DNA repair processes are involved in both the onset and treatment efficacy of colorectal cancer (CRC). A change of a single nucleotide causing an amino acid substitution in the corresponding protein may alter the efficiency of DNA repair, thus modifying the CRC susceptibility and clinical outcome. We performed a candidate gene approach in order to analyze the association of non-synonymous single nucleotide polymorphisms (nsSNPs) in the genes covering the main DNA repair pathways with CRC risk and clinical outcome modifications. Our candidate polymorphisms were selected according to the foremost genomic and functional prediction databases. Sixteen nsSNPs in 12 DNA repair genes were evaluated in cohorts from the Czech Republic and Austria. Ap...
The capacity to repair damaged DNA is a basic tool by which the mammalian cell maintains its genetic...
Common polymorphisms in DNA repair genes may alter protein function and an individual’s capacity to ...
The first two studies aiming for the high-throughput identification of the somatic mutation spectrum...
Despite their prime candidate status, polymorphisms near genes involved in DNA repair or in other fu...
Sporadic colorectal cancer (CRC) is a common disease with complex aetiology and diverse molecular ph...
Interindividual differences in DNA repair systems may play a role in modulating the individual risk ...
Colorectal cancer represents a complex disease where susceptibility may be influenced by genetic pol...
DNA repair plays a pivotal role in maintaining genomic integrity with over 130 genes involved in var...
DNA repair has an essential role in protecting the genome from damage by endogenous and environmenta...
There is variability in clinical outcome for patients with apparently the same stage colorectal canc...
The role of DNA repair in initiation, promotion, and progression of malignancy suggests that variati...
Polymorphisms in DNA repair genes may affect the activity of the BER (base excision repair) and NER ...
Reduced DNA repair capacity and DNA damage accumulation may lead to cancer development. Regulation o...
OBJECTIVES: Approximately 35% of colorectal cancer (CRC) risk is attributable to heritable factors k...
Genome-wide association studies have identified several germline single nucleotide polymorphisms (SN...
The capacity to repair damaged DNA is a basic tool by which the mammalian cell maintains its genetic...
Common polymorphisms in DNA repair genes may alter protein function and an individual’s capacity to ...
The first two studies aiming for the high-throughput identification of the somatic mutation spectrum...
Despite their prime candidate status, polymorphisms near genes involved in DNA repair or in other fu...
Sporadic colorectal cancer (CRC) is a common disease with complex aetiology and diverse molecular ph...
Interindividual differences in DNA repair systems may play a role in modulating the individual risk ...
Colorectal cancer represents a complex disease where susceptibility may be influenced by genetic pol...
DNA repair plays a pivotal role in maintaining genomic integrity with over 130 genes involved in var...
DNA repair has an essential role in protecting the genome from damage by endogenous and environmenta...
There is variability in clinical outcome for patients with apparently the same stage colorectal canc...
The role of DNA repair in initiation, promotion, and progression of malignancy suggests that variati...
Polymorphisms in DNA repair genes may affect the activity of the BER (base excision repair) and NER ...
Reduced DNA repair capacity and DNA damage accumulation may lead to cancer development. Regulation o...
OBJECTIVES: Approximately 35% of colorectal cancer (CRC) risk is attributable to heritable factors k...
Genome-wide association studies have identified several germline single nucleotide polymorphisms (SN...
The capacity to repair damaged DNA is a basic tool by which the mammalian cell maintains its genetic...
Common polymorphisms in DNA repair genes may alter protein function and an individual’s capacity to ...
The first two studies aiming for the high-throughput identification of the somatic mutation spectrum...