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lathyrus sphaericus/protease

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ArtiklidKliinilistes uuringutesPatendid
13 tulemused

Natural plant enzyme inhibitors: Part III-purification of protease inhibitors from Lathyrus sativus seeds.

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Grass pea (Lathyrus sativus L.) is an important legume commonly grown in arid and semi-arid regions. This protein-rich legume performs well even under harsh environmental conditions and is considered to be a strategic famine food in developing countries. Unfortunately, its potential usage is
The impact of lead nitrate (Pb(NO(3))(2); 0.5mM) on steady-state accumulation of messengers corresponding to stress responsive genes was studied in two local lines of 11-d grass pea (Lathyrus sativus L.) plants exposed for 96 h in a hydroponic system. Real-time reverse transcription polymerase chain

Identification and purification of metalloprotease from dry grass pea (Lathyrus sativus L.) seeds.

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Proteolytic enzymes play a central role in the biochemical mechanism of germination. The present study reported the presence of Zn(2+)-dependent endoproteases in the dry seeds of grass pea (Lathyrus sativus L.) with maximum caseinolytic activity observed at pH 8.0. Studies with class-specific

Isolation and characterization of novel variants of BBI coding genes from the legume Lathyrus sativus.

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A pool of twelve cDNA sequences coding for Bowman-Birk inhibitors (BBIs) was identified in the legume grass pea (Lathyrus sativus L.). The corresponding amino acid sequences showed a canonical first anti-trypsin domain, predicted according to the identity of the determinant residue P(1). A more
BACKGROUND Tempeh is a food product obtained from legumes by means of solid-state fermentation with Rhizopus sp. Our previous research proved that mixed-culture inoculum may also be successfully applied. The objective of present research was to study the proteolytic activity of R. microsporus var.
OBJECTIVE The main aim of this work was to examine the plant growth promoting, biocontrol activities and stress competency of grass pea rhizobacterial strains from Ethiopia. RESULTS Serial dilutions were carried out to isolate rhizobacterial strains from the rhizosphere soil samples. The isolates
A zymographic assay of diamine oxidase (DAO, histaminase, EC 1.4.3.6), based on a coupled peroxidase reaction, and its behavior at proteolysis in simulated gastric and intestinal conditions, are described. The DAO activity from a vegetal extract of Lathyrus sativus seedlings was directly determined
The complete amino acid sequences of the alpha 1 and alpha 2 subunits of the isolectins (LoL I and LoL II) from seeds of Lathyrus ochrus were determined by analysis of peptides derived from the proteins by digestion with trypsin, chymotrypsin and the S. aureus V8 protease. Both subunits consisted of

Carboxymethyl starch/alginate microspheres containing diamine oxidase for intestinal targeting.

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The association of carboxymethyl starch (CMS) and alginate is proposed as a novel matrix for the entrapment of bioactive agents in microspheres affording their protection against gastrointestinal degradation. In this study, the enzyme diamine oxidase (DAO) from white pea (Lathyrus sativus) was

Stability of Vegetal Diamine Oxidase in Simulated Intestinal Media: Protective Role of Cholic Acids.

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Food biogenic amines, in particular, histamine, are often responsible for various enteric and vascular dysfunctions. Several years ago, the oral administration of copper-containing diamine oxidase (DAO), also called histaminase, able to oxidatively deaminate biogenic amines, had been suggested as a
Bowman-Birk serine protease inhibitors (BBIs) from legume seeds are small proteins showing a two-head structure with distinct reactive site loops, which inhibit two molecules of the same enzyme or two different proteases. Purification and characterization of new BBIs is of broad interest for

Naturally occurring toxicants in foods and their significance in the human diet.

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Among the many biologically active and potentially toxic factors known to be present in plant foodstuffs normally consumed by man, those that are present in legumes have received the most attention. Two categories of legume toxins will be considered - those whose effects have been extensively
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