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Articles 1 - 3 of 3
Full-Text Articles in Cancer Biology
Functional Analysis Provides Insight Into Missing Heritability, Scott L. Baughan, Michael A. Tainsky, Fatima Darwiche
Functional Analysis Provides Insight Into Missing Heritability, Scott L. Baughan, Michael A. Tainsky, Fatima Darwiche
Medical Student Research Symposium
Accurate ascertainment of genetic risk can be potentially lifesaving for patients who inherit cancer promoting mutations. However, even with the most extensive panel testing clinically available, a large number of patients will test negative despite family history of cancer or test positive for a variant of unknown significance (VUS). For these patients, clinical management is complicated; patients want to know their risk, and may fear disease they are not at great risk for (benign VUS) or they may not be given access to potentially lifesaving early screening procedures (pathogenic VUS). ATM has proven a challenge to clinicians due to its …
Breast Cancer Screening Implications Of Risk Modeling Among Female Relatives Of Atm And Chek2 Carriers, Anne E. Weidner, Mariel E. Liggin, Brenda I. Zuniga, Ann L. Tezak, Georgia L. Wiesner, Tuya Pal
Breast Cancer Screening Implications Of Risk Modeling Among Female Relatives Of Atm And Chek2 Carriers, Anne E. Weidner, Mariel E. Liggin, Brenda I. Zuniga, Ann L. Tezak, Georgia L. Wiesner, Tuya Pal
Biology Student Research
Background
With the increasing use of multigene panel tests, pathogenic and likely pathogenic (P/LP) variants are identified more frequently in the moderate-penetrance breast cancer genes ATM and CHEK2. Lifetime breast cancer risk among women with P/LP variants in these genes generally exceeds 20%, meeting the threshold at which high-risk breast cancer screening through breast magnetic resonance imaging (MRI) is recommended.
Methods
Among a registry-based sample of 56 ATM and 69 CHEK2 carriers, the authors sought to determine the percentage of relatives in whom a P/LP variant would impact breast cancer surveillance. Lifetime breast cancer risks for unaffected, female first-degree …
Atm Signaling To Tsc2: Mechanisms And Implications For Cancer Therapy, Angela Alexander
Atm Signaling To Tsc2: Mechanisms And Implications For Cancer Therapy, Angela Alexander
Dissertations & Theses (Open Access)
Ataxia telangiectasia mutated (ATM) is a critical component of the cellular response to DNA damage, where it acts as a damage sensor, and signals to a large network of proteins which execute the important tasks involved in responding to the damage, namely inducing cell cycle checkpoints, inducing DNA repair, modulating transcriptional responses, and regulating cell death pathways if the damage cannot be repaired faithfully. We have now discovered that an additional novel component of this ATM-dependent damage response involves induction of autophagy in response to oxidative stress. In contrast to DNA damage-induced ATM activation however, oxidative stress induced ATM, occurs …