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Phospholipid Mediator Induced Transformation in Three-Dimensional Cultures
Published on: July 27, 2022
Frequent phosphatidylinositol-3-kinase mutations in proliferative breast lesions
Daphne C Ang1, Andrea L Warrick2, Amy Shilling2
11] Department of Pathology, Oregon Health & Science University, Portland, OR, USA [2] Knight Cancer Institute, Oregon Health & Science University, Portland, OR, USA.
Abstract:
The phosphatidylinositol-3-kinase pathway is one of the most commonly altered molecular pathways in invasive breast carcinoma, with phosphatidylinositol-3-kinase catalytic subunit (PIK3CA) mutations in 25% of invasive carcinomas. Ductal carcinoma in situ (DCIS), benign papillomas, and small numbers of columnar cell lesions harbor an analogous spectrum of PIK3CA and AKT1 mutations, yet there is little data on usual ductal hyperplasia and atypical ductal and lobular neoplasias. We screened 192 formalin-fixed paraffin-embedded breast lesions from 75 patients for point mutations using a multiplexed panel encompassing 643 point mutations across 53 genes, including 58 PIK3CA substitutions. PIK3CA point mutations were identified in 31/62 (50%) proliferative lesions (usual ductal hyperplasia and columnar cell change), 10/14 (71%) atypical hyperplasias (atypical ductal hyperplasia and flat epithelial atypia), 7/16 (44%) lobular neoplasias (atypical lobular hyperplasia and lobular carcinoma in situ), 10/21 (48%) DCIS, and 13/37 (35%) invasive carcinomas. In genotyping multiple lesions of different stage from the same patient/specimen, we found considerable heterogeneity; most notably, in 12 specimens the proliferative lesion was PIK3CA mutant but the concurrent carcinoma was wild type. In 11 additional specimens, proliferative epithelium and cancer contained different point mutations. The frequently discordant genotypes of usual ductal hyperplasia/columnar cell change and concurrent carcinoma support a role for PIK3CA-activating point mutations in breast epithelial proliferation, perhaps more so than transformation. Further, these data suggest that proliferative breast lesions are heterogeneous and may represent non-obligate precursors of invasive carcinoma.
Insights
Mutations in the PIK3CA gene are common in breast lesions, including hyperplasia and carcinoma. These genetic changes show significant heterogeneity between different lesion types and even within the same patient, suggesting PIK3CA mutations drive proliferation.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- The phosphatidylinositol-3-kinase (PI3K) pathway is frequently altered in invasive breast carcinoma, with PIK3CA mutations found in 25% of cases.
- While PIK3CA and AKT1 mutations are known in DCIS and benign papillomas, data on usual ductal hyperplasia and atypical neoplasias is limited.
Purpose of the Study:
- To investigate the frequency and spectrum of PIK3CA point mutations in a range of benign and pre-malignant breast lesions.
- To analyze the genetic heterogeneity of PIK3CA mutations between different stages of breast lesions within the same patient.
Main Methods:
- Screening of 192 formalin-fixed paraffin-embedded breast lesions from 75 patients for point mutations.
- Utilized a multiplexed panel covering 643 point mutations across 53 genes, including 58 PIK3CA substitutions.
Main Results:
- PIK3CA point mutations were detected in 50% of proliferative lesions, 71% of atypical hyperplasias, 44% of lobular neoplasias, 48% of DCIS, and 35% of invasive carcinomas.
- Significant genetic heterogeneity was observed, with PIK3CA mutations found in proliferative lesions but not in concurrent carcinomas in 12 specimens.
- In 11 cases, different PIK3CA point mutations were present in proliferative epithelium and concurrent cancer.
Conclusions:
- Frequently discordant PIK3CA genotypes between proliferative lesions and concurrent carcinomas suggest a role in breast epithelial proliferation rather than direct transformation.
- The findings indicate that proliferative breast lesions are genetically heterogeneous and may not be obligate precursors to invasive carcinoma.
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