Metaproteomics and DNA metabarcoding as tools to assess dietary intake in humans
Petrone, B. L.; Bartlett, A.; Jiang, S.; Korenek, A.; Vintila, S.; Tenekjian, C. B.; Yancy, W. S.; David, L. A.; Kleiner, M.
Show abstract
Objective biomarkers of food intake are a sought-after goal in nutrition research. Most biomarker development to date has focused on metabolites detected in blood, urine, skin or hair, but detection of consumed foods in stool has also been shown to be possible via DNA sequencing. An additional food macromolecule in stool that harbors sequence information is protein. However, the use of protein as an intake biomarker has only been explored to a very limited extent. Here, we evaluate and compare measurement of residual food-derived DNA and protein in stool as potential biomarkers of intake. We performed a pilot study of DNA sequencing-based metabarcoding (FoodSeq) and mass spectrometry-based metaproteomics in five individuals stool sampled in short, longitudinal bursts accompanied by detailed diet records (n=27 total samples). Dietary data provided by stool DNA, stool protein, and written diet record independently identified a strong within-person dietary signature, identified similar food taxa, and had significantly similar global structure in two of the three pairwise comparisons between measurement techniques (DNA-to-protein and DNA-to-diet record). Metaproteomics identified proteins including myosin, ovalbumin, and beta-lactoglobulin that differentiated food tissue types like beef from dairy and chicken from egg, distinctions that were not possible by DNA alone. Overall, our results lay the groundwork for development of targeted metaproteomic assays for dietary assessment and demonstrate that diverse molecular components of food can be leveraged to study food intake using stool samples.
Matching journals
The top 6 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Longitudinal Saliva Omics Responses to Immune Perturbation: A Case Study 93%
- Antibiotics and the developing intestinal microbiome, metabolome and inflammatory environment: a randomized trial of preterm infants 92%
- Assessment of infant outgrowth of cow's milk allergy in relation to the faecal microbiome and metaproteome 92%
Similar papers in this journal
- Microbiota functional activity biosensors for characterizing nutrient utilization in vivo 93%
- Oral supplementation of gut microbial metabolite indole-3-acetate alleviates diet-induced steatosis and inflammation in mice 92%
- Vitamin B2 enables peroxisome proliferator-activated receptor α regulation of fasting glucose availability 92%
Similar papers in this journal
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.