkumar Lakshmanaswamy*
  • , Emily Banks
  • , Lucy Carpenter
  • , Carol Dezateux
  • , Jane Green
  • , Julietta Patnick
  • , Richard Peto
  • , Cathie Sudlow
  • , Hayley Abbiss
  • , Simon Abbott
  • Krys Baker, Angela Balkwill, Isobel Barnes, Valerie Beral, Judith Black, Kathryn Bradbury, Anna Brown, Benjamin Cairns, Dexter Canoy, Andrew Chadwick, Dave Ewart, Sarah Ewart, Sarah Floud, Toral Gathani, Laura Gerrard, Adrian Goodill, Lynden Guiver, Darren Hogg, Alicia Heath, Carol Herman, Isobel Lingard, Sau WanKan, Nicky Langston, Kirstin Pirie, Gillian Reeves, Keith Shaw, Emma Sherman, Rachel Simpson, Helena Strange, Sian Sweetland, Sarah Tipper, Anthony Webster, Claire Wotton, Lucy Wright, Owen Yang, Heather Young
*Corresponding author for this work

Research output: Contribution to journalArticlepeer-review

Abstract

Background:Meta-analysis shows that women with diabetes have a 20% increased risk of breast cancer and also an increased risk for distant metastasis and mortality. The molecular mechanisms for distant metastasis and mortality in breast cancer patients with diabetes are not very well understood.Methods:We compared the effect of physiological (5 mM) and diabetic (10 mM) levels of glucose on malignant breast epithelial cell invasion and stemness capabilities. We performed microRNA array to determine the dysregulated microRNAs in hyperglycaemic conditions and performed functional and molecular analysis of the gene targets.Results:Hyperglycaemia leads to hyperactivation of cancer stem cell pool and enhances invasive ability of breast cancer cells. MiR-424 seems to be a key regulator of cancer cell stemness and invasion. Knockdown of miR-424 in cancer cells under euglycaemic conditions leads to enhanced invasion and stem cell activity, whereas ectopic expression of miR-424 in cancer cells under hyperglycaemic conditions results in suppressed invasion and stem cell activity. Cdc42, a target of miR-424, influences cancer stem cell activity by positively regulating prdm14 through activation of pak1 (p-21-activated kinase 1) and stat5.Conclusions:Our findings establish miR-424 €cdc42 prdm14 axis as a key molecular signalling cascade that might influence breast cancer progression in diabetic patients through hyperactivation of cancer stem cells.

Original languageEnglish
Pages (from-to)1665-1675
Number of pages11
JournalBritish Journal of Cancer
Volume117
Issue number11
Early online date12 Oct 2017
DOIs
Publication statusPublished - 21 Nov 2017

Keywords / Materials (for Non-textual outputs)

  • breast cancer metastasis
  • cancer stem cells
  • cdc42
  • diabetes
  • hyperglycaemia
  • prdm14

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