Abstract

BackgroundArgonaute-2 (Ago2) is an essential component of microRNA biogenesis implicated in tumourigenesis. However Ago2 expression and localisation in breast cancer remains undetermined. The aim was to define Ago2 expression (mRNA and protein) and localisation in breast cancer, and investigate associations with clinicopathological details.MethodsAgo2 protein was stained in breast cancer cell lines and tissue microarrays (TMAs), with intensity and localization assessed. Staining intensity was correlated with clinicopathological details. Using independent databases, Ago2 mRNA expression and gene alterations in breast cancer were investigated.ResultsIn the breast cancer TMAs, 4 distinct staining intensities were observed (Negative, Weak, Moderate, Strong), with 64.2% of samples stained weak or negatively for Ago2 protein. An association was found between strong Ago2 staining and, the Her2 positive or basal subtypes, and between Ago2 intensity and receptor status (Estrogen or Progesterone). In tumours Ago2 mRNA expression correlated with reduced relapse free survival. Conversely, Ago2 mRNA was expressed significantly lower in SK-BR-3 (HER2 positive) and BT-20 (Basal/Triple negative) cell lines. Interestingly, high levels of Ago2 gene amplification (10–27%) were observed in breast cancer across multiple patient datasets. Importantly, knowledge of Ago2 expression improves predictions of breast cancer subtype by 20%, ER status by 15.7% and PR status by 17.5%.ConclusionsQuantification of Ago2 improves the stratification of breast cancer and suggests a differential role for Ago2 in breast cancer subtypes, based on levels and cellular localisation. Further investigation of the mechanisms affecting Ago2 dysregulation will reveal insights into the molecular differences underpinning breast cancer subtypes.

Highlights

  • Argonaute-2 (Ago2) is an essential component of microRNA biogenesis implicated in tumourigenesis

  • The cell lines were assayed for Ago2 Messenger RNA (mRNA) expression (Additional file 1: Figure S1A)

  • Stratifying the Ago2 stained sections by subtype, we find that the tissue microarrays (TMAs) loosely follows the Evaluating Ago2 staining intensity and clinicopathological variables To explore the relevance of Ago2 staining as a prognostic or diagnostic marker, associations between Ago2 intensity and key clinicopathological factors were tested

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Summary

Introduction

Argonaute-2 (Ago2) is an essential component of microRNA biogenesis implicated in tumourigenesis. The miRNA independent role of Ago in regulating the transcription of the tumour metastasis factor focal adhesion kinase (FAK), suggests another role for Ago in mediating tumour progression [4,5,6,7,8]. Together, these results indicate that Ago could play a role in cancer progression or response to treatments. While Ago plays an essential role in the regulation of molecules and pathways with known involvements in the initiation and progression of breast cancer, Ago levels in breast cancer have not been investigated or correlated with key clinicopathological criteria (such as survival)

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