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V N Danilevich

Publications and source records attributed to V N Danilevich.

At least 19 recordsLinked to original sources

[The chromosomal genes for black widow spider neurotoxins do not contain introns].

The overlapping fragments of the chromosomal DNA from black widow spider Latrodectus mactans carrying genes for high-molecular-mass protein neurotoxins, alpha- and delta-latroinsectotoxins (alpha-LIT and delta-LIT) and alpha-latrotoxin (alpha-LTX), were PCR-amplified and cloned. Restriction analysis of the PCR products showed that the distribution and sizes of the restriction fragments coincided with those deduced from the earlier sequencing of cDNAs of the corresponding genes. It thus followed that the alpha-LIT and delta-LIT genes are intronless. Along with our data on the structure of the alpha-latrocrustotoxin (alpha-LCT), this implies that the lack of introns is a common feature of the black widow spider genes encoding high molecular mass neurotoxins.

Animals↗

[The plasmid carrying the temperature-sensitive mutation in the DNa-methylase gene of the PStI system: effect on host cells at nonpermissive temperature].

Temperature-sensitive (ts) derivatives of plasmid pRMP1, the derivative of PBR322 containing restriction and modification (RM) genes of the PstI system, were obtained using hydroxylamine mutagenesis. One of the isolated plasmids responsible for the inhibition of Escherichia coli cell growth at 42 degrees C, pRMPts, was analyzed in this work. Cells of Rec+ strains carrying this plasmid were unable to divide at 42 degrees C and formed long non-septated filaments that died upon prolonged cultivation. Cells of the RecA- strains carrying pRMPts did not form filaments at 42 degrees C and rapidly disappeared. On agar media with or without ampicillin, Rec+ and RecA- strains with this plasmid formed colonies of temperature-resistant (tr) derivatives with frequencies ranging from 1.5 x 10(-4) to 4 x 10(-6) in independent clones. The structure of plasmids from cells of tr-derivatives of Rec+ and RecA- strains carrying plasmid pRMPts was analyzed by the set of restriction enzymes. Reversions to the temperature-resistant phenotype were shown to result from the following events: (1) the insertional inactivation of the PstI restriction enzyme gene in pRMPts (the insertion of the IS1 element); (2) deletions in plasmid DNA fragments that partially or completely cover the restriction enzyme gene; (3) point mutations; and (4) others. The effect of the chromosomal sulA mutation on the maintenance of the ts-plasmid in bacterial cells was studied at 42 degrees C. High efficiency loss of the plasmid was detected in pRMPts-carrying Rec+ cells with the sulA::Tn5 mutation grown in liquid and solid nutrient media at this temperature. Under similar conditions, plasmid loss was not detected in SulA+ cells. On the basis of the data obtained, it is concluded that the ts-mutation is located in the DNA-methylase gene of plasmid pRMPts. Mutant DNA methylase was unable to methylate all sites in the chromosomal DNA at 42 degrees C. Some of the unmethylated sites can be digested with the PstI enzyme, which leads to the induction of SOS response in Rec+ cells or to total mortality in cells with the recA phenotype.

Bacterial Proteins↗

[Cloning and structure of gene encoded alpha-latrocrustoxin from the Black widow spider venom].

The primary structure of the crusta gene encoding alpha-latrocrustoxin (alpha-LCT), a high molecular mass neurotoxin specific to crustaceans, was determined in the black widow spider Latrodectus mactans tredicimguttatus genome. The total length of the sequenced DNA was 4693 bp. The structural part of the black widow spider chromosome gene encoding alpha-LCT does not contain introns. The sequenced DNA contains a single extended open reading frame (4185 bp) and encodes a protein precursor of alpha-LCT, comprising 1395 aa. We assume the Met residue at position -10 relative to the N-terminal residue of Glu1 of the mature toxin to be the first one in the protein precursor. The calculated molecular mass of the precursor (156147 Da) exceeds that of the mature toxin by approximately 30 kDa. These data are in agreement with the notion that over the course of maturation the protein precursor undergoes double processing--cleavage of a decapeptide from the N-terminal part and of a approximately 200-aa fragment from the C-terminal part. alpha-LCT displayed a number of imperfect ankyrin-like repeats and areas of structural homology with earlier studied latrotoxins; the highest homology degree (62%) was revealed with alpha-latroinsectotoxin (alpha-LIT).

Amino Acid Sequence↗

[Cloning the gene of beta-galactosidase from the industrial strain of Streptococcus lactis 111 in E. coli cells and conjugated transfer of this gene to Streptococcus thermophilus cells].

The ability of the industrial strains of Streptococcus lactis to synthesize the enzyme beta-galactosidase was studied. Five strains among sixteen were found to produce high levels of the enzyme. The beta-galactosidase gene in the most active strain Streptococcus lactis 111 was shown to be located on the 50 kb conjugative plasmid. The plasmid was transferred by conjugation into Streptococcus thermophilus cells and subsequently the gene for beta-galactosidase was studied in transconjugants. The beta-galactosidase gene from Streptococcus lactis 111 was subcloned in Escherichia coli cells on the plasmid pBR322. The gene was localized on the 4.8 kb BgIII fragment of DNA. Following the restriction of DNA by the Sau3A the gene was subcloned on the birepliconed plasmid vector pCB20 capable of replication in the Gram-negative as well as Gram-positive microorganisms. The recombinant derivatives of pCB20 were isolated that carry the beta-galactosidase gene on the DNA fragments of different size.

Cloning, Molecular↗

[Structure of the beta-galactosidase gene from Streptococcus diacetylactis 144 and its expression in Escherichia coli and Streptococcus diacetylactis cells].

The ability of industrial strains of mesophylic Streptococcus diacetylactis to synthesize the enzyme beta-galactosidase has been studied. Among the 22 studied strains 8 were found to synthesize the enzyme. Plasmid DNA was isolated from the Streptococcus diacetylactis strain 144 possessing the highest level of beta-galactosidase activity. The cells of the strain harbour the 35, 40 and 60 kb plasmids. The alpha-galactosidase genes from this strain was cloned in Escherichia coli cells. The gene is located on the BglIII DNA fragment of the total plasmid DNA from Streptococcus diacetylactis the size of 2.8 kb. Following the Sau3A restriction endonuclease digestion the gene was subcloned on a birepliconed vector plasmid pCB20. The latter is capable of replication in the Gram-negative as well as Gram-positive microorganisms. The pCB20 derivatives carrying the different length fragments with the beta-galactosidase gene were isolated. DNA of an obtained plasmid was used for transformation of Streptococcus diacetylactis cells. The presence of the recombinant plasmid in streptococcus strain 144 results in the 1.8 fold increase in beta-galactosidase production.

Escherichia coli↗

[Cloning of the Streptococcus thermophilus beta-galactosidase gene and its expression in Escherichia coli and Bacillus subtilis cells].

The beta-galactosidase gene from the chromosome of Streptococcus thermophilus, strain 6 kb, has been cloned on a vector plasmid pBR322. The corresponding gene has been found to be located on the Pst1 DNA fragment. The restriction map of this 6 kb fragment has been constructed. The shortening of the DNA fragment carrying the beta-galactosidase gene has been achieved by digestion of the recombinant derivative of pBR322 by the restriction endonuclease Sau3A under the conditions of incomplete hydrolysis. The obtained fragments have been cloned into the BamHI site in the berepliconed shuttle vector pCB20 for grampositive and gramnegative bacteria. The obtained recombinant plasmids contained the beta-galactosidase gene in the inserted fragments of different length. Expression of the cloned beta-galactosidase gene in Escherichia coli and Bacillus subtilis cells has been studied.

Bacillus subtilis↗

[Structure and stability of cointegrating plasmids mediated by the IS1 elements in transposon delta Tn9'].

In order to elucidate the structural features of the transposon Tn9', representative of the Tn9 family, which define the ability of the transposon to produce unstable cointegrates, we have obtained a derivative of this transposon carrying a deletion in its central region. The deletion in the obtained transposon delta Tn9' covers a DNA segment of about 50 bp in length, occupying the most distal position in relation to the cat gene, at its junction with the right copy of the IS1. The structure and stability of the IS1/delta Tn9'-mediated cointegrates between the plasmids pDK57.1 (pBR322::delta Tn9') and pRP3.1, a deletion derivative of RP1, have been studied. The three types of cointegrates were found. Those of the type I are predominantly formed, due to the left copy of the IS1 which in delta Tn9' occupies proximal position to the promoter of the cat gene. These cointegrates contain three copies of IS1 and are of high stability. The cointegrates of the type II contain two entire copies of delta Tn9' (i.e. four copies of IS1) as well as the structures of the type II, representing the cointegrate equivalent of inverse transposition and also containing four copies of IS1. Cointegrates of the type II and III dissociate efficiently in the rec+ cells but, in contrast to the cointegrates mediated by the original transposon Tn9', are unable to dissociate efficiently in the recA- cells. It was concluded that a DNA segment in the central region of Tn9' may be essential for the expression of the IS1-specific resolvase encoded by the right copy of IS1.

DNA Transposable Elements↗

[Sucrose utilization determinants of transposon Tn2555].

The Sac- -derivatives of the plasmid pBRS5.2 containing the sucrose utilization transposon Tn2555 were obtained by using the insertional mutagenesis. The sac mutations were mapped within the transposons DNA fragment of about 3kb. The existence of two linkage groups of the sac mutations was shown by complementation analysis. Among the gene products of Tn2555 the polypeptides of about 58, 36, 27, 14 and 12 kd were found. The data on relation of the sac genes of Tn2555 and the ones of the known plasmid pUR400 of Salmonella typhimurium are discussed.

Chromosome Mapping↗

[Cis-active function of plasmid R 57 resolving co-integrates formed during transposition of ISI-elements].

The mechanism of pBR322 plasmid mobilization in the cells of Escherichia coli K-12 recA by conjugative factor R57 was studied. It was shown that mobilization of pB322 is achieved by formation of unstable IS1-mediated cointegrates with R57. In the rec+ E. coli strains cointegrates resolved with formation of pBR322:IS1 plasmids. In the recA bacteria the cointegrates dissociated to pBR:IS1, as well as to other insertion derivatives of pBR322. Some of the latter contain Tn9-like sequence, i.e. a transposon flanked by direct repeats of IS1. The subsequent transposition of IS1 from pBR-. IS1 to pBR3.1 plasmid (Aps deletion derivative of RP1) leads to formation of stable cointegrates incapable of dissociating even in the presence of coresident plasmid R57. It is suggested that R57 encodes the cys-acting function providing recA-independent recombination between direct repeats of IS1.

Ampicillin↗

[Deletions of plasmid pRP3.1ts12 derived from RP1 leading to the suppression of the thermosensitive ts12 mutation and mucoid phenotype induction in Escherichia coli K-12].

Properties of a temperature-sensitive in replication mutant pRP3.1ts12 derived from the broad host range RP1 plasmid have been studied. pRP3.1ts12 is a shortened variant of the temperature-sensitive RP1ts12 mutant carrying a deletion in a region from 2.3 to 7.6 MD. In contrast to RP1ts12, the plasmid pRP3.1ts12 is a leaky ts mutant and is characterized by an elevated frequency of reversions to the temperature-independent phenotype. Temperature-independent derivatives of pRP3.1ts12 were studied. Approx. 15% of these were found to induce mucoid growth of the host cells. As revealed from restriction endonuclease analysis, most of the latter derivatives contain deletions of small DNA segments in the region 0.56 to 2.3 MD of the RP1 map. The possible nature of the gene(s), whose deletions suppress the temperature-sensitive ts12 mutation and results in superproduction of Escherichia coli capsular poly-saccharide is discussed.

Chromosome Deletion↗

[Integration of plasmid RP1 with the chromosome of Escherichia coli K-12 recA. 2 classes of Hfr strains].

Integration of broad host range RP1 plasmid into the chromosome of Escherichia coli K-12 recA- cells has been studied. Using temperature-sensitive for replication plasmids pVD1 and pVD3, the derivatives of RP1, it has been shown that integration of RP1 into the bacterial chromosome results in formation of two classes of Hfr strains. Properties of these Hfrs have been examined. From the data obtained, it has been concluded that the plasmid integration and formation of one of the Hfrs classes appear to be mediated by transposon Tn1 residing on RP1. The other class of Hfr strains is formed due to a stable integration of RP1. In the course of analysis of R+ transconjugants arising at low frequency in crosses between stable Hfrs and E. coli rec+ recipients, it has been found that the significant part of them contain plasmid-chromosome hybrids (R-prim plasmids). On the basis of the latter results, a new simple method for R' plasmids selection has been proposed. Using restriction endonuclease analysis, the structure of plasmids that were excised from chromosomes of the stable Hfr strains and were comparable in their size to RP1, has been investigated. Probable mechanisms of the stable Hfr strains formation are discussed.

Chromosomes, Bacterial↗

[Formation of stable Hfr strains in R factor RP1 integration with the chromosome of E. coli K12 recA and their use for R-plasmid selection].

Analysis of thermoindependent derivatives of E. coli K12 JC1553 recA (p VD1) carrying a replication thermostable mutant pVD1 of R factor RP1 IncP Ap Km Tc showed that formation of about 5 per cent of them was associated with stable integration of the plasmid with the bacterial chromosome. The respective bacteria had the following features: (1) preserved all the markers of plasmid pVD1, (2) according to the data of the electrophoretic analysis had no extrachromosomal DNA on prolonged cultivation under nonselective conditions, (3) were effective donors of the chromosomal genes, (4) had a low rate of the plasmid marker transfer on crossing with R- recipient. The latter feature was suggested to be used as a test for identification of stable Hfr strains. Investigation of the properties of the transconjugants obtained on crossing of stable Hfr strains with R-recipients rec+ showed that same of them had plasmid DNA with a higher molecular mass as compared to that of plasmid pVD1 DNA. The presence of this DNA was connected with formation of R' plasmid as a result of an irregular exclusion of plasmid pVD1 from the chromosome of stable Hfr bacteria. On the basis of the results a simple method was proposed for selection of R' plasmids having a number of advantages over the classical ones. The perspectives of using thermostable derivatives of RP1 for cloning the chromosome genes are discussed.

Chromosomes, Bacterial↗

[New class of RP4 plasmid mutations inducing a mucoid-type of Escherichia coli K-12 cell growth].

A new class of mutations is described which induce mucoid growth of Escherichia coli K-12. Unlike classical capR and capS mutations, the mucoid phenotype of colonies of the cap forms obtained is determined by mutations in genomes of thermosensitive plasmids pEG1 and RP1-6Repts12, derivates of the RP1 Inc P1 Ap Tc Km factor and accompanied by a complete or partial loss of the thermosensitive character of maintenance. The morphological character induced by plasmids is not associated with changes in the sensitivity of bacteria to UV irradiation and is determined by superproduction of capsular polysaccharide differing in the chemical structure from colanic acid, a common capsular polysaccharide of E. coli K-12.

Conjugation, Genetic↗

[Restriction and electron microscopic analyses of deletion derivatives thermosensitive with respect to maintaining plasmid pEG1].

Temperature-independent deletion mutants of temperature-sensitive in self-maintenance plasmid pEG-1, derived from R-factor RP4, are mapped using the restriction endonucleases PstI, SmaI, EcoRI, BamHI and the heteroduplex analysis. The pEG1 derivatives under study are found to have deletions in the area of ampicillin transposon Tn1 and nearby genes. The left and the right ends of these deletions boundaries are localized between 37.5 MD and 7.6 MD in the RP4 map. Thus far, the area of plasmid RP4 (37.5-7.6 MD) with Tn1 and, presumably, inc gene(s) in it does not have any genes needed for stable maintenance of R-factor. A conclusion is made that the gene RP4, which carries the mutation determining thermosensitive character of pEG1 maintenance and of inhibition of the cell growth, is localized between the EcoRI site and transposon Tn1 at a distance less than 1.0 MD from the latter.

DNA Restriction Enzymes↗

[Isolation and characteristics of deletion mutants of thermosensitive plasmid pEG1].

Phenotypic revertants of temperature-sensitive in self-maintenance plasmid pEG1 derived from R-factor RP4 were studied. The study indicated a sertain part of them to be variants without ampicillin resistance. The frequency of pEG1 ampicillin sensitive (Aps) derivatives is about 5.10(-7) and does not depend on the recA gene product. The Aps-derivatives of pEG1 plasmid can be classified in two phenotypic groups. The first group is temperature-independent and does not inhibit the growth of host cells by non-permissive temperature (43 degrees C). Agarose gel electrophoresis has revealed that plasmids of this group occur as a result of deletions in plasmid pEG1. The other group of Aps-derivatives still possess the property to be eliminated at 43 degrees C and they inhibit the growth of bacterial cells like pEG1. Agarose gel has demonstrated that some of them are deletion mutants while others are quite similar to pEG1 plasmid. The data obtained in the course of study of deletion mutants make it possible to suppose that the presence of gene with temperature sensitive mutation in pEG1 is not necessary for stable maintenance of R-factor.

Ampicillin↗

[Integration of the RP4 factor with the chromosome in Escherichia coli K12 and the formation of 2 types of Hfr-strains].

The mutant RP4ts12, derived from the R-factor RP4 and thermosensitive in replication, is incorporated into the chromosome A3dna(ts) of E. coli K12, thus suppressing dnaA mutation. The integration of this factor into the chromosome leads to the formation of Hfr strains of two types: the strains of the first type transfer plasmid markers to recipient cells earlier than to chromosomal ones; the strains of the second type transfer plasmid markers to recipient cells after chromosomal ones. During conjugation the R-factor integrated into the chromosome dissociates from chromosomal DNA introduced into the recipient cell and becomes autonomous.

Chromosomes, Bacterial↗

[Incorporation of the ampicillin resistance transposon into the Escherichia coli K-12 chromosome and into plasmids].

The mutant pEG1 of R-factor RP4 with temperature-sensitive defect in replication, carrying a transposable ampicillin resistance element Tn1 was used to define the frequency of insertion of this element into Escherichia coli K-12 chromosome and some other plasmids. Our results indicate that the frequency of colony forming by bacteria with pEG1-factor on ampicillin medium in non-permissive conditions corresponds to the frequency of Tn1 insertion into bacterial chromosome or some other plasmid (in case when the strains are carrying a second plasmid). The frequency of Tn1 insertion into the chromosome is about 4.10(-4). The defect in recA gene produce no serious change in the frequency of Tn1 insertion into the bacterial chromosome. The translocation of Tn1 element from pEG1-factor to R483, R6 and ColE1 plasmids occurs at 10 to 100-fold-higher frequency than from the plasmid to the chromosome. The insertion of Tn1 into the F'-factor KLF10 and R-factor R64-11 occurs at far lower frequency than that to plasmids R6, R483, or ColE1.

Ampicillin↗

Transposon-mediated insertion of R factor into bacterial chromosome.

Insertion of transposon T n1 into the E. coli JC411 chromosome results in a sharp increase of plasmid RP4 integration frequency. This effect is absent in JC1553 recA cells. The RP4 integration with the chromosome is probably accomplished via recA-dependent recombination between transposon Tn1 inserted into the chromosome and the same transposon in the RP4 plasmid.

Ampicillin↗