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O Paredes-Lopez

Publications and source records attributed to O Paredes-Lopez.

8 recordsLinked to original sources

Evaluation of some cereals, plants and tubers through protein composition.

Wild and cultivated maize, sorghum, rice, amaranth, soybean, and cassava were screened for variability in seed storage proteins. Total seed proteins, albumin (Alb-1 and Alb-2), globulin, alcohol-soluble (A1 and A2), and glutelin (G1 and G2) fractions were investigated by means of sodium dodecyl sulfate-polyacrylamide gel electrophoresis (SDS-PAGE). The comparison was done by the obtained protein patterns and their relative amounts. Using quantitative analysis of the protein composition and the electrophoretic patterns, the relationships between total proteins and amount of individual proteins were determined. Electrophoretic patterns of extracted proteins from investigated samples showed that the main protein subunits were concentrated between 10 and 45 kDa. Variation was found in major fractions and minor bands. Electrophoretic patterns of the protein fractions are directly related to the genetic background of the protein and can be identified and used to certify the genetic makeup of wild, cultivated, or newly derived cereals and plants.

Edible Grain↗

Stability of some Cactaceae proteins based on fluorescence, circular dichroism, and differential scanning calorimetry measurements.

Characterization of three cactus proteins (native and denatured) from Machaerocereus gummosus (Pitahaya agria), Lophocereu schottii (Garambullo), and Cholla opuntia (Cholla), was based on electrophoretic, fluorescence, CD (circular dichroism), DSC (differential scanning calorimetry), and FT-IR (Fourier transform infrared) measurements. The obtained results of intrinsic fluorescence, DSC, and CD were dissimilar for the three species of cactus, providing evidence of differences in secondary and tertiary structures. Cactus proteins may be situated in the following order corresponding to their relative stability: Machaerocereus gummosus (Pitahaya agria) > Cholla opuntia (Cholla) > Lophocereu schottii (Garambullo). Thermodynamic properties of proteins and their changes upon denaturation (temperature of denaturation, enthalphy, and the number of ruptured hydrogen bonds) were correlated with the secondary structure of proteins and disappearance of alpha-helix.

Calorimetry, Differential Scanning↗

Computational analysis of the amino acid residue sequences of amaranth and some other proteins.

Amaranth belongs to a nutritious class of pseudocereals. The well balanced amino acid composition of amaranth compared with those of major cereals would indicate that it deserves a quantitative study of its chemical properties. This work was undertaken to compare Amaranthus (A.) caudatus with a number of other plants on the basis of the sequences of various proteins and the composition of their alcohol-soluble protein mixture and glutelins. Alcohol-soluble proteins were extracted with 55% isopropanol (2-ProOH) + 5% 2-mercaptoethanol (2-ME) and glutelin fractions were obtained with borate buffer + 3% 2-ME + 0.5% sodium dodecyl sulfate (SDS), pH 10. Protein fractions were then electrophoreded on sodium dodecyl sulfate polyacrylamide gels (SDS-PAGE). FASTA and TFASTA programmes were used for comparison of amino acid sequences. Dot matrix analysis and secondary structure predictions which were drawn by Plot-structure, were taken from the GCG package. Electrophoretic tests failed to indicate significant correlation between prolamins from cereals and other plants with the alcohol-soluble fractions from amaranth, proving that these proteins cannot represent the main fraction in amaranth. On the other hand, glutelins shared some common electrophoretic bands with other cereals and showed some identity by SDS-PAGE. Amino acid sequences of A. caudatus (100% identity) had degrees of similarity in the range of 71.4 to 52.2% with rice, garden pea, jobs' tears, maize, and yam. Rice glutelin had similarity in the range of 93.3% to 44.8% with oats, soybean, and pea. Secondary structures of A. caudatus (using conservative amino acid replacement), jobs' tears and rice glutelins, oat globulin, and pea legumin sequences were predicted. Some relationship was shown among electrophoretic patterns of alcohol-soluble proteins and glutelins of A. caudatus.

Amino Acid Sequence↗

Amaranth seed proteins: effect of defatting on extraction yield and on electrophoretic patterns.

Acetone and hexane were used to know the effect of defatting amaranth flour on the extraction yield of protein fractions and on the electrophoretic patterns. It was found that albumins (33%) and globulins (20%) did not present yield changes when using these two solvents, but it was noted that with hexane compared to acetone, prolamins extraction was reduced by half (3.0 to 1.6%) whereas glutelins increased from 26.5 to 30%. Sodium dodecyl sulfate-polyacrylamide gel electrophoresis (SDS-PAGE) patterns of prolamins extracted with acetone and hexane showed one band of low molecular weight (22 KDa) and five bands between 52 to 22 KDa, respectively. No electrophoretic changes were observed in the remaining fractions.

Acetone↗

Studies on jicama juice processing.

Juice was extracted from jicama (Pachyrrizus erosus Urban) and clarified using a 10,000 daltons molecular weight cut-off membrane to improve its stability. Ultrafiltered juice was tested for general composition and Hunter color. Ultrafiltration (UF) retentate and UF permeate showed some changes, compared to fresh juice, in total and soluble solids, total sugars, and nitrogen, whereas ash and pH remained constant. Hunter color of juice samples exhibited some variation by UF. Results suggest that UF has potential to produce jicama juice with desirable and stable aroma and flavor.

Carbohydrates↗

Isolation of amaranth flour proteins by fractionation procedures and sonication.

The use of whole and defatted amaranth flour for protein isolation of Osborne fractions is described. Extractability of prolamins, the minor fraction, increased from 2.8 to 5% by adding a reducing agent. Glutelins proved to be poorly solubilized (3.3%) in dilute acetic acid, but they reached a high solubility value (40.8%) using a borate buffer in the presence of a reducing agent and a detergent; solubility remarkably declined without the latter two chemicals. Sonication (a fast and simple technique) in the presence of a detergent proved to be more efficient, compared with stirring, for extractability of total unreduced proteins.

Albumins↗