Search PubMed⌕ Search

Biomedical subjects

S C Winans

Publications and source records attributed to S C Winans.

At least 37 records · Page 2Linked to original sources

The putA gene of Agrobacterium tumefaciens is transcriptionally activated in response to proline by an Lrp-like protein and is not autoregulated.

The Agrobacterium tumefaciens putA gene, which encodes proline dehydrogenase, is transcriptionally induced by exogenous proline. In contrast to the putA genes of enteric bacteria, the A. tumefaciens putA gene is not regulated by the PutA protein, as the putA promoter remained strongly proline inducible in strains lacking PutA. A putA null mutation increased the expression of the putA promoter under a variety of conditions. However, this mutation is predicted to increase the cytoplasmic concentration of proline, and this alone probably accounts for its effects on putA expression. The putA promoter was also strongly induced by valine, and the putA genotype did not affect expression by this gratuitous inducer. An open reading frame (ORF) encoding an Lrp-like protein was found transcribed divergently from putA. Disruption of this ORF, designated putR, abolished induction of the putA promoter by proline or valine. In addition to activating putA, PutR also repressed its own transcription, and this autorepression was only slightly affected by exogenous proline. The transcription start sites for the putA and putR genes are separated by 64 nucleotides, suggesting that PutR could regulate both promoters by binding to a single operator.

Agrobacterium tumefaciens↗

Localization of OccR-activated and TraR-activated promoters that express two ABC-type permeases and the traR gene of Ti plasmid pTiR10.

Conjugation of Agrobacterium tumefaciens wide-host-range octopine-type Ti plasmids is regulated by the LuxR-type transcriptional activator TraR in conjunction with an acylated homoserine lactone designated AAI. Expression of traR in octopine-type Ti plasmids is stimulated by OccR in response to octopine, an opine released from crown gall tumours, and is also positively autoregulated by TraR and AAI. Genetic and physical mapping of these promoters indicates that the OccR-activated promoter lies 14.5 kb upstream of traR, while the TraR-activated promoter lies 6 kb upstream. The upstream portion of the 14.5 kb operon contains seven previously characterized genes that direct the uptake and catabolism of octopine. The TraR-activated promoter lies just downstream from the octopine catabolic genes, and transcribes six genes in addition to traR, including five genes (ophABCDE) that show strong homology to oligo-peptide permeases of Salmonella typhimurium and Bacillus subtilis. Several TraR-regulated promoters overlap with 18 bp inverted repeats called tra boxes. In contrast, the traR autoregulatory promoter is not associated with a consensus tra box.

ATP-Binding Cassette Transporters↗

The conjugal transfer system of Agrobacterium tumefaciens octopine-type Ti plasmids is closely related to the transfer system of an IncP plasmid and distantly related to Ti plasmid vir genes.

We have determined the DNA sequences of two unlinked regions of octopine-type Ti plasmids that contain genes required for conjugal transfer. Both regions previously were shown to contain sequences that hybridize with tra genes of the nopaline-type Ti plasmid pTiC58. One gene cluster (designated tra) contains a functional oriT site and is probably required for conjugal DNA processing, while the other gene cluster (designated trb) probably directs the synthesis of a conjugal pilus and mating pore. Most predicted Tra and Trb proteins show relatively strong sequence similarity (30 to 50% identity) to the Tra and Trb proteins of the broad-host-range IncP plasmid RP4 and show significantly weaker sequence similarity to Vir proteins found elsewhere on the Ti plasmid. An exception is found in the Ti plasmid TraA protein, which is predicted to be a bifunctional nickase-helicase that has no counterpart in IncP plasmids or among Vir proteins but has homologs in at least six other self-transmissible and mobilizable plasmids. We conclude that this Ti plasmid tra system evolved by acquiring genes from two or three different sources. A similar analysis of the Ti plasmid vir region indicates that it also evolved by appropriating genes from at least two conjugal transfer systems. The widely studied plasmid pTiA6NC previously was found to be nonconjugal and to have a 12.65-kb deletion of DNA relative to other octopine-type Ti plasmids. We show that this deletion removes the promoter-distal gene of the trb region and probably accounts for the inability of this plasmid to conjugate.

Agrobacterium tumefaciens↗

Genes encoding the pKM101 conjugal mating pore are negatively regulated by the plasmid-encoded KorA and KorB proteins.

The IncN plasmid pKM101 contains a group of 11 genes thought to be required for the synthesis of its conjugal pilus and mating pore. Within this region are two genes, kilA and kilB, either of which is conditionally lethal to the cell. kilA was previously shown to be allelic with traL, and we now show that kilB is allelic with traE. In the same region, genetic studies previously defined two loci, korA and korB (kor for kill override), which together prevent lethality mediated by kilA and kilB. We now identify the genes that encode KorA and KorB functions. To determine whether KorA and KorB proteins influence tra gene transcription, we constructed beta-galactosidase fusions to three promoters in this region and measured their expression in the presence of KorA, KorB, and both proteins. KorA and KorB together repressed transcription of all three promoters, while neither protein alone affected transcription. We identified all three transcriptional start sites by primer extension analysis. Two putative binding sites for these proteins, designated kor boxes, contain 26 identical nucleotides in a 29-nucleotide region. The electrophoretic mobilities (of DNA fragments containing kor boxes were retarded by cell extracts containing both KorA and KorB but were not retarded by extracts containing just KorA or just KorB. DNase I footprinting analysis of one of these promoters demonstrates that KorA and/or KorB binds to a region containing a kor box.

Alleles↗

Pleiotropic phenotypes caused by genetic ablation of the receiver module of the Agrobacterium tumefaciens VirA protein.

The VirA protein of Agrobacterium tumefaciens is a transmembrane sensory kinase that phosphorylates the VirG response regulator in response to chemical signals released from plant wound sites. VirA contains both a two-component kinase module and, at its carboxyl terminus, a receiver module. We previously provided evidence that this receiver module inhibited the activity of the kinase module and that inhibition might be neutralized by phosphorylation. In this report, we provide additional evidence for this model by showing that overexpressing the receiver module in trans can restore low-level basal activity to a VirA mutant protein lacking the receiver module. We also show that ablation of the receiver module restores activity to the inactive VirA (delta324-413) mutant, which has a deletion within a region designated the linker module. This indicates that deletion of the linker module does not denature the kinase module, but rather locks the kinase into a phenotypically inactive conformation, and that this inactivity requires the receiver module. These data provide genetic evidence that the kinase and receiver modules of VirA attain their native conformations autonomously. The receiver module also restricts the variety of phenolic compounds that have stimulatory activity, since removal of this module causes otherwise nonstimulatory phenolic compounds such as 4-hydroxyacetophenone to stimulate vir gene expression.

Agrobacterium tumefaciens↗

Resection and mutagenesis of the acid pH-inducible P2 promoter of the Agrobacterium tumefaciens virG gene.

Transcription of the virG gene initiates from two tandem promoters, designated P1 and P2, that are located 50 nucleotides apart. Transcription of the P2 promoter is induced by extracellular acidity. cis-acting sites required for P2 activity were identified by constructing and assaying a series of 5' and 3' resections and site-directed nucleotide substitutions. Nucleotides between positions -9 and -37 were sufficient for regulated promoter activity. Within this region, nucleotide substitutions at the predicted -10 and -35 regions strongly reduced P2 expression. In addition, alterations in the region between nucleotides -24 and -32 also eliminated or strongly reduced promoter activity. These data suggest that this promoter may be regulated by a positive transcription factor that binds to nucleotide residues in this interval.

Agrobacterium tumefaciens↗

Conserved cis-acting promoter elements are required for density-dependent transcription of Agrobacterium tumefaciens conjugal transfer genes.

Ti plasmids of Agrobacterium tumefaciens, in addition to transferring oncogenic DNA to the nuclei of infected plant cells, can conjugally transfer between agrobacteria. Conjugation of wide-host-range octopine-type Ti plasmids requires a tumor-released arginine derivative called octopine. Octopine stimulates expression of the traR gene, whose product directly activates other tra genes in the presence of an acylated homoserine lactone called Agrobacterium autoinducer (AAI). We have localized the transcription starts of three tra promoters and find conserved elements (tra boxes) at virtually identical positions upstream of each promoter. Disruption of these tra boxes abolished induction of each promoter. Deletion analysis of the traI promoter indicates that tra boxes are the only upstream elements required for transcriptional activation. Since Ti plasmid donor cells both produce and respond to AAI, we tested whether expression of tra promoters was enhanced by high concentrations of bacteria. Both tra gene expression and conjugation itself were strongly stimulated either by high donor densities or by exogenous AAI.

Agrobacterium tumefaciens↗

Identification of Agrobacterium tumefaciens genes that direct the complete catabolism of octopine.

Agrobacterium tumefaciens R10 was mutagenized by using the promoter probe transposon Tn5-gusA7, and a library of approximately 5,000 transcriptional fusions was screened for octopine-inducible patterns of gene expression. Twenty-one mutants carrying strongly inducible gusA fusions, 20 of which showed defects in the catabolism of octopine or its metabolites, were obtained. One group of mutants could not use octopine as a carbon source, while a second group of mutants could not utilize arginine or ornithine and a third group could not utilize octopine, arginine, ornithine, or proline as a carbon source. Utilization of these compounds as nitrogen sources showed similar but not identical patterns. Fifteen fusions were subcloned together with adjacent DNA. Sequence analysis and further genetic analysis indicated that insertions of the first group are localized in the occ region of the Ti plasmid. Insertions of the second group were localized to a gene encoding ornithine cyclodeaminase. This gene is very similar to, but distinct from, a homolog located on the Ti plasmid. This gene is located immediately downstream from a gene encoding an arginase. Genetic experiments indicated that this arginase gene is essential for octopine and arginine catabolism. Insertions of the third group was localized to a gene whose product is required for degradation of proline. We therefore have identified all steps required for the catabolism of octopine to glutamate.

Agrobacterium tumefaciens↗

Census and consensus in bacterial ecosystems: the LuxR-LuxI family of quorum-sensing transcriptional regulators.

The importance of accurate demographic information is reflected in the United States Constitution, Article 1, which provides for a decennial census of this country's human population. Bacteria also conduct a census of their population and do so more frequently, more efficiently, and as far we know, with little if any of the political contentiousness caused by human demographers. Many examples have been found of particular bacterial genes, operons, or regulons that are expressed preferentially at high cell densities. Many of these are regulated by proteins related to the LuxR and LuxI proteins of Vibrio fischeri, and by a diffusible pheromone called an autoinducer. LuxR and LuxI and their cognate autoinducer (3-oxohexanoyl homoserine lactone, designated VAI-1) provide an important model to describe the functions of this family of proteins. LuxR is a VAI-1 receptor and a VAI-1-dependent transcriptional activator, and LuxI directs the synthesis of VAI-1. VAI-1 diffuses across the bacterial envelope, and intracellular concentrations of it are therefore strongly increased by nearby VAI-1-producing bacteria. Similar systems regulate pathogenesis factors in Pseudomonas aeruginosa and Erwinia spp., as well as T1 plasmid conjugal transfer in Agrobacterium tumefaciens, and many other genes in numerous genera of gram-negative bacteria. Genetic analyses of these systems have revealed a high degree of functional conservation, while also uncovering features that are unique to each.

4-Butyrolactone↗

The sixty nucleotide OccR operator contains a subsite essential and sufficient for OccR binding and a second subsite required for ligand-responsive DNA bending.

OccR is a transcriptional regulatory protein of Agrobacterium tumefaciens that activates the occQ operon in response to octopine, an arginine derivative released from plant tumors. OccR binds to its operator with similar affinity and the same stoichiometry in the presence or absence of octopine, but octopine shortens the protein's DNase I footprint and partially relaxes an OccR-incited DNA bend. In this study, resections and other alterations of the operator were used to demonstrate that 19 nucleotides near the end of the operator furthest from the occQ promoter were essential for high affinity OccR binding. This sequence, denoted the high affinity subsite, was sufficient for binding, provided that the deleted operator sequences were replaced with vector-derived DNA. The same number of OccR monomers bound to resected operators as to the wild-type operator, and OccR was able to protect vector-derived sequences adjacent to the high affinity subsite. Sequences at the promoter proximal end of the operator were required for wild-type patterns of ligand-responsive DNA bending. A sequence alteration at the end furthest from the high affinity subsite caused a partially locked low angle DNA bend, while two more centrally localized mutations caused fully or partially locked high angle bends. This suggests that the promoter proximal half of the operator may contain at least two sites required for wild-type ligand-responsive DNA bending. These mutations also provided evidence that the partial relaxation of this bend by octopine may be essential for occQ activation.

Agrobacterium tumefaciens↗

High angle and ligand-induced low angle DNA bends incited by OccR lie in the same plane with OccR bound to the interior angle.

The OccR protein of Agrobacterium tumefaciens activates transcription of the occQ operon in response to octopine. Octopine shortens the DNase I footprint of OccR and relaxes an OccR-incited DNA bend. In this study, we used hydroxyl radical footprinting to show that OccR contacts only one face of the operator. This contact spans 50 nucleotide pairs in the absence of octopine, and 39 nucleotide pairs in the presence of octopine. Octopine enhanced protection of the central region of the footprint. OccR blocked intercalation by methidiumpropyl EDTA along most of the operator, but did not block intercalation at the bend center. OccR protected DNA against both reagents far more completely at the promoter-distal half of the operator than at the promoter-proximal half. Experiments to alter the phasing between the operator bend and an adjacent sequence-directed bend indicated that the high angle DNA bend in the absence of octopine, and the low angle bend in the presence of octopine, lie in the same plane. Operator DNA was bent toward the helical face that OccR protected from hydroxyl radicals, indicating that OccR occupies the interior angle of this bend.

Agrobacterium tumefaciens↗

The octopine-type Ti plasmid pTiA6 of Agrobacterium tumefaciens contains a gene homologous to the chromosomal virulence gene acvB.

Although the majority of genes required for the transfer of T-DNA from Agrobacterium tumefaciens to plant nuclei are located on the Ti plasmid, some chromosomal genes, including the recently described acvB gene, are also required. We show that AcvB shows 50% identity with the product of an open reading frame, designated virJ, that is found between the virA and virB genes in the octopine-type Ti plasmid pTiA6. This reading frame is not found in the nopaline-type Ti plasmid pTiC58. acvB is required for tumorigenesis by a strain carrying a nopaline-type Ti plasmid, and virJ complements this nontumorigenic phenotype, indicating that the products of these genes have similar functions. A virJ-phoA fusion expressed enzymatically active alkaline phosphatase, indicating that VirJ is at least partially exported. virJ is induced in a VirA/VirG-dependent fashion by the vir gene inducer acetosyringone. Primer extension analysis and subcloning of the virJ-phoA fusion indicate that the acetosyringone-inducible promoter lies directly upstream of the virJ structural gene. Although the roles of the two homologous genes in tumorigenesis remain to be elucidated, strains lacking acvB and virJ (i) are proficient for induction of the vir regulon, (ii) are able to transfer their Ti plasmids by conjugation, and (iii) are resistant to plant wound extracts. Finally, mutations in these genes cannot be complemented extracellularly.

Agrobacterium tumefaciens↗

Activity of the Agrobacterium Ti plasmid conjugal transfer regulator TraR is inhibited by the product of the traM gene.

The Agrobacterium Ti plasmid tra regulon was previously found to be positively regulated by the TraR protein in the presence of a diffusible N-acyl homoserine lactone designated Agrobacterium autoinducer (AAI). TraR and AAI are similar to LuxR from Vibrio fischeri and the Vibrio autoinducer (VAI), which regulate target bioluminescence (lux) genes in a cell density-dependent manner. We now show that tra genes are also regulated by a second protein, designated TraM, which acts to antagonize TraR-dependent activation. The traM gene is closely linked to traR, and the two genes are transcribed convergently. The predicted TraM proteins of two different Ti plasmids are 77% identical but are not significantly similar to other protein sequences in the database, and thus TraM may represent a novel regulatory protein. Null mutations in traM cause strongly increased conjugation, tra gene transcription, and AAI production. A functional copy of traM introduced into traM mutants decreased conjugation, tra gene transcription, and AAI synthesis. TraM inhibits transcription of traA, traI, and traM. Although traM was first identified by its octopine-inducible promoter, we now show that induction by octopine requires traR, strongly suggesting that TraR is the direct traM activator.

Agrobacterium tumefaciens↗

Entry exclusion of the IncN plasmid pKM101 is mediated by a single hydrophilic protein containing a lipid attachment motif.

The eex gene(s) of pKM101, which mediates that plasmid's entry exclusion phenotype, is located within a cluster of tra genes that are thought to encode a mating bridge. We have determined the DNA sequence of the region containing eex, including the points of insertion of two flanking tra::Tn5 insertions. Sequence analysis of this interval strongly suggests that it contains only one gene. This gene is transcribed in a clockwise direction on the circular map of pKM101 and appears to be translationally coupled to neighboring tra genes. A Tn5 insertion that causes a null eex mutation disrupts this ORF. Computer analysis of the predicted eex protein suggests that it may be exported and covalently modified by the addition of lipid moieties. eex was amplified by polymerase chain reaction, subcloned, and fused to the Escherichia coli lac promoter. The resulting plasmid was sufficient to mediate entry exclusion. The degree of exclusion was greatly enhanced by overexpression of this gene.

Amino Acid Sequence↗

A mutation in the receiver domain of the Agrobacterium tumefaciens transcriptional regulator VirG increases its affinity for operator DNA.

We fused the wild-type Agrobacterium tumefaciens virG gene and the constitutive virGN54D allele to the malE gene of Escherichia coli, and studied the binding of MBP-VirG fusions to the autoregulated virG promoter. MBP-VirGN54D protein bound this promoter with 10-fold higher affinity than MBP-VirG, and bound to vir box I with eightfold higher affinity than to vir box III. Disruption of vir box III did not alter the affinity for vir box I, suggesting a lack of cooperativity between these sites. We provide evidence that protein bound at a single vir box may have a higher oligomeric state than non-bound protein, and that a DNA distortion adjacent to vir box I may occur during activation.

Agrobacterium tumefaciens↗

Common ancestry between IncN conjugal transfer genes and macromolecular export systems of plant and animal pathogens.

The DNA sequence of a cluster of pKM101 conjugal transfer genes was determined and aligned with the genetic map of the plasmid. Eighteen genes were identified, at least eight and probably 11 of which are required for efficient conjugation. These tra genes are homologous to and colinear with genes found in the virB operon of Agrobacterium tumefaciens Ti plasmids. Seven pKM101 tra genes are also homologous to ptl genes of Bordetella pertussis, which direct the export of pertussis toxin. We used TnphoA to construct translational fusions between pKM101 genes and the Escherichia coli phoA gene, which encodes alkaline phosphatase, and provide evidence that at least 11 of the 18 genes are either fully or partially exported from the cytoplasm.

Agrobacterium tumefaciens↗

A LuxR-LuxI type regulatory system activates Agrobacterium Ti plasmid conjugal transfer in the presence of a plant tumor metabolite.

Conjugal transfer of Agrobacterium octopine-type Ti plasmids is activated by octopine, a metabolite released from plant tumors. Octopine causes conjugal donors to secrete a pheromone, Agrobacterium autoinducer (AAI), and exogenous AAI further stimulates conjugation. The putative AAI synthase and an AAI-responsive transcriptional regulator were found to be encoded by the Ti plasmid traI and traR genes, respectively, and the expression of traR was induced by octopine. The octopine-type traR gene product is highly homologous to the TraR protein recently characterized from a nopaline-type Ti plasmid. TraR and TraI are homologous to the LuxR and LuxI regulatory proteins of Vibrio fischeri, and AAI is similar in structure to the diffusable V. fischeri autoinducer, the inducing ligand of LuxR. TraR activated target genes in the presence of AAI and also activated traR and traI themselves, creating two positive-feedback loops. TraR-AAI-mediated activation in wild-type Agrobacterium strains was dramatically enhanced by culturing on solid media, suggesting a possible role in cell density sensing.

Agrobacterium tumefaciens↗