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Development of an Enhanced Metaproteomic Approach for Deepening the Microbiome Characterization of the Human Infant Gut
Author(s) -
Weili Xiong,
Richard J. Gian,
Michael J. Morowitz,
Jillian F. Banfield,
Robert L. Hettich
Publication year - 2014
Publication title -
journal of proteome research
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.644
H-Index - 161
eISSN - 1535-3907
pISSN - 1535-3893
DOI - 10.1021/pr500936p
Subject(s) - metaproteomics , proteome , metagenomics , biology , microbiome , human microbiome , feces , gut flora , computational biology , human feces , gut microbiome , microbiology and biotechnology , bioinformatics , immunology , biochemistry , gene
The establishment of early life microbiota in the human infant gut is highly variable and plays a crucial role in host nutrient availability/uptake and maturation of immunity. Although high-performance mass spectrometry (MS)-based metaproteomics is a powerful method for the functional characterization of complex microbial communities, the acquisition of comprehensive metaproteomic information in human fecal samples is inhibited by the presence of abundant human proteins. To alleviate this restriction, we have designed a novel metaproteomic strategy based on double filtering (DF) the raw samples, a method that fractionates microbial from human cells to enhance microbial protein identification and characterization in complex fecal samples from healthy premature infants. This method dramatically improved the overall depth of infant gut proteome measurement, with an increase in the number of identified low-abundance proteins and a greater than 2-fold improvement in microbial protein identification and quantification. This enhancement of proteome measurement depth enabled a more extensive microbiome comparison between infants by not only increasing the confidence of identified microbial functional categories but also revealing previously undetected categories.

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