Search PubMed⌕ Search

SEARCH · Search PubMed

Results for “Autolysis”

Search indexed PubMed citations on genomics, clinical trials, systematic reviews and public health. Explore titles, authors and supplied subject terms, then open the PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 145 records · Page 8Linked to original sources

Controlled autolysis and enzyme release in a recombinant lactococcal strain expressing the metalloendopeptidase enterolysin A.

This study concerns the exploitation of the lytic enzyme enterolysin A (EntL), produced by Enterococcus faecalis strain DPC5280, to elicit the controlled autolysis of starter lactococci. EntL, a cell wall metalloendopeptidase secreted by some E. faecalis strains, can kill a wide range of gram-positive bacteria, including lactococci. The controlled expression of entL, which encodes EntL, was achieved using a nisin-inducible expression system in a lactococcal host. Zymographic analysis of EntL activity demonstrated that active enzyme is produced by the recombinant lactococcal host. Indeed, expression of EntL resulted in almost complete autolysis of the host strain 2 h after induction with nisin. Model cheese experiments using a starter strain in addition to the inducible enterolysin-producing strain showed a 27-fold increase in activity with respect to the release of lactate dehydrogenase in the strain overexpressing EntL, demonstrating the potential of EntL production in large-scale cheese production systems. Indeed, the observation that a wide range of lactic bacteria are sensitive to EntL suggests that EntL-induced autolysis has potential applications with a variety of lactic acid bacteria and could be a basis for probiotic delivery systems.

Autolysis↗

Autolysis in Staphylococcus aureus: preferential release of old cell walls.

The kinetics of release of old versus new cell wall in two strains of Staphylococcus aureus were studied during autolysis. In both strains the autolytic enzyme is an amidase. Cells were double labeled with (3)H and (14)C, and the distribution of radioactivity in the cell walls was monitored during autolysis. In all cases the rate of release of steady-state lable from peptidoglycan was significantly higher than that of pulse label. Identical results were obtained with whole cells or isolated cell walls. The results suggest that in S. aureus the old cell wall is preferentially released during autolysis.

Amidohydrolases↗

Differential induction of Escherichia coli autolysis by penicillin and the bacteriophage phi X174 gene E product.

The behavior of the temperature-sensitive, penicillin-tolerant Escherichia coli mutant VC44 to endogenously induced autolysis by the bacteriophage phi X174 gene E product (gpE) was investigated. Expression of the cloned phi X174 lysis gene showed that cultures of strain VC44 grown at the restricted temperature were fully sensitive to endogenously induced autolysis. The results revealed that the modes of E. coli lysis induction by gpE and by penicillin differ and that the trigger mechanisms for autolysis depend greatly on the specific inducer used.

Autolysis↗

Temperature sensitivity of the penicillin-induced autolysis mechanism in nongrowing cultures of Escherichia coli.

The effect of incubation temperature on the ampicillin-induced autolysis of nongrowing Escherichia coli was determined. The autolysis mechanisms in amino acid-deprived relA mutant cells treated with chloramphenicol were temperature sensitive. This temperature-sensitive autolysis was demonstrated in three independent ways: turbidimetric determinations, viable cell counts, and solubilization of radiolabeled peptidoglycan.

Amino Acids↗

Autolysis-resistant peptidoglycan of anomalous composition in amino-acid-starved Escherichia coli.

Nongrowing Escherichia coli deprived of an essential amino acid continued to produce peptidoglycan at a rate approximately 30% of that of growing cells. The composition of this peptidoglycan was very different from that of growing cells and resembled that of peptidoglycan left undegraded during partial autolysis of the bacteria. Synthesis of this peptidoglycan of anomalous composition began at once upon the removal of the amino acid from the medium. Fifteen minutes of amino acid deprivation was sufficient to virtually completely prevent penicillin-induced autolytic wall degradation in vivo. During this time, although the specific activities of soluble and membrane-bound hydrolytic transglycosylases and endopeptidases remained high, the peptidoglycan produced showed decreased sensitivity to degradation in vitro. After more extensive (2-h) starvation, triggering of autolysis by chaotropic agents was also blocked. Autolysis in growing cells may be selective for peptidoglycan representing the cylindrical portion of the sacculus. It is suggested that at least part of the mechanism of the well-known lysis resistance of nongrowing E. coli is related to the deposition of structurally anomalous and relatively autolysin-resistant peptidoglycan at some strategically located sites on the bacterial surface.

Amino Acids↗

Cloning and characterization of a gene affecting the methicillin resistance level and the autolysis rate in Staphylococcus aureus.

Tn918 mutagenesis of a high-level methicillin-resistant Staphylococcus aureus (methicillin MIC, 800 micrograms/ml) led to the isolation of a low-resistance mutant. The Tn918 insert was transferred back to the parent to produce strain SRM563 (methicillin MIC, 12.5 micrograms/ml), which showed heterogeneous resistance. Twenty-two clinical isolates of methicillin-resistant S. aureus were transformed with DNA of SRM563. In the transformants of most strains, instances of reduced resistance were observed with concomitant increases of autolysis rate induced by Triton X-100 and were generally more profound in high-resistance strains. Two transformants exhibited a decrease of the autolysis rate and little reduction of resistance. In the transformant of methicillin-susceptible strain RN2677, an increase of the autolysis rate and little reduction of resistance were observed. The production of low-affinity penicillin-binding protein (PBP2') did not significantly decrease in the mutants. Insertion of Tn918 occurred within the 3'-terminal region of a novel gene designated llm, which was cloned and sequenced. RNA blot analysis demonstrated that the gene was transcribed. The encoded protein was composed of 351 amino acid residues with a molecular weight of 38,512 and was hydrophobic, suggesting its location on the membrane. The gene was detected by PCR in all S. aureus strains tested but not in the other 26 staphylococcal species. Comparison of the 3'-terminal sequences of the gene among several S. aureus strains showed that, whereas nucleotide substitutions occurred at the third position in seven of eight 3'-terminal codons, only C-terminal amino acid variation of glutamate or aspartate was observed.

Amino Acid Sequence↗

Persistence of mitochondrial competence during myocardial autolysis.

The rate of irreversible loss of mitochondrial phosphorylating respiratory function with NAD-linked substrates during zero flow myocardial autolysis at 37 degrees C was gradual and relatively linear with time, progressing at about 1% of the control activity per minute. State 3 respiratory rates and initial rates of inner membrane potential development dropped off in close parallel with one another as well as with NADH-coenzyme Q (CoQ) reductase activity, suggesting that oxygen uptake as well as membrane potential development were rate limited by the increasing impairment of electron flow through complex I. Although the initial rate of membrane potential development dropped off gradually, the time course for the loss of the ability to ultimately develop and hold a full potential was slower still, there being only a moderate impairment of this ability at 80 min of autolysis. This sustained ability to develop and hold a membrane potential after more than 1 h of autolysis suggested that inner membrane leakiness contributed little or not at all to the functional impairment observed. The irreversible loss of mitochondrial inner membrane competence emerged in these studies as a relatively late development in the sequence of cellular alterations which characterize the myocardial ischemic process.

Animals↗

Detection of PrP(sc) in samples presenting a very advanced degree of autolysis (BSE liquid state) by immunocytochemistry.

Although detection of the abnormal isoform of prion protein (PrP(sc)), the specific feature of transmissable spongiform encephalopathies (TSEs), has been previously demonstrated on formalin-fixed autolytic tissue, no samples with autolysis as severe as tested here (i.e., liquid state) have previously been tested. It is inevitable that a small but significant proportion of brains, especially in summer due to delays in postmortem examination, undergo an extremely severe autolysis that makes samples unsuitable for diagnosis by conventional techniques. In this study, 25 bovine samples were diagnosed by applying immunocytochemistry on the corresponding liquid fraction. Four additional portions of brainstem (positive and negative sheep and cattle) were subjected to one of the autolysis regimens at 56C or environmental conditions for up to 80 days and were analyzed with the same methodology. No abnormal protein could be detected in any of the control animals. PrP(sc) accumulation was observed by immunocytochemistry in all cases that were positive by either immunohistochemistry on the corresponding filtrates or by Prionics Western blotting, showing an excellent agreement between the methodology assessed and these routine techniques. The results of this study demonstrate immunocytochemistry as a useful tool for diagnosis in liquid-state samples, solving a most relevant problem in BSE and scrapie epidemiology.

Animals↗

[Degradation of transfer RNA from skeletal muscles of rats during autolysis].

sRNA were extracted from postmitochondrial fraction of rat sceletal muscles by the phenol method. Their yield, physico-chemical properties and acceptor activity during postmortal destruction were studied. Within 2 days after the death yield of sRNA was decreased by 18-20% with maintenance of the physico-chemical properties studied. At the same time the acceptor activity (towards 4 amino acids) was distinctly decreased. For various amino acids correlation between a decrease in the acceptor activity and the time of autolysis was different. Three peaks of radioactivity were observed when 14C-phenyl-alanine-sRNA was fractionated on DEAE-Sephadex A-25; two of them were distinctly decreased after 24 hrs autolysis but the third one was maintained almost without alterations. The data obtained suggest that separate types of sRNA are degraded selectively at early steps of postmortal autolysis.

Amino Acyl-tRNA Synthetases↗

[The effect of autolysis on the interpretation of results of immunohistochemical detection of myoglobin and fibrinogen in the myocardium].

Immunohistochemical detection of myoglobin and fibrinogen in the myocardium makes it possible to diagnose very early stages of ischaemic/hypoxic changes of the heart muscle. The authors demonstrate on the myocardium of a 58-years-old female patients who died suddenly with the finding of acute infarction of the anterior wall of the left ventricle with transmural rupture and cardiac tamponade the effect of autolysis on this examination. Tissue excision taken from the close vicinity of the rupture were subjected to autolysis at room temperature and immersed in formol for fixation within an interval of 24 hours. The control series of examinations was made in a similar way on the heart muscle of a 20-years-old woman who died from violent death, and ischaemic changes of the heart muscle were not anticipated. While in the early stages of autolysis it was possible to use combined immunohistochemical detection of myoglobin and fibrinogen, after a longer postmortal interval extensive artificial losses of myoglobin were observed, and the method of detection of fibrinogen deposits in damaged cardiomyocytes seemed more suitable. Even after a postmortal interval of 168 hours it was possible to differentiate reliably damaged myocytes with fibrinogen deposits from intact muscle fibres, where fibrinogen deposits were not observed.

Adult↗

[Ultrastructure changes of liver autolysis].

Ultra-structure changes of autolysis of hepatocyte were studied using transmission electron microscope(TEM). It was found that autolysis started 0.5 hour after death, with the heterochromatin of nuclei shrinking abnormally and smooth endoplasmic reticulum expanding. The changes developed to distinction after 1 h, and progressed continuously after 2 h, 3 h, 4 h and 5 h. It was found that (1) the mitochondria were swelling, its matrix density decreasing and flocculent dense bodies (FDB) emerging; (2) the rough endoplasmic reticulum and perinuclear cistern were expanding. It was suggested that ultra-structure changes of the autolysis be correlated to the postmortem time.

Autolysis↗

[The effect of hypothermia on the Ca2+-pump in sarcoplasmatic reticulum during autolysis of the myocardium].

Certain hypothermia action mechanisms on Ca2(+)-pump of the sarcoplasmic reticulum in rat myocardium autolysis are investigated. The complex dependence of Ca2(+)-transporting system preservation in autolysis on the depth of hypothermia is shown. The role of lipid peroxidation and endoproteolysis in a decrease of the autolysing myocardium Ca2(+)-pump activity is considered. A conclusion is drawn that hypothermia does not affect the accumulation of peroxidation products in sarcoplasmic reticulum membranes during myocardium autolysis. The protective action of deep hypothermia on the autolysing myocardium Ca2(+)-pump is realized, at least partially, due to an increase in the Ca2(+)-ATPase active molecules number.

Animals↗

[Aminoacyl-tRNA synthetases and their high molecular weight complexes in autolysis of the swine heart].

In pig myocardial extracts autolyzed within 15 min alanyl-, glycyl-, glutamyl-, leucyl- and seryl-tRNA synthetase activities were increased as compared with controls. The enzymatic activities were decreased after autolysis for 30 min. The 15 min autolysis was shown to decrease the molecular mass of the glycyl-tRNA synthetase complex. Within both 15 min and 30 min autolysis inorganic pyrophosphatase was markedly activated either in myocardium extracts or in high molecular complexes; this phenomenon may be responsible for activation of a number of aminoacyl-tRNA synthetases.

Amino Acids↗

Production of some enzymes in the autolysis of the white-rot fungus Coriolus versicolor in fermenter.

The autolysis and production of some extracellular enzymes by Coriolus versicolor was studied in submerged cultures. After 48 days of incubation the fungus lost 31% of its maximum dry weight. 1.3-beta-glucanase was excreted at the beginning of autolysis and proteases were present during the course of the experiment. On the other hand, laccase was produced in very small amount in the first days of incubation, reaching the maximum activity at the 8th-day of autolysis.

Autolysis↗

[Biodegradation of lipids in ultrastructures of the rat liver during autolysis].

Dynamics of various lipids turnover was studied in ultrastructures of rat liver cells within various periods of autolysis in vitro. Under conditions of autolysis the lipid component in isolated liver cell ultrastructures was dissimilarly altered; the type of these alterations depended apparently on presence of corresponding acyl hydrolases, transacylases, lipoprotein lipases activated within various periods of autolysis.

Animals↗

[Detection of endonuclease activity and several features of chromatin autolysis in brain cell nuclei].

The presence of Ca2+, Mg2+-dependent endonuclease activity in isolated brain cell nuclei was demonstrated and a comparison of some peculiarities of chromatin autolysis in rat brain and liver cell nuclei was carried out. Endogenous brain nuclease hydrolyzes chromatin into its structural subunits; its specific activity is 10,5 times as low as compared to the endogenous nuclease activity in rat liver nuclei. The dependency of the chromatin autolysis rate on pH and ionic composition of the incubation medium in isolated rate brain and liver nuclei appeared to be the same. The presence of Mn2+ changed the autolysis nature both in brain and in liver cell nuclei, the relative (as compared to Mg2+-dependent) Mn2+-dependent activity being higher in the brain cell nuclei. Possible differences of brain and liver chromatin structure (e. g. the presence of regions free of nucleosomic organization in brain chromatin) are assumed.

Animals↗

[Effect of extreme exposure on the intensity of autolysis in the brain and liver of rats].

Stress caused by 3-hour cold exposure of the animals (2-4 degrees C) or 7-day starvation is accompanied by the increase of protein autolysis in liver by 21%. At that the intensity of the autolysis in brain leaves unchanged. In spite of the same changes of the autolysis intensity in brain and in liver in cold-exposed and starved animals, the level of pholinpositive compounds in liver and brain of these two groups of animals changes in different ways in comparison with the control one. The level of pholinpositive compounds in liver of cold-exposed aminals lowers by 51%, in liver of starved animals does not change; in brain of cold-exposed animals decreases by 27% and in brain of starved ones increases by 69%. The data obtained show the autonomy of nerve tissue in the metabolic reaction of organism under any stress.

Animals↗

[Induced autolysis as an important mechanism of the initial stages of ordinary digestion].

The critical review of generally accepted ideas on initial stages of digestion in higher animals is presented. A brief account is given of the hypothesis of the induced autolysis as an important mechanism of food assimilation. According to this hypothesis digestive juices (in addition to their enzyme activities) contain factors capable to induce the autolysis of food structures. An attempt was made to estimate the value of gastric secretions and induced autolysis in the splitting of complex biological food structures. The splitting of native structures of food object was found to be more effective and complete than the splitting of the same structures subjected to heat denaturation. The results obtained suggest that the initial stages of digestion should be considered as a complex process provided both with the enzymes of gastric juice and with the enzymes of food itself, with lysosomal enzymes in particular.

Animals↗