The ATR-Chk1 and ATM-Chk2 pathways are central in DNA damage repair (DDR) and their over-activation may confer aggressive molecular features, being an adaptive response to endogenous DNA damage and oncogene-induced replication stress. Herein we investigated the ATR-Chk1 and ATM-Chk2 signalings in male breast cancer (MBC). The expression of DDR kinases (pATR, pATM, pChk1, pChk2, and pWee1) and DNA damage markers (pRPA32 and \uce\ub3-H2AX) was evaluated by immunohistochemistry in 289 MBC samples to assess their association. Survival analyses were carried out in 112 patients. Survival curves were estimated with the Kaplan-Meier method and compared by log-rank test. Cox proportional regression models were generated to identify variables impacti...
ATR is an attractive target in cancer therapy because it signals replication stress and DNA lesions ...
Response of cancer cells to chemotherapy-induced DNA damage is regulated by the ATM-Chk2 and ATR-Chk...
PURPOSE: MYC transcription factor has critical roles in cell growth, proliferation, metabolism, diff...
The ATR-Chk1 and ATM-Chk2 pathways are central in DNA damage repair (DDR) and their over-activation ...
Background: ATR-Chk1 signalling network is critical for genomic stability. ATR-Chk1 may be deregulat...
ATM-Chk2 network is critical for genomic stability, and its deregulation may influence breast cancer...
Purpose: MYC transcription factor has critical roles in cell growth, proliferation, metabolism, diff...
ATM-Chk2 network is critical for genomic stability, and its deregulation may influence breast cancer...
AbstractATM-Chk2 network is critical for genomic stability, and its deregulation may influence breas...
DNA damage is a key factor both in the evolution and treatment of cancer. Genomic instability is a c...
AbstractBackgroundAtaxia-telangiectasia mutated (ATM), ataxia-telangiectasia mutated and rad3 relate...
Background: Male breast cancer (MBC) is a rare disease compared to female breast cancer (FBC). MBC s...
Background: Ataxia-telangiectasia mutated (ATM), ataxia-telangiectasia mutated and rad3 related (ATR...
AbstractIn order to maintain genomic stability, cells have developed sophisticated signalling pathwa...
Chromosomal instability not only has a negative effect on survival in triple-negative breast cancer,...
ATR is an attractive target in cancer therapy because it signals replication stress and DNA lesions ...
Response of cancer cells to chemotherapy-induced DNA damage is regulated by the ATM-Chk2 and ATR-Chk...
PURPOSE: MYC transcription factor has critical roles in cell growth, proliferation, metabolism, diff...
The ATR-Chk1 and ATM-Chk2 pathways are central in DNA damage repair (DDR) and their over-activation ...
Background: ATR-Chk1 signalling network is critical for genomic stability. ATR-Chk1 may be deregulat...
ATM-Chk2 network is critical for genomic stability, and its deregulation may influence breast cancer...
Purpose: MYC transcription factor has critical roles in cell growth, proliferation, metabolism, diff...
ATM-Chk2 network is critical for genomic stability, and its deregulation may influence breast cancer...
AbstractATM-Chk2 network is critical for genomic stability, and its deregulation may influence breas...
DNA damage is a key factor both in the evolution and treatment of cancer. Genomic instability is a c...
AbstractBackgroundAtaxia-telangiectasia mutated (ATM), ataxia-telangiectasia mutated and rad3 relate...
Background: Male breast cancer (MBC) is a rare disease compared to female breast cancer (FBC). MBC s...
Background: Ataxia-telangiectasia mutated (ATM), ataxia-telangiectasia mutated and rad3 related (ATR...
AbstractIn order to maintain genomic stability, cells have developed sophisticated signalling pathwa...
Chromosomal instability not only has a negative effect on survival in triple-negative breast cancer,...
ATR is an attractive target in cancer therapy because it signals replication stress and DNA lesions ...
Response of cancer cells to chemotherapy-induced DNA damage is regulated by the ATM-Chk2 and ATR-Chk...
PURPOSE: MYC transcription factor has critical roles in cell growth, proliferation, metabolism, diff...