4.6 Article

Comparison of the mutational profiles of neuroendocrine breast tumours, invasive ductal carcinomas and pancreatic neuroendocrine carcinomas

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ONCOGENESIS
卷 11, 期 1, 页码 -

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SPRINGERNATURE
DOI: 10.1038/s41389-022-00427-1

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  1. University of Alabama in Birmingham [P30CA013148-48]
  2. Finnish Cancer Foundation

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The pathophysiology and optimal treatment of breast neuroendocrine tumors (NETs) are still unknown. This study compared the mutational profiles of breast NETs with those of invasive ductal carcinoma (IDC) and pancreatic NET (PNET) cases. The results showed that breast NETs have similar mutational profiles to IDCs and have distinct differences from PNETs. Breast NETs have clock-like mutational signatures and signatures associated with defective DNA mismatch repair. This study suggests that breast NETs are a unique subtype of breast cancer, but more research is needed to determine the optimal treatment.
The pathophysiology and the optimal treatment of breast neuroendocrine tumours (NETs) are unknown. We compared the mutational profiles of breast NETs (n = 53) with those of 724 publicly available invasive ductal carcinoma (IDC) and 98 pancreatic NET (PNET) cases. The only significantly different pathogenetic or unknown variant rate between breast NETs and IDCs was detected in the TP53 (11.3% in breast NETs and 41% in IDCs, adjusted p value 0.027) and ADCK2 (9.4% in breast NETs vs. 0.28% in IDCs, adjusted p value 0.045) genes. Between breast NETs and PNETs, different pathogenetic or unknown variant frequencies were detected in 30 genes. For example, MEN1 was mutated in only 6% of breast NETs and 37% in PNETs (adjusted p value 0.00050), and GATA3 pathogenetic or unknown variants were only found in 17.0% of breast NETs and 0% in PNETs (adjusted p value 0.0010). The most commonly affected oncogenic pathways in the breast NET cases were PI3K/Akt/mTOR, NOTCH and RTK-RAS pathways. Breast NETs had typically clock-like mutational signatures and signatures associated with defective DNA mismatch repair in their mutational landscape. Our results suggest that the breast NET mutational profile more closely resembles that of IDCs than that of PNETs. These results also revealed several potentially druggable targets, such as MMRd, in breast NETs. In conclusion, breast NETs are indeed a separate breast cancer entity, but their optimal treatment remains to be elucidated.

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