Abstract

BackgroundFerroptosis, a new form of programmed cell death, has great potential for cancer treatment. However, the roles of ferroptosis-related (FR) genes in breast cancer (BC) remain elusive.Materials and methodsUsing TCGA database, a novel FR risk signature was constructed through the Lasso regression analysis. Meanwhile, its prognostic value was assessed by a series of survival analyses. Besides, a nomogram was constructed to predict the overall survival rate (OSR) of individual at 1,3,5 year. Four validation cohorts (n = 2248), including METABRIC, GSE58812, GSE20685 and ICGC-KR datasets, were employed to test the prognostic value of FR risk signature. The effects of FR risk signature on BC immune microenvironment were explored by CIBERSORT algorithm and ssGSEA method. The histological expressions of FR risk genes were presented by HPA database. The biofunctions of SQLE were determined by qPCR, MTT, wound-healing and Transwell assays.ResultsWe constructed a novel FR risk signature consisting of eight genes. High FR risk led a poor prognosis and was identified as an independent prognostic factor. Besides, A higher proportion of patients with luminal A type was observed in low-risk group (53%), while a higher proportion of patients with basal type in high-risk group (24%). FR risk score could discriminate the prognostic difference of most clinical subgroups, except for M1 stage, HER2 and basal types. Moreover, its prognostic value was successfully validated in other four cohorts. Through immune analyses, we found that the reduced infiltration levels of CD8+ and NK cells, whereas the enhanced activity of antigen presentation process appeared in high FR risk. Then, FR risk score was found to weakly correlate with the expressions of six immune checkpoints. Through the experiments in vitro, we confirmed that overexpression of SQLE could promote, whereas blocking SQLE could inhibit the proliferative, migrative and invasive abilities of BC cells.ConclusionsFR risk signature was conducive to BC prognostic assessment. High FR risk level was closely associated with BC immunosuppression, but may not predict ICIs efficacy. Moreover, SQLE was identified as a crucial cancer-promoting gene in BC. Our findings provide new insights into prognostic assessment and molecular mechanism of BC.

Highlights

  • Breast cancer (BC) is the most common cancer in women worldwide, accounting for 25.4% of all female cancer cases, which places a heavy burden on patients’ health and economy [1]

  • We found that the reduced infiltration levels of CD8+ and NK cells, whereas the enhanced activity of antigen presentation process appeared in high FR risk

  • FR risk signature was conducive to breast cancer (BC) prognostic assessment

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Summary

Introduction

Breast cancer (BC) is the most common cancer in women worldwide, accounting for 25.4% of all female cancer cases, which places a heavy burden on patients’ health and economy [1]. In United States, the number of new cases of BC in 2020 was about 27,000, and led up to 42,000 cancer-related deaths, contributing to 14.7% of the total cancer-associated mortalities [2]. Its agestandardized incidence rate (ASR) increased from 39.2/ 100,000 to 45.9/100,000 [3, 4]. The treatment strategy and approach of BC have been greatly improved, the mortality rate of BC is still up to 1.34 per million in 2019, what’s more, its cancer-related deaths do not decrease [5]. Ferroptosis, a new form of programmed cell death, has great potential for cancer treatment. The roles of ferroptosis-related (FR) genes in breast cancer (BC) remain elusive

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