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Biomedical subjects

T Kieser

Publications and source records attributed to T Kieser.

At least 19 recordsLinked to original sources

Transposition of IS117, the 2.5 kb Streptomyces coelicolor A3(2) 'minicircle': roles of open reading frames and origin of tandem insertions.

IS117 is a 2527 bp transposable element from Streptomyces coelicolor A3(2) with a circular transposition intermediate. Disruption of ORF1 of IS117, presumed to encode a transposase, abolished transposition. Deletion or mutation of ORF2 and ORF3, which overlap each other on opposite strands of IS117, caused a c. 20-fold reduction in integration frequency of the circular form of IS117 into the Streptomyces lividans chromosome or into the preferred chromosomal target site cloned on a plasmid in transformation experiments. In contrast, inactivation of ORF2/3 did not significantly influence transposition of IS117 derivatives from an already integrated state in the chromosome to the preferred target site cloned on a plasmid. ORF2 mutants apparently excised readily from the S. lividans chromosome, whereas excision of integrated wild-type IS117 derivatives to yield the unoccupied site was not detected; presumably, therefore, the circular transposition intermediate normally arises replicatively. Attempts to promote integration of a plasmid carrying the attachment site of IS117 by providing the ORF1 product in trans were unsuccessful. Most transformation of S. lividans with circular IS117 derivatives yielded tandem chromosomal insertions, which arose by co-transformation rather than dimerization of a monomeric insert. Typically, two to three transforming elements gave a transformed strain, suggesting a local concentration of transposase as a limit on integration.

Base Sequence

Streptomyces lividans 66 contains a gene for phage resistance which is similar to the phage lambda ea59 endonuclease gene.

The DNA of wild-type Streptomyces lividans 66 is degraded during electrophoresis in buffers containing traces of ferrous iron. S. lividans ZX1, a mutant selected for resistance to DNA degradation, simultaneously became sensitive to phi HAU3, a wide-host-range temperate bacteriophage. A DNA fragment conferring phi HAU3 resistance was cloned; it contains a phage resistance gene whose deduced amino acid sequence is similar to the phage lambda Ea59 endonuclease. The S. lividans phi HAU3 resistance does not seem to be a classical restriction-modification system, because no host-modified phages able to propagate on the wild-type strain could be isolated. The cloned fragment did not make the host DNA prone to degradation during electrophoresis, indicating that the two phenotypes are controlled by different genes which were deleted together from the chromosome of ZX1.

Amino Acid Sequence

Repeated polyketide synthase modules involved in the biosynthesis of a heptaene macrolide by Streptomyces sp. FR-008.

Genes for biosynthesis of a Streptomyces sp. FR-008 heptaene macrolide antibiotic with antifungal and mosquito larvicidal activity were cloned in Escherichia coli using heterologous DNA probes. The cloned genes were implicated in heptaene biosynthesis by gene replacement. The FR-008 antibiotic contains a 38-membered, polyketide-derived macrolide ring. Southern hybridization using probes encoding domains of the type I modular erythromycin polyketide synthase (PKS) showed that the Streptomyces sp. FR-008 PKS gene cluster contains repeated sequences spanning c. 105kb of contiguous DNA; assuming c. 5 kb for each PKS module, this is in striking agreement with the expectation for the 21-step condensation process required for synthesis of the FR-008 carbon chain. The methods developed for transformation and gene replacement in Streptomyces sp. FR-008 make it possible to genetically manipulate polyene macrolide production, and may later lead to the biosynthesis of novel polyene macrolides.

Anti-Bacterial Agents

High-frequency homologous plasmid-plasmid recombination coupled with conjugation of plasmid SCP2* in Streptomyces.

Non-transmissible derivatives of the Streptomyces multi-copy plasmid plJ101 were mobilized, by cointegrate formation, at frequencies approaching 100% (measured per recipient) by derivatives of the conjugative, low-copy-number Streptomyces coelicolor A3(2) plasmid SCP2*. Efficient co-integrate formation required that the plasmids shared at least 112 bp sequence identity, and it occurred only during conjugation. An SCP2* plasmid gene is involved in the process. Co-integrates were presumably formed in the donor cells and transported to the recipient cells. This is a new phenomenon, not known in other bacteria.

Conjugation, Genetic

Development of a gene cloning system for Streptomyces hygroscopicus subsp. yingchengensis, a producer of three useful antifungal compounds, by elimination of three barriers to DNA transfer.

Streptomyces hygroscopicus 10-22 could not be transformed with any of the commonly used Streptomyces plasmid vectors and was resistant to plaque formation by the Streptomyces phages phi C31 and R4. Repeated selection resulted in the isolation of derivatives of S. hygroscopicus 10-22 that could be transformed with pIJ101- and pJV1-derived cloning vectors and of restriction-deficient derivatives that could accept DNA propagated in Streptomyces lividans 66. These new strains, which include three that still produce the original antibiotics, can be used as hosts for gene cloning. Insertion of nonreplicating vectors by homologous recombination and transposition of Tn4560 were demonstrated in S. hygroscopicus 10-22.

Antifungal Agents

Rapid assessment of drug susceptibilities of Mycobacterium tuberculosis by means of luciferase reporter phages.

Effective chemotherapy of tuberculosis requires rapid assessment of drug sensitivity because of the emergence of multidrug-resistant Mycobacterium tuberculosis. Drug susceptibility was assessed by a simple method based on the efficient production of photons by viable mycobacteria infected with specific reporter phages expressing the firefly luciferase gene. Light production was dependent on phage infection, expression of the luciferase gene, and the level of cellular adenosine triphosphate. Signals could be detected within minutes after infection of virulent M. tuberculosis with reporter phages. Culture of conventional strains with antituberculosis drugs, including isoniazid or rifampicin, resulted in extinction of light production. In contrast, light signals after luciferase reporter phage infection of drug-resistant strains continued to be produced. Luciferase reporter phages may help to reduce the time required for establishing antibiotic sensitivity of M. tuberculosis strains from weeks to days and to accelerate screening for new antituberculosis drugs.

Adenosine Triphosphate

Triggered propagated contractions in human atrial trabeculae.

OBJECTIVE: Mechanical stretch and rapid release of locally damaged regions of rat cardiac trabeculae due to contraction of undamaged cells during the regular twitch have been shown to trigger local aftercontractions in the damaged region. These aftercontractions appear to propagate along the length of the trabeculae and to precede triggered arrhythmias. The aim of this study was to determine whether triggered propagated contractions can also be elicited in human cardiac tissue. METHODS: Trabeculae were dissected from a biopsy of the right atrial appendage which was obtained during cardiac surgery. They were mounted horizontally, superfused with a modified Krebs-Henseleit solution, and monitored with a video system. Force was measured with a silicon strain gauge; sarcomere length was measured with laser diffraction techniques. Triggered contractions were elicited in 10 trabeculae following trains of 15 stimuli at a rate of 2 Hz, separated by 15 s rest intervals, at 21 degrees C and a [Ca2+]o above 5.0 mM. RESULTS: Both video analysis and sarcomere length recordings showed that the contractions started at one end of the trabeculae and travelled from there as a localised contraction along the muscle. Increasing [Ca2+]o or the number of conditioning stimuli increased force of the stimulated twitches up to a maximum; further increase of [Ca2+]o or the number of stimuli was accompanied by a decrease of force. Force of the triggered propagated contractions increased monotonically with increasing [Ca2+]o and number of stimuli, while the interval between last stimulus and the peak of the force transient (or latency) decreased progressively, and propagation velocity increased monotonically. Propagation velocity was calculated from the interval between peak sarcomere shortening at two sites and the distance between these sites, as well as from the ratio between the length of the muscle and the duration of the force transient in the remainder of the trabeculae. With increasing temperature at constant [Ca2+]o twitch force increased while latency, force, and duration of the force transient decreased. At 37 degrees C, localised contractions travelling along the muscle could still be induced at sufficiently increased [Ca2+]o. For all interventions, propagation velocity varied from 0.8 to 3.9 mm.s-1. CONCLUSIONS: Contractions can be elicited in human atrial cardiac trabeculae. These contractions have the same basic characteristics as the triggered propagated contractions that have been described previously in rat ventricular trabeculae.

Arrhythmias, Cardiac

Analysis of the transfer region of the Streptomyces plasmid SCP2.

pIJ903, a bifunctional derivative of the 31.4 kb low-copy-number, conjugative Streptomyces plasmid SCP2*, was mutagenized in Streptomyces lividans using Tn4560. Mutant plasmids differing in their transfer frequencies, chromosome mobilization abilities, pock formation, and complementation properties were isolated. The mutations defined five transfer-related genes, traA, traB, traC, traD and spd, clustered in a region of 9 kb. The deduced sequences of the putative TraA and TraB proteins showed no overall similarity to known protein sequences, but the phenotype of traA mutant plasmids and sequence motifs in the putative TraA protein suggested that it might be a DNA helicase.

Amino Acid Sequence

A combined genetic and physical map of the Streptomyces coelicolor A3(2) chromosome.

The restriction enzymes AseI (ATTAAT), DraI (TTTAAA), and SspI (AATATT) cut the Streptomyces coelicolor A3(2) chromosome into 17, 8, and 25 fragments separable by pulsed-field gel electrophoresis (PFGE). The sums of their lengths indicated that the chromosome consists of about 8 Mb of DNA, some 75% more than that of Escherichia coli K-12. A physical map of the chromosome was constructed for AseI and DraI, using single and double digests, linking clones, cross-hybridization of restriction fragments, and locations of genetically mapped genes, insertion sequences, prophages, and the integrated SCP1 and SLP1 plasmids on the physical map. The physical map was aligned with the previously established genetic map, revealing that the two long opposite quadrants of the genetic map that are almost devoid of markers (the silent regions at 3 o'clock and 9 o'clock) are indeed physically long rather than being hot spots for genetic exchange. They must therefore contain long stretches of DNA different in function from the remainder of the genome. Consistent with this conclusion are the locations of significant deletions in both of the silent regions. Of these, a 40-kb deletion in the 9 o'clock region accompanied or followed integration of the SCP1 linear plasmid to produce the NF fertility state. PFGE analysis of Streptomyces lividans 66, a close relative of S. coelicolor A3(2), was hampered by the previously described susceptibility of its DNA to degradation during electrophoresis. However, ZX7, a mutant derivative of S. lividans lacking the DNA modification responsible for this degradation, yielded good PFGE preparations. Not more than 7 of the 17 S. coelicolor AseI fragments could be shared by the S. lividans strain.

Blotting, Southern

Transposition of IS117 (the Streptomyces coelicolor A 3 (2) mini-circle) to and from a cloned target site and into secondary chromosomal sites.

IS117, previously known as the 2.6 kb mini-circle, is a transposable element found in Streptomyces coelicolor A 3(2). It integrates predominantly into one preferred site when introduced into the closely related Streptomyces lividans 66, which lacks IS117. This preferred integration site was deleted from the S. lividans chromosome by replacement with an erythromycin resistance gene delivered by a phi C31 phage vector. When IS117 was introduced into the resulting strain it integrated into many other sites, with some indication of site preference. By cloning a 200 bp fragment centred on the preferred integration site onto a low copy number, self-transmissible Streptomyces plasmid derived from SCP2* it was shown that this sequence is sufficient to define the preferred site: IS117 integrates efficiently into this sequence from its preferred site in the host chromosome and at a lower frequency from the plasmid into the preferred site on the S. lividans chromosome.

Base Sequence

Isolation and characterization of efficient plasmid transformation mutants of Mycobacterium smegmatis.

Recent development of vectors and methodologies to introduce recombinant DNA into members of the genus Mycobacterium has provided new approaches for investigating these important bacteria. While most pathogenic mycobacteria are slow-growing, Mycobacterium smegmatis is a fast-growing, non-pathogenic species that has been used for many years as a host for mycobacteriophage propagation and, recently, as a host for the introduction of recombinant DNA. Its use as a cloning host for the analysis of mycobacterial genes has been limited by its inability to be efficiently transformed with plasmid vectors. This work describes the isolation and characterization of mutants of M. smegmatis that can be transformed, using electroporation, at efficiencies 10(4) to 10(5) times greater than those of the parent strain, yielding more than 10(5) transformants per microgram of plasmid DNA. The mutations conferring this efficient plasmid transformation (Ept) phenotype do not affect phage transfection or the integration of DNA into the M. smegmatis chromosome, but seem to be specific for plasmid transformation. Such Ept mutants have been used to characterize plasmid DNA sequences essential for replication of the Mycobacterium fortuitum plasmid pAL5000 in mycobacteria by permitting the transformation of a library of hybrid plasmid constructs. Efficient plasmid transformation of M. smegmatis will facilitate the analysis of mycobacterial gene function, expression and replication and thus aid in the development of BCG as a multivalent recombinant vaccine vector and in the genetic analysis of the virulence determinants of pathogenic mycobacteria.

DNA, Bacterial

Pleural multicystic mesothelial proliferation. The so-called multicystic mesothelioma.

We report on the clinical and pathological features of a hitherto unrecognized multicystic and multifocal mesothelial lesion arising in the pleural cavity of a 37-year-old Caucasian woman. The lesions consisted of clusters of thin-walled cysts separated by connective tissue and lined by a single layer of flattened and cuboidal mesothelium. Mucin stains, immunohistochemistry, and electron microscopy were consistent with a mesothelial origin. The pathological features are identical to those of the previously reported multicystic mesotheliomas of the peritoneum. Although these multicystic peritoneal mesothelial lesions have been regarded as neoplasms, absent stromal extension, lack of mitotic activity, and (in this case) continuity with morphologically normal surrounding mesothelium are suggestive of a reactive process. The term "multicystic mesothelial proliferation" may therefore be more appropriate. Because these lesions may be detected as discrete pleural based masses on chest radiograph and CT scan, they may be submitted for frozen section during operative resection. It is therefore important to be aware of their existence, morphology, and differential diagnosis.

Adult

Development of genetic systems for the mycobacteria.

Requisite to a detailed understanding of the molecular basis of bacterial pathogenesis is a genetic system which allows for the transfer, mutation, and expression of specific genes. Genetic analysis of mycobacteria has been exceedingly difficult since the mycobacteria grow slowly and no natural efficient method of gene transfer within the pathogenic has thus far been found. Using a molecular genetic approach, we have developed both the vectors and the methodology for efficient gene transfer in the mycobacteria. Initially, a novel of type of mycobacteriophage vector was developed, termed a shuttle phasmid. This hybrid shuttle vector replicates in Escherichia coli as a plasmid and in mycobacteria as a phage, capable of introducing foreign DNA into a wide variety of mycobacterial species. A set of shuttle phasmids, constructed from a temperate mycobacteriophage, retained their ability to lysogenize their mycobacterial hosts and could thus introduce foreign DNA stably into mycobacterial cells. An E. coli gene conferring kanamycin-resistance was cloned into these vectors and shown to express in the mycobacteria, thus providing the first selectable marker gene for subsequent genetic studies. Using kanamycin-resistance gene as a selection, the M. fortuitum plasmid pAL5000 replicon, and electroporation; a plasmid transformation system has been developed for both M. smegmatis and BCG. We now plan to use these phage and plasmid systems to analyze, genetically, the virulence attributes of the pathogenic mycobacteria. In addition, by introducing and expressing foreign antigens in BCG, we hope to develop a novel recombinant multi-vaccine vehicle capable of conferring immunity to a variety of bacterial, viral, and parasitic pathogens.

BCG Vaccine

Site-specific degradation of Streptomyces lividans DNA during electrophoresis in buffers contaminated with ferrous iron.

Streptomyces lividans DNA contains a modification which makes it susceptible to double-strand cleavage during electrophoresis in buffers contaminated with ferrous iron (which may be present in some batches of EDTA). The cleavage of the DNA is site-specific and the average fragment size resulting from limit digestion of total S. lividans DNA is about 6kb. DNA from Streptomyces coelicolor A3(2) and several other Streptomyces strains, and from E. coli, is not cleaved under the same conditions. A S. lividans mutant has been isolated which lacks the DNA modification. We suspect that many reports of "poor" preparations of S. lividans plasmids may be due to the above effect.

Buffers

Plasmid pIJ699, a multi-copy positive-selection vector for Streptomyces.

A plasmid vector, pIJ699, which provides positive selection for cloned DNA, was constructed using the replication functions of the Streptomyces wide-host-range multi-copy plasmid pIJ101. The selection for inserts is based on the principle that plasmids with long uninterrupted perfect palindromes (inverted repeats) are 'not viable' in bacteria. For cloning, pIJ699 is digested with BglII. This produces two fragments, one of which is the linearized vector, with two arms of the palindrome at its ends, and the other is a 'spacer' which is needed to keep the inverted repeat sequences apart. The vector fragment is separated from the 'spacer' fragment and ligated with the DNA to be cloned. Plasmids with a fragment of cloned DNA, but not the circularized vector, give rise to thiostrepton-resistant transformants in Streptomyces lividans. The inverted repeat sequences contain a strong transcription terminator which reduces transcriptional read-through both in and out of the cloned fragment. This improves the stability of many hybrid plasmids and facilitates the study of the regulation of cloned genes.

Cloning, Molecular

"Strong incompatibility" between derivatives of the Streptomyces multi-copy plasmid pIJ101.

Some derivatives of pIJ101, a 8.9 kb Streptomyces multi-copy plasmid, can co-exist with each other at similar copy numbers but others are strongly incompatible. The DNA sequence, sti, which causes this "strong incompatibility" was localised on a DNA segment of about 200 bp which is not part of the essential replication region of pIJ101. The sti function is active only when the DNA fragment carrying it is present in the natural orientation with respect to the basic replicon region of pIJ101. Pairs of plasmids which either both possess sti in the correct orientation (Sti+) or both lack sti or carry it in reverse orientation (Sti-) can co-exist, but Sti+ and Sti- plasmids cannot; in this case the Sti+ plasmid is retained and the Sti- plasmid is lost. This phenomenon is called strong incompatibility to distinguish it from classical incompatibility where identical or related plasmids are incompatible and dissimilar plasmids are compatible. pIJ101 probably replicates via a single-stranded intermediate; sti would be a site where the synthesis of the second (lagging) DNA strand is initiated because Sti- plasmids accumulate more single-stranded plasmid DNA than Sti+ plasmids. The copy number of pIJ101 and its derivatives is influenced by sti and by an additional trans-acting function (cop).

Chromosome Deletion