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131.
132.
Catherine Potter Jill McKay Alexandra Groom Dianne Ford Lisa Coneyworth John C. Mathers Caroline L. Relton 《PloS one》2013,8(10)
This study examines the relationship between common genetic variation within DNA methyltransferase genes and inter-individual variation in DNA methylation. Eleven polymorphisms spanning DNMT1 and DNMT3B were genotyped. Global and gene specific (IGF2, IGFBP3, ZNT5) DNA methylation was quantified by LUMA and bisulfite Pyrosequencing assays, respectively, in neonatal cord blood and in maternal peripheral blood. Associations between maternal genotype and maternal methylation (n ≈ 333), neonatal genotype and neonatal methylation (n ≈ 454), and maternal genotype and neonatal methylation (n ≈ 137) were assessed. The findings of this study provide some support to the hypothesis that genetic variation in DNA methylating enzymes influence DNA methylation at global and gene-specific levels; however observations were not robust to correction for multiple testing. More comprehensive analysis of the influence of genetic variation on global and site specific DNA methylation is warranted. 相似文献
133.
Development and validation of a standardized protocol to monitor human dietary exposure by metabolite fingerprinting of urine samples 总被引:1,自引:0,他引:1
Favé G Beckmann M Lloyd AJ Zhou S Harold G Lin W Tailliart K Xie L Draper J Mathers JC 《Metabolomics : Official journal of the Metabolomic Society》2011,7(4):469-484
Conventional tools for measuring dietary exposure have well recognized limitations. Measurement of food-derived metabolites
in biofluids provides an alternative approach and our aim was to develop an experimental protocol which ensures that extraneous
variability does not obscure metabolic signals from ingested foods. Healthy adults consumed a standardized meal in the evening
before each test day and collected pooled overnight urine. On each test day of three different studies, urine was collected
in the fasted state and at different time points after consumption of a standardized breakfast. Metabolite fingerprinting
of samples using Flow Infusion Electrospray-Ionization Mass Spectrometry followed by multivariate data analysis showed strong
discrimination between overnight, fasting and postprandial samples, in each study separately and when data from the three
studies were pooled. Such differences were robust and highly reproducible within individuals on separate occasions. Urine
volume was an efficient data normalization factor for metabolite fingerprinting data. Postprandial urines had a stable chemical
composition over a period of 2–4 h after eating a standardized breakfast, suggesting that there is a flexible time window
for urine collection. Fasting urine samples provided a stable baseline for universal comparisons with postprandial samples.
A dietary exposure biomarker discovery protocol was validated by demonstrating that top-ranked signals discriminating between
fasting and 2–4 h postprandial urine samples could be linked to metabolites abundant in some components of the standardized
breakfast. We conclude that the protocol developed will have value in the search for biomarker leads of dietary exposure. 相似文献
134.
A variant strain was developed fromMicrococcus luteus ATCC 10240 for the purpose of bioassay analysis of bacitracin in the presence of chlortetracycline (CTC). Strain EN5 resulted from four sequential mutation steps, using quantitative resistance to CTC and retained bacitracin sensitivity as a selective criterion. Strain EN5 was tested for bioassay response, stability, and identity. The strain measured bacitracin activity with no interference from 40 g ml–1 added CTC. 相似文献
135.
Sequence variation among 10 alleles of the alcohol dehydrogenase (Adh) gene
of the Hawaiian drosophilid D. mimica was analyzed with reference to the
evolutionary history of the Hawaiian subgroup as well as to levels and
patterns of polymorphism of the Adh gene in continental drosophilid
species. The Adh gene of D. mimica is less polymorphic than that of other
drosophilid species, and no replacement substitutions were found.
Statistical analyses of the Adh alleles suggested the action of balancing
selection and revealed significant linkage disequilibrium among three of
the variable sites. The effective population size was estimated to be only
slightly smaller than that of continental species and, surprisingly, on the
same order of magnitude as the actual size.
相似文献
136.
Gretchen A. Stevens Leontine Alkema Robert E. Black J. Ties Boerma Gary S. Collins Majid Ezzati John T. Grove Daniel R. Hogan Margaret C. Hogan Richard Horton Joy E. Lawn Ana Maru?i? Colin D. Mathers Christopher J. L. Murray Igor Rudan Joshua A. Salomon Paul J. Simpson Theo Vos Vivian Welch The GATHER Working Group 《PLoS medicine》2016,13(6)
137.
Transitions in sexual system and reproductive mode may affect the course of sex chromosome evolution, for instance by altering the strength of sexually antagonistic selection. However, there have been few studies of sex chromosomes in systems where such transitions have been documented. The European tadpole shrimp, Triops cancriformis, has undergone a transition from dioecy to androdioecy (a sexual system where hermaphrodites and males coexist), offering an excellent opportunity to test the impact of this transition on the evolution of sex chromosomes. To identify sex-linked markers, to understand mechanisms of sex determination and to investigate differences between sexual systems, we carried out a genome-wide association study using restriction site-associated DNA sequencing (RAD-seq) of 47 males, females and hermaphrodites from one dioecious and one androdioecious population. We analysed 22.9 Gb of paired-end sequences and identified and scored >3000 high coverage novel genomic RAD markers. Presence–absence of markers, single-nucleotide polymorphism association and read depth identified 52 candidate sex-linked markers. We show that sex is genetically determined in T. cancriformis, with a ZW system conserved across dioecious and androdioecious populations and that hermaphrodites have likely evolved from females. We also show that the structure of the sex chromosomes differs strikingly, with a larger sex-linked region in the dioecious population compared with the androdioecious population. 相似文献
138.
Mathers JC 《Genes & nutrition》2007,2(1):67-70
Quantitative epidemiological analysis suggests that about one third of the variation in cancer risk can be attributed to variation in dietary exposure but it has proved difficult, using conventional epidemiological approaches, to identify which dietary components, in what amounts and over what time-scales are protective or potentially hazardous. Work in this area has been hampered by the lack of robust surrogate endpoints. However, the rapidly accumulating knowledge of the biological basis of cancer and the application of post-genomic technologies are helping the development of novel biomarkers of cancer risk. Genomic damage resulting in aberrant gene expression is the fundamental cause of all cancers. Such damage includes mutations, aberrant epigenetic marking, chromosomal damage and telomere shortening. Since both external agents and normal cell functions, such as mitosis, subject the genome to frequent and diverse insults, the human cell has evolved a battery of defence mechanisms which (a) attempt to minimize such damage (including inhibition of oxidative reactions by free radical scavenging and the detoxification of potential mutagens), (b) repair the damage or (c) remove severely damaged cells by shunting them into apoptosis. When such defences fail and a tumour becomes established, further genomic damage and further alterations in gene expression enable the tumour to grow, to cope with anoxia, to develop a novel blood supply (angiogenesis), to escape from the confines of its initiation site and to establish colonies elsewhere in the body (metastasis). All of these processes are potentially modifiable by food components and by nutritional status. In addition, interactions between dietary (and other environmental and lifestyle) factors and genetic make-up [seen principally in the assembly of single nucleotide polymorphisms (SNPs) which is unique to each individual] contributes to interindividual differences in cancer risk. 相似文献
139.
Bermano G Pagmantidis V Holloway N Kadri S Mowat NA Shiel RS Arthur JR Mathers JC Daly AK Broom J Hesketh JE 《Genes & nutrition》2007,2(2):225-232
Low selenium (Se) status has been associated with increased risk of colorectal cancer (CRC). Se is present as the amino acid selenocysteine in selenoproteins, such as the glutathione peroxidases. Se incorporation requires specific RNA structures in the 3' untranslated region (3'UTR) of the selenoprotein mRNAs. A single nucleotide polymorphism (SNP) occurs at nucleotide 718 (within the 3'UTR) in the glutathione peroxidase 4 gene. In the present study, Caco-2 cells were transfected with constructs in which type 1 iodothyronine deiodinase coding region was linked to the GPx4 3'UTR with either C or T variant at position 718. Higher reporter activity was observed in cells expressing the C variant compared to those expressing the T variant, under either Se-adequate or Se-deficient conditions. In addition, a disease association study was carried out in cohorts of patients with either adenomatous polyps, colorectal adenocarcinomas and in healthy controls. A higher proportion of individuals with CC genotype at the GPx4 T/C 718 SNP was present in the cancer group, but not in the polyp group, compared with the control group (P < 0.05). The present data demonstrate the functionality of the GPx4 T/C 718 SNP and suggest that T genotype is associated with lower risk of CRC. 相似文献
140.