Literature DB >> 18355022

Angiotensin I converting enzyme-inhibitory peptides from commercial wet- and dry-milled corn germ.

Nicholas Parris1, Robert A Moreau, David B Johnston, Leland C Dickey, Rotimi E Aluko.   

Abstract

Bioprocesses were developed to enhance the value of proteins from deoiled corn germ. Proteins were hydrolyzed with trypsin, thermolysin, GC 106, or Flavourzyme to generate the bioactive peptide sequences. At an enzyme to substrate ratio of 1:100, protein hydrolysis of wet-milled germ was greatest using thermolysin followed by trypsin, GC 106, and Flavourzyme. For the dry-milled corn germ, protein hydrolysis was greatest for GC 106 and least for Flavourzyme. Electrophoretic patterns indicated that the hydrolysis conditions used were adequate for generating low molecular weight peptides for both germs. Unhydrolyzed dry- and wet-milled corn germ did not appear to contain angiotensin I converting enzyme (ACE)-inhibitory peptides. After hydrolysis with trypsin, thermolysin, and GC 106 but not Flavourzyme, ACE inhibition was observed. ACE inhibition was greatest for the GC 106 hydrolysate for both wet- and dry-milled corn germ. Denaturing the protein with urea before hydrolysis, in general, increased the amount of ACE-inhibitory peptides found in the hydrolysate. Membrane fractionations of both the wet- and dry-milled hydrolysates indicated that most of the ACE-inhibitory peptides were in the <1 kDa fraction. Examination of the control total protein extracts (before treatment with proteases) from wet- and dry-milled germ revealed that neither had ACE-inhibitory properties. However, when both total corn germ control protein extracts were fractionated, the <1 kDa fraction of wet-milled corn germ proteins exhibited ACE inhibition, whereas the comparable low molecular weight fraction from dry-milled corn germ did not.

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Year:  2008        PMID: 18355022     DOI: 10.1021/jf072238d

Source DB:  PubMed          Journal:  J Agric Food Chem        ISSN: 0021-8561            Impact factor:   5.279


  4 in total

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Authors:  Jorge L Díaz-Gómez; Fabiola Castorena-Torres; Ricardo E Preciado-Ortiz; Silverio García-Lara
Journal:  Front Chem       Date:  2017-06-21       Impact factor: 5.221

2.  Frationation of hydrolysate from corn germ protein by ultrafiltration: In vitro antidiabetic and antioxidant activity.

Authors:  Amin Karimi; Mohammad Hossein Azizi; Hassan Ahmadi Gavlighi
Journal:  Food Sci Nutr       Date:  2020-04-05       Impact factor: 2.863

3.  In Silico Analysis and In Vitro Characterization of the Bioactive Profile of Three Novel Peptides Identified from 19 kDa α-Zein Sequences of Maize.

Authors:  Jorge L Díaz-Gómez; Ines Neundorf; Laura-Margarita López-Castillo; Fabiola Castorena-Torres; Sergio O Serna-Saldívar; Silverio García-Lara
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Review 4.  Recent advances in food-packing, pharmaceutical and biomedical applications of zein and zein-based materials.

Authors:  Elisângela Corradini; Priscila S Curti; Adriano B Meniqueti; Alessandro F Martins; Adley F Rubira; Edvani Curti Muniz
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  4 in total

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