L. Hernández-Ochoa, M. Martínez-Ceniceros, L. O. Nevarez-Prado, David Neder‐Suárez, F. Sandoval-Salas, L. Rodríguez-Valdez, L. Landeros-Martínez, Karla Bernal-Alvarado
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引用次数: 0
Abstract
Ricin is the most toxic protein known. It is part of the ribosome-inactivating proteins, RIPs, type 2, which has generated importance in his research; it is possible to detoxify this protein with phenolic compounds; however, it is essential to understand how this detoxification occurs.
To analyze using electrophoresis, UV-visible spectroscopy, and high-performance liquid chromatography (HPLC) the protein ricin with the flavonol quercetin, understanding the detoxification process.
The UV-visible analysis was performed on both the supernatant and the precipitate of the samples; these results were analyzed using one-factor analysis of variance (ANOVA) and a Tukey test with a significance level of 0.05.
34.9 μg / mL of total protein and 4.2 μg / mL of ricin were obtained in the extraction method. Eight interactions were carried out, and all presented precipitation, observing through the electrophoresis technique a decrease in the bands corresponding to the protein; these results were analyzed with HPLC observing a decrease in the size of the area of the peaks in the chromatograms.
The results obtained in this study suggest an agglomeration of the protein, generating a precipitate that could benefit the protein's inactivation as a detoxification process.
Current ProteomicsBIOCHEMICAL RESEARCH METHODS-BIOCHEMISTRY & MOLECULAR BIOLOGY
CiteScore
1.60
自引率
0.00%
发文量
25
审稿时长
>0 weeks
期刊介绍:
Research in the emerging field of proteomics is growing at an extremely rapid rate. The principal aim of Current Proteomics is to publish well-timed in-depth/mini review articles in this fast-expanding area on topics relevant and significant to the development of proteomics. Current Proteomics is an essential journal for everyone involved in proteomics and related fields in both academia and industry.
Current Proteomics publishes in-depth/mini review articles in all aspects of the fast-expanding field of proteomics. All areas of proteomics are covered together with the methodology, software, databases, technological advances and applications of proteomics, including functional proteomics. Diverse technologies covered include but are not limited to:
Protein separation and characterization techniques
2-D gel electrophoresis and image analysis
Techniques for protein expression profiling including mass spectrometry-based methods and algorithms for correlative database searching
Determination of co-translational and post- translational modification of proteins
Protein/peptide microarrays
Biomolecular interaction analysis
Analysis of protein complexes
Yeast two-hybrid projects
Protein-protein interaction (protein interactome) pathways and cell signaling networks
Systems biology
Proteome informatics (bioinformatics)
Knowledge integration and management tools
High-throughput protein structural studies (using mass spectrometry, nuclear magnetic resonance and X-ray crystallography)
High-throughput computational methods for protein 3-D structure as well as function determination
Robotics, nanotechnology, and microfluidics.