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The MPLEx Protocol for Multi-omic Analyses of Soil Samples
Published on: May 30, 2018
Protein extraction method for the proteomic study of a Mexican traditional fermented starchy food
C Cárdenas1, B J Barkla2, C Wacher3
1Instituto de Investigaciones Biomédicas, Universidad Nacional Autónoma de México, Distrito Federal 04510, México; Programa de Posgrado en Ciencias Bioquímicas, Universidad Nacional Autónoma de México, Distrito Federal 04510, México.
Abstract:
Pozol is a traditional fermented maize dough prepared in southeastern Mexico. Wide varieties of microorganisms have already been isolated from this spontaneously fermented product; and include fungi, yeasts, and lactic- and non-lactic acid bacteria. Pozol presents physicochemical features different from that of other food fermentation products, such as a high starch content, in addition to a low protein content. It is these qualities that make it intractable for protein recovery and characterization. The aim of this study was to develop a methodology to optimize the recovery of proteins from the pozol dough following fermentation, by reducing the complexity of the mixture prior to 2D-PAGE analysis and sequencing, to allow the characterization of the metaproteome of the dough. The proteome of 15day fermented maize dough was characterized; proteins were separated and analyzed by mass spectrometry (LC-MS/MS). Subsequent sequence homology database searching, identified numerous bacterial and fungi proteins; with a predominance of lactic acid bacterial proteins, mainly from the Lactobacillus genus. Fungi are mainly represented by Aspergillus. For dominant genera, the most prevalent proteins belong to carbohydrate metabolism and energy production, which suggest that at 15days of fermentation not only fungi but also bacteria are metabolically active.
Biological Significance:
Several methodologies have been employed to study pozol, with a specific focus toward the identification of the microbiota of this fermented maize dough, using both traditional cultivation techniques and culture independent molecular techniques. However to date, the dynamics of this complex fermentation is not well understood. With the purpose to gain further insight into the nature of the fermentation, we used proteomic technologies to identify the origin of proteins and enzymes that facilitate substrate utilization and ultimately the development of the microbiota and fermentation. In this paper we overcome the first general challenge for such studies, obtaining a protein sample with adequate quality capable of representing the system.
Insights
Researchers developed a new method to analyze proteins in fermented maize dough (pozol). This study identified active bacteria and fungi, mainly Lactobacillus and Aspergillus, involved in pozol fermentation.
Area of Science:
- Food Science and Technology
- Microbiology
- Proteomics
Background:
- Pozol is a traditional Mexican fermented maize dough with diverse microbial communities.
- Its unique physicochemical properties, high starch and low protein, hinder protein analysis.
- Understanding the microbial dynamics and metabolic activity during fermentation is crucial.
Purpose of the Study:
- To develop an optimized methodology for protein recovery from pozol dough.
- To characterize the metaproteome of 15-day fermented pozol dough.
- To identify the origin and function of proteins involved in fermentation.
Main Methods:
- Optimization of protein extraction from fermented maize dough.
- Two-dimensional polyacrylamide gel electrophoresis (2D-PAGE) for protein separation.
- Liquid chromatography-tandem mass spectrometry (LC-MS/MS) for protein identification.
- Sequence homology database searching for metaproteome analysis.
Main Results:
- Successfully developed a method for high-quality protein sample preparation from pozol.
- Identified numerous bacterial and fungal proteins, predominantly from Lactobacillus (bacteria) and Aspergillus (fungi).
- Detected proteins involved in carbohydrate metabolism and energy production, indicating active microbial metabolism.
Conclusions:
- Proteomic analysis provides valuable insights into the complex microbial dynamics of pozol fermentation.
- The study overcomes a key challenge in analyzing the metaproteome of fermented foods.
- Identified key microbial players and their metabolic roles in pozol production.

