Andrologia · 2018 · 20 citations · 20 references
SpermatogenesisFertilityGeneticsReproductive HealthHuman PolymorphismGynecologyMolecular BiologyMolecular GeneticsSemen AnalysisReproductive BiologyMature SpermatozoaFemale InfertilityDna Repair GenesHuman Male InfertilityMale InfertilityGerm Cell DevelopmentReproductive MedicinePublic HealthXrcc1 Arg399gln PolymorphismGenome InstabilityInfertilityAndrologyDna Repair CapacityGameteSeminal ParametersHuman ReproductionMedicine
The DNA repair capacity in the mature spermatozoa is highly compromised due to the base-excision repair (BER) route being truncated. In the mature spermatozoa, only the first enzyme of the route (OGG1) is present. Consequently, reduced activity of the enzymes of the BER route both during spermatogenesis and in the mature spermatozoa may be detrimental for fertility. The objective of our study was to investigate the correlation between two representative SNPs of those enzymes, SNPs OGG1 Ser326Cys (rs1052133) and XRCC1 Arg399Gln (rs25487) and male infertility. A total of 313 seminal samples from infertile patients and 80 from donors with proven fertility were included in the study. All samples were subjected to a regular sperm analysis and genotyped using the PCR-RFLP system. We found significant differences in the genotype frequencies between patients and donors for the XRCC1 Arg399Gln polymorphism (χ2(2) = 8.7, p = 0.013), with the Gln allele showing a protective role and for the OGG1 Ser326Cys polymorphism between normozoospermic and non-normozoospermic patients (χ2(2) = 12.67, p = 0.002) with the Cys allele showing a detrimental effect over concentration. In conclusion, our study shows that polymorphisms in the genes coding for the DNA damage repair enzymes may be associated with poor sperm parameters and male infertility.
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Michael L. Wood, Asunción Esteve, Marshall Morningstar et al. · Nucleic Acids Research · 1992 · 196 citations · Full text