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avena sativa/protease

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Страна 1 од 28 резултати

Subcellular Localization of Proteases in Developing Leaves of Oats (Avena sativa L.).

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The distribution and subcellular localization of the two major proteases present in oat (Avena sativa L. cv Victory) leaves was investigated. Both the acidic protease, active at pH 4.5, and the neutral protease, active at pH 7.5, are soluble enzymes; a few percent of the enzyme activity was

Purification and characterization of serine proteases that exhibit caspase-like activity and are associated with programmed cell death in Avena sativa.

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Victoria blight of Avena sativa (oat) is caused by the fungus Cochliobolus victoriae, which is pathogenic because of the production of the toxin victorin. The victorin-induced response in sensitive A. sativa has been characterized as a form of programmed cell death (PCD) and displays morphological

Proteases of Senescing Oat Leaves: II. Reaction to Substrates and Inhibitors.

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Two proteases isolated from senescent oat (Avena sativa) leaves have been subjected to further study. One of these, an acid protease active at pH 4.2, is inhibited by phenylmethylsulfonyl fluoride (PMSF) but not by iodoacetamide (IAc). The other, active at pH 6.6, is inhibited by both PMSF and IAc.

Purification and properties of betaine aldehyde dehydrogenase from Avena sativa.

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Betaine aldehyde dehydrogenase (BADH; EC 1.2.1.8) is the enzyme that catalyzes the second step in the synthesis of the osmoprotectant, glycine betaine. NAD-dependent BADH was purified from Avena sativa shoots by DEAE Sephacel, hydroxyapatite, 5'-AMP Sepharose 4B, Mono Q and TSK-GEL column

Purification and initial characterization of ubiquitin from the higher plant, Avena sativa.

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Ubiquitin is a highly conserved, 76-amino acid polypeptide recently demonstrated to be involved in ATP-dependent protein degradation in mammalian cells. From immunoblot analyses with anti-human-ubiquitin antibodies we have detected the presence of free ubiquitin in green leaves, etiolated shoots,

Proteases of senescing oat leaves: I. Purification and general properties.

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Two proteases active in the senescing first leaves of oat seedlings (Avena sativa cv. Victory) have been purified approximately 500-fold by a combination of ammonium sulfate precipitation, affinity chromatography on hemoglobin-Sepharose, and ion exchange chromatography on DEAE-Sephadex. The enzymes

Effects of exogenous 1,3-diaminopropane and spermidine on senescence of oat leaves : I. Inhibition of protease activity, ethylene production, and chlorophyll loss as related to polyamine content.

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Excision and dark incubation of oat (Avena sativa L., var. Victory) leaves cause a sharp increase in protease activity, which precedes Chl loss. Both these senescence processes are inhibited by exogenously applied 1,3-diaminopropane (Dap), which occurs naturally in leaf segments. The inhibition of

Plant seed protease inhibitors differentially affect innate immunity in a tumor microenvironment to control hepatocarcinoma.

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Identifying tolerance responses to ingested foodstuff over life is essential for understanding dysfunction in metabolic diseases. This study presents a comparative structural and functional analysis of serine-type protease inhibitors (STPIs) from Chenopodium quinoa, Salvia hispanica L., Avena sativa

Predicted Release and Analysis of Novel ACE-I, Renin, and DPP-IV Inhibitory Peptides from Common Oat (Avena sativa) Protein Hydrolysates Using in Silico Analysis.

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The renin-angiotensin-aldosterone system (RAAS) plays an important role in regulating hypertension by controlling vasoconstriction and intravascular fluid volume. RAAS itself is largely regulated by the actions of renin (EC 3.4.23.15) and the angiotensin-I-converting enzyme (ACE-I; EC 3.4.15.1). The

Purification and properties of aminoaldehyde dehydrogenase from Avena sativa.

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NAD-dependent aminoaldehyde dehydrogenase (AMADH, EC 1.2.1.-) from Avena shoots was purified by DEAE Sephacel, hydroxyapatite, 5'-AMP Sepharose 4B, Mono Q, and TSK-GEL column chromatographies to homogeneity by the criterion of native PAGE. SDS-PAGE yielded a single band at a molecular mass of 55

Expression of AP 3, 4 and 5 isophytochromes in etiolated oat seedlings (Avena sativa L.).

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Type 1 phytochrome from etiolated oat seedlings was digested with V-8 protease. Microsequencing of a 13 kDa fragment yielded a sequence of 31 amino acids. The fragment starting with the alanine residue at position 427 of the entire phytochrome amino acid sequence revealed a heterogeneity (threonine,

The role of separate molecular domains in the structure of phytochrome from etiolated Avena sativa L.

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The spectral properties of peptides generated from etiolated-Avana, 124-kDa (kilodalton) phytochrome by endogenous protease(s) have been studied to assess the role of the amino-terminal and the carboxyl-terminal domains in maintaining the proper interaction between protein and chromophore. The

The Metabolism of Oat Leaves during Senescence: III. The Senescence of Isolated Chloroplasts.

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The changes in chlorophyll and protein in senescing chloroplasts isolated from the first leaves of 7-day-old oat (Avena sativa) seedlings have been investigated. In darkness the chlorophyll in these plastids is highly stable, losing only 5 to 10% of its content after 7 days at 26 C. This result

Spectral Characterization and Proteolytic Mapping of Native 120-Kilodalton Phytochrome from Cucurbita pepo L.

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A spectral, immunochemical, and proteolytic characterization of native 120-kilodalton (kD) phytochrome from Cucurbita pepo L. is presented and compared with that previously reported for native 124-kD phytochrome from Avena sativa. The molecule was partially purified ( approximately 200-fold) in the

Hemin inhibits ubiquitin-dependent proteolysis in both a higher plant and yeast.

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In eukaryotes, a major route for ATP-dependent protein breakdown proceeds through covalent intermediates of target proteins destined for degradation and the highly conserved, 76 amino acid protein ubiquitin. In rabbit reticulocytes, it has been shown that hemin effectively inhibits this pathway by
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