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Active products of porcine trypsin after autolysis.

Porcine trypsin obtained from pancreas residues subsequent to insulin removal undergoes autolysis when subjected to chromatography and gives rise to new forms of autolyzed products with intra-chain split at bonds Lys145-Ala146 and Arg105-Val106. Incubation of 1% solutions of porcine trypsin either at pH 5.0 or at pH 9.1 induces autolysis to give active products involving one or two specific cleavages of bonds Lys145-Ala146 and Arg105-Val106 or Lys131-Ser132, as well as inactive degraded products. No evidence has been obtained that on autolysis of porcine trypsin, and active fragment with molecular weight lower than that of the parent molecule was identified. The active forms of autolyzed products of porcine trypsin have almost the same specific activity as the intact enzyme when assayed against BAEE. They are of the same molecular weight as the parent molecule. These findings indicate that that active forms of autolyzed products maintain the specific three-dimensional structure essential for the catalytic activity of the trypsin molecule.

Amino Acid Sequence↗

[Effect of postmortem autolysis on the 40S ribosomal subunit proteins of rat skeletal muscles].

A ribosomal protein component was impaired during autolysis of 40S subunits, obtained from polysomes of autolysed muscles using KCL-puromycine method. These 40S subunits exhibited higher buoyant density as compared with controls. For the direct analysis the ribosomal proteins were extracted from 40S subunits by 66% acetic acid containing 0.01 M MgCl2 and fractionated using one- and two-dimensional polyacrylamide gel electrophoresis. The data obtained suggest that some proteins were hydrolyzed by proteolytic enzymes during autolysis: assumption of dissociation into the subunits of 6 of the ribosomal proteins during autolysis does not account for the phenomena observed.

Animals↗

[The effect of autolysis on characteristics of amino acid mixtures, obtained using ethanol-assimilating yeasts].

The influence of the enzyme preparation - macerate, concentration of the yeast biomass in the reaction medium, and chloroform on the autolysis of the ethanol assimilating yeast Saccharomyces cerevisiae BKM-Y-2656, BKM-Y-2465, and the baker's yeast r. L-2 was studied. Amino acid mixtures were isolated from the yeast autolysates. The use of macerate and a decrease in the biomass concentration were shown to increase the yield of the amino acid mixtures. The use of chloroform positively influenced the baker's yeast autolysis. Conditions of the joint action of these factors on the intensification of the process of the amino acid mixtures preparation based on the autolysis were determined.

Amino Acids↗

[Changes in ATPase activity in tissues and mitochondria of some steroid-producing rat organs during autolysis].

The activity of Mg(2+)-ATPase was studied in the tissues, homogenates, specimens of rat spermatic and adrenal glands during postmortem autolysis. The initial enzymatic activity was 2-fold higher in adrenal tissue, homogenate and mitochondria than in spermatic ones. As autolysis proceeded in the tissue and homogenate of the adrenal and spermatic glands, and spermatic mitochondria, the ATPase activity was drastically decreased, by disappearing completely at hour 24 of autolysis. At the same time, the enzyme from adrenal mitochondria exhibited a higher stability. Of great importance for this can be rearrangements in the phospholipid profile of the corresponding membranous structures, as well as hormonal factors.

Adrenal Glands↗

Preparation and characterization of proteases from Thermoactinomyces vulgaris. V. Investigations on autolysis and thermostability of the purified protease.

Thermitase, the main component of the proteases of the culture medium from Thermoactinomyces vulgaris, is degraded by autolyses (increase of liberated amino groups) and thereby inactivated especially at elevated temperature, at alkaline pH-values and in the absence of added substrates. As shown by polyacrylamide gel electrophoresis autolysis is an essential part during heat inactivation (complete disappearance of the thermitase band after heating the enzyme at 85 degrees C for 5 min). The quantitative comparison of autolysis and heat inactivation as well as the kinetics of reversible inhibition of the enzyme by HgCl2 at different temperatures showed that above 60 degrees C thermal denaturation of the enzyme protein contributes to thermitase inactivation. Ca2+-ions (20 mM) have a stabilizing effect against both autolysis and thermal denaturation (inactivation) of thermitase.

Calcium↗

Calcium-mediated neurofilament protein degradation in rat optic nerve in vitro: activity and autolysis of calpain proenzyme.

In this study, we examined calcium-mediated degradation of a neurofilament protein (NFP), and autolytic activation of calpain in Lewis rat optic nerve in vitro. After incubation with calcium, homogenized optic nerve samples were analysed by SDS-PAGE in association with ECL immunoblot techniques. 68 kD NFP, calpain, and calpastatin antibodies were used for identification of the respective proteins. The extent of calcium-mediated 68 kD NFP degradation compared to EGTA controls, served to quantify calpain activity, while the extent of calpain autolysis measured the activation of the enzyme. A progressive loss of 68 kD NFP was observed at 15 min (42.1%), 1 hr (52.7%) and 6 hr (73.4%) incubation periods compared to EGTA controls. The immunoreactive calpain bands showed progressive autolysis after 15 min (26.6%), 1 hr (31.4%) and 6 hr (43.4%) incubations. We also found degradation of low molecular weight isoforms of calpastatin (43 kD and 27 kD) in the presence of calcium compared to controls. These results indicate that calpain is present in optic nerve in its inactive form but when calcium is added, it undergoes autolysis and becomes active. Thus, active calpain is capable of degrading endogenous substrates (e.g. cytoskeletal and myelin proteins) and may promote the degeneration of optic nerve in optic neuritis.

Animals↗

The programming of silk-gland development in Bombyx mori. I. Effects of experimental starvation on growth, silk production, and autolysis during the fifth larval instar studied by electron microscopy.

The cytological development of the silk gland has been studied by light and electron microscopy in silkworms experimentally starved at different periods of the natural feeding stage during the fifth instar. When newly molted animals are not provided with food, no sign of growth is observed. Starvation initiated early during the obligatory feeding period, stops cell growth and development of the organelles involved in protein synthesis and secretion, whereas it induces the appearance of organelles concerned with autolysis. These effects are reversible if starvation is not prolonged beyond two days. Starvation during the facultative feeding period, at the time of massive fibroin production, results in quantitative and qualitative modifications of organelles related to the decrease of fibroin production and the onset of autolysis. Rough endoplasmic reticulum, responsible for fibroin synthesis, forms transitory whorls. Fibroin transport via the Gjolgi apparatus and secretion of the protein into the gland lumen decrease parallel to fibroin synthesis, so that no fibroin storage can be detected in any organelle. After food deprivation, autophagosomes and secondary lysosomes rapidly develop in the cytopolasm, and if starvation continues portions opf the cytoplasm are sequestered and completely destroyed. If animals are refed, fibroin production is resumed and autolysis declines. These ultrastructural alterations of the silk gland during experimental starvation are very similar to those observed during the periods of physiological starvation (molt and cocoon spinning) and generally considered to be under hormonal control. Our results raise the question of the nature of interactions between alimentary and hormonal factors which control silk-gland development.

Animals↗

Autolysis of high-GC isolates of Pseudomonas putrefaciens.

High-GC isolates of P. putrefaciens undergo extensive autolysis after growth, resulting in a marked decrease in turbidity and the release of high-molecular-weight DNA which imparts a high viscosity to culture broths. The native DNA released is resistant to attack by the exocellular DNase activity of the culture broths. Autolysis is inhibited by a pH of 6.0 and the presence of 0.001 M Mg++ or Ca++, and is enhanced by elevated pH values and temperatures. This autolytic phenomenon in broth cultures readily distinguishes high- from low-GC isolates. The latter do not exhibit autolysis.

Calcium↗

Influence of concanavalin a on autolysis of gametes from Chlamydomonas reinhardii.

The phytohemagglutinin concanavalin A inhibited zygote formation of Chlamydomonas reinhardii. 15--50 mug lectin/ml not only interfered with the mating reaction, but also with cell wall lysis of gametes and zoospores in a crude autolysin preparation gained from copulating gametes. Further, the structure of cell walls shed into the medium after autolysis in the course of the mating reaction and after lysis "from without" in the crude autolysin preparation was stabilized by Con A. Therefore, it must be assumed that the lectin inhibited zygote formation of C. reinhardii by interfering with autolysis of the cell walls of the gametes. Though Con A inhibited the lytic processes of C. reinhardii, an activation of the autolytic system in theta gametes by the lectin was found to compete with its inhibitory reaction. Con A induced autolysis of theta gametes was dependent on adherence of the cells by their flagella to the surface of the culture vessel or the liquid medium and did not occur in cultures stirred by rotation. The interferences of Con A with the autolytic serum of C. rienhardii were inhibited by methyl-alpha-D-mannopyrano-side and to a lesser degree by glucose, indicating that the carbohydrate binding sites of the lectin were involved in its reactions with the cells.

Binding, Competitive↗

Cell wall degradation in the autolysis of filamentous fungi.

A systematic study on autolysis of the cell walls of fungi has been made on Neurospora crassa, Botrytis cinerea, Polystictus versicolor, Aspergillus nidulans, Schizophyllum commune, Aspergillus niger, and Mucor mucedo. During autolysis each fungus produces the necessary lytic enzymes for its autodegradation. From autolyzed cultures of each fungus enzymatic precipitates were obtained. The degree of lysis of the cell walls, obtained from non-autolyzed mycelia, was studied by incubating these cell walls with and without a supply of their own lytic enzymes. The degree of lysis increased with the incubation time and generally was higher with a supply of lytic enzymes. Cell walls from mycelia of different ages were obtained. A higher degree of lysis was always found, in young cell walls than in older cell walls, when exogenous lytic enzymes were present. In all the fungi studied, there is lysis of the cell walls during autolysis. This is confirmed by the change of the cell wall structure as well as by the degree of lysis reached by the cell wall and the release of substances, principally glucose and N-acetylglucosamine in the medium.

Aspergillus nidulans↗

Degradation of RNA during the autolysis of Saccharomyces cerevisiae produces predominantly ribonucleotides.

Autolytic degradation of yeast RNA occurs in many foods and beverages and can impact on the sensory quality of the product, but the resulting complex mixture of nucleotides, nucleosides and nucleobases has not been properly characterised. In this study, yeast autolysis was induced by incubating cell suspensions of Saccharomyces cerevisiae at 30-60 degrees C (pH 7.0), and at pH 4.0-7.0 (40 degrees C) for 10-14 days, and the RNA degradation products formed during the process were determined by reversed-phase HPLC. Up to 95% of cell RNA was degraded, with consequent leakage into the extracellular environment of mainly 3'-, 5'- and 2'-ribonucleotides, and lesser amounts of polynucleotides, ribonucleosides and nucleobases. The rate of RNA degradation and the composition of the breakdown products varied with temperature and pH. RNA degradation was fastest at 50 degrees C (pH 7.0). Autolysis at lower temperatures (30 degrees C and 40 degrees C) and at pH 5.0 and 6.0 favoured the formation of 3'-nucleotides, whereas autolysis at 40 degrees C and 50 degrees C (pH 7.0) favoured 5'- and 2'-nucleotides. The best conditions for the formation of the two flavour-enhancing nucleotides, 5'-AMP and 5'-GMP, were 50 degrees C (pH 7.0) and pH 4.0 (40 degrees C), respectively.

Adenosine Monophosphate↗

Bovine spongiform encephalopathy: detection of fibrils in the central nervous system is not affected by autolysis.

The effect of autolysis on the electron microscopic detection of the characteristic abnormal fibrils, originally called 'scrapie-associated fibrils', was investigated in four different areas of the central nervous system (CNS) from 10 clinically suspect BSE cattle after post mortem delay and compared with the histopathological diagnosis. The tissues for fibril detection were subjected to controlled incubations to simulate autolysis. Fibril detection in all areas sampled from nine animals in which BSE was confirmed by histopathology was not affected by combined post mortem delays and specific controlled treatments. Detection of fibrils from the cervical spinal cord was no less sensitive than from brain areas. Fibrils were not detected in the one suspect case in which histopathology did not reveal lesions of BSE. The study confirms that fibril detection is of diagnostic value in BSE when post mortem autolysis renders CNS material unsuitable for histopathology.

Animals↗

Cloning and expression of ostrich trypsinogen: an avian trypsin with a highly sensitive autolysis site.

One of ostrich (Struthio camelus) trypsinogen genes was cloned from pancreatic cDNA. Its amino acid sequence compared to known trypsin sequences from other species shows high identity and suggests that it is a member of the phylogenetically anionic trypsinogen I subfamily. After cytoplasmic over expression in Escherichia coli and renaturation, the activation properties of ostrich trypsinogen were studied and compared to those of human trypsinogen 1 (also called as human cationic trypsinogen). Ostrich trypsinogen undergoes bovine enterokinase activation and autoactivation much faster than human trypsinogen 1 and exhibits on a synthetic substrate a somewhat higher enzymatic activity than the latter one. The most interesting property of ostrich trypsin is its relatively fast autolysis that can be explained via a mechanism different from the common mechanism for rat and human 1 trypsins. The latter proteases have a site, Arg117-Val118, where the autolysis starts and then goes on in a zipper-like fashion. This is absent from ostrich trypsin. Instead it has a couple of cleavage sites within regions 67-98, including two unusual ones, Arg76-Glu77 and Arg83-Ser84. These appear to be hydrolysed fast in a non-consecutive manner. Such an autolysis mechanism could not be inhibited by a single-site mutation which in humans is proposed to lead to pancreatitis.

Amino Acid Sequence↗

Overexpression of csc1-1. A plausible strategy to obtain wine yeast strains undergoing accelerated autolysis.

The potential of several alternative genetic engineering based strategies in order to accelerate Saccharomyces cerevisiae autolysis for wine production has been studied. Both constitutively autophagic and defective in autophagy strains have been studied. Although both alternatives lead to impaired survival under starvation conditions, only constitutively autophagic strains, carrying a multicopy plasmid with the csc1-1 allele under the control of the TDH3 promoter, undergo accelerated autolysis in the experimental conditions tested. Fermentation performance is impaired in the autolytic strains, but industrial strains carrying the above-mentioned construction are still able to complete second fermentation of a model base wine. We suggest the construction of industrial yeasts showing a constitutive autophagic phenotype as a way to obtain second fermentation yeast strains undergoing accelerated autolysis.

Alleles↗

Comparison of the effect of calcium(II) and manganese(II) ions on trypsin autolysis.

The effect of Mn2+ and Ca2+ ions on the rate of trypsin autolysis was studied at pH 7.0 and at 34.4-60.2 degrees C. For comparison, the kinetic constants of esterolytic activity of trypsin in the presence of the metal ion were determined at pH 7.4 and at 36 degrees and 40 degrees C. There was no significant difference in the rate of autolysis between Mn2+ and Ca2+ in the temperature range 34-47 degrees C, but at 56.8 degrees and 60.2 degrees autolysis was slightly more rapid in the presence of Mn2+. The Mn2+ or Ca2+ ion bound to trypsin is supposed to control the conformation and thereby the stability and the activity of the enzyme. The indirect effect of Mn2+ and Ca2+ is discussed on a structural basis of the enzyme molecule.

Animals↗

Evidence of a relationship between autolysis of starter bacteria and lipolysis in cheddar cheese during ripening.

Cell viability, autolysis and lipolysis were studied in Cheddar cheese made using Lactococcus lactis subsp. cremoris AM2 or Lactococcus lactis subsp. cremoris HP. Cheddar cheese was made in triplicate over a 3 month period and ripened for 238 days at 8 degrees C. Cell viability in cheese was lower for AM2 (a non-bitter strain) than for strain HP (a bitter strain). Autolysis, monitored by the level of the intracellular marker enzyme, lactate dehydrogenase (EC 1.1.1.27) in cheese 'juice' extracted by hydraulic pressure, was much greater in the cheese made using AM2 than that made with HP. Lipolysis was determined by the increase during ripening of individual free fatty acids (FFA) from butyric (C4:0) to linolenic acid (C18:3) measured using a high performance liquid chromatographic technique. Levels of individual FFA from butyric (C4:0) to linolenic (C18:3) acids increased significantly (P<0.05) during ripening in cheeses made with either starter culture. Palmitic (C16:0) and oleic (C18:1) acids were the most abundant FFA throughout ripening in all cheeses. Levels of caprylic (C8:0), myristic (C14:0), palmitic (C16:0) and stearic (C18:0) acids were significantly higher (P<0.05) in cheeses manufactured with Lc. lactis subsp. cremoris AM2 than in cheeses manufactured with Lc. lactis subsp. cremoris HP. Differences in levels of lipolysis between strains was not due to differences in the specific lipolytic or esterolytic activities in cell free extracts of the strains as measured by activity on triolein (lipase) and p-nitrophenylbutyrate (esterase) substrates. Therefore, evidence is provided for a relationship between the extent of starter cell autolysis and the level of lipolysis during Cheddar cheese ripening.

Bacteriolysis↗

Characterization of the nitrogen compounds released during yeast autolysis in a model wine system.

The nitrogen composition of wines aged with yeast for a long period of time, as in the case of sparkling wines, depends on the composition of the base wine and on the compounds released by the yeast. In this paper, the release of the different classes of nitrogen compounds during autolysis of one of the strains of yeast used in the manufacture of sparkling wines has been studied. The yeast, Saccharomyces bayanus, was suspended in a model wine buffer, pH 3.0 and 10% ethanol, and incubated at 30 degrees C. Samples of the autolysate were taken after 4, 24, 48, 72, 168, and 360 h of autolysis. An electrophoretic and chromatographic study was conducted of the proteins, peptides with molecular weights higher and lower than 700 Da, and amino acids released during the autolysis. Using SDS-PAGE, it was observed that it was predominantly polypeptides with molecular weights lower than 10 000 that were released. Through HPLC of the fraction lower than 10 000 Da, it was observed that it is polypeptides with molecular weights of between 10 000 and 700 Da that are released first and that these later break up to give rise to peptides with molecular weights lower than 700 Da, which in turn break down into amino acids. This indicates that the nature of the nitrogen compounds present in wines aged with yeast depends on the aging time, being less polymerized as the aging time increases.

Ethanol↗

Autolysis of dairy leuconostocs and detection of peptidoglycan hydrolases by renaturing SDS-PAGE.

The autolysis of lactic acid bacteria plays a major role during cheese ripening. The aim of this study was to evaluate the autolytic properties and peptidoglycan hydrolase content of dairy leuconostocs. Autolysis of 59 strains of dairy Leuconostoc was examined under starvation conditions in potassium phosphate buffer. The ability of dairy leuconostocs to lyse is strain dependant and not related to the species. The peptidoglycan hydrolase profile of Leuc. mesenteroides subsp. mesenteroides 10L was analysed by renaturing gel electrophoresis. Two major activity bands migrating at 41 and 52 kDa were observed. According to the specificity analysis, strain 10L seems to contain a glycosidase and an N-acetyl-muramyl-L-alanine amidase, or an endopeptidase. The peptidoglycan hydrolase profiles of various Leuconostoc species were also compared. Several peptidoglycan hydrolase activities could be detected in the different Leuconostoc species. Further characterization of the peptidoglycan hydrolases will help to control autolysis of leuconostocs in cheese.

Bacteriolysis↗