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H M Fletcher

Publications and source records attributed to H M Fletcher.

31 records · Page 2Linked to original sources

The Aer protein and the serine chemoreceptor Tsr independently sense intracellular energy levels and transduce oxygen, redox, and energy signals for Escherichia coli behavior.

We identified a protein, Aer, as a signal transducer that senses intracellular energy levels rather than the external environment and that transduces signals for aerotaxis (taxis to oxygen) and other energy-dependent behavioral responses in Escherichia coli. Domains in Aer are similar to the signaling domain in chemotaxis receptors and the putative oxygen-sensing domain of some transcriptional activators. A putative FAD-binding site in the N-terminal domain of Aer shares a consensus sequence with the NifL, Bat, and Wc-1 signal-transducing proteins that regulate gene expression in response to redox changes, oxygen, and blue light, respectively. A double mutant deficient in aer and tsr, which codes for the serine chemoreceptor, was negative for aerotaxis, redox taxis, and glycerol taxis, each of which requires the proton motive force and/or electron transport system for signaling. We propose that Aer and Tsr sense the proton motive force or cellular redox state and thereby integrate diverse signals that guide E. coli to environments where maximal energy is available for growth.

Amino Acid Sequence↗

Nucleotide sequence of the Porphyromonas gingivalis W83 recA homolog and construction of a recA-deficient mutant.

Degenerate oligonucleotide primers were used in PCR to amplify a region of the recA homolog from Porphyromonas gingivalis W83. The resulting PCR fragment was used as a probe to identify a recombinant lambda DASH phage (L10) carrying the P. gingivalis recA homolog. The recA homolog was localized to a 2.1-kb BamHI fragment. The nucleotide sequence of this 2.1-kb fragment was determined, and a 1.02-kb open reading frame (341 amino acids) was detected. The predicted amino acid sequence was strikingly similar (90% identical residues) to the RecA protein from Bacteroides fragilis. No SOS box, characteristic of LexA-regulated promoters, was found in the 5' upstream region of the P. gingivalis recA homolog. In both methyl methanesulfonate and UV survival experiments the recA homolog from P. gingivalis complemented the recA mutation of Escherichia coli HB101. The cloned P. gingivalis recA gene was insertionally inactivated with the ermF-ermAM antibiotic resistance cassette to create a recA-deficient mutant (FLL33) by allelic exchange. The recA-deficient mutant was significantly more sensitive to UV irradiation than the wild-type strain, W83. W83 and FLL33 showed the same level of virulence in in vivo experiments using a mouse model. These results suggest that the recA gene in P. gingivalis W83 plays the expected role of repairing DNA damage caused by UV irradiation. However, inactivation of this gene did not alter the virulence of P. gingivalis in the mouse model.

Amino Acid Sequence↗

A novel tetracycline-resistant determinant, tet(U), is encoded on the plasmid pKq10 in Enterococcus faecium.

Nine tetracycline (Tc)-resistant clinical isolates of Enterococcus faecium were screened for plasmid content using agarose gel electrophoresis. pKQ10, a 1.9-kb plasmid carrying a novel Tc resistance determinant, was isolated from one of the isolates. The nucleotide sequence of this plasmid revealed an open reading frame corresponding to an 11.8-kDa protein and containing 105 amino acid residues. There was some limited similarity between this protein and tet(M), tet(O), tet(Q), tet(S), tetB(P), and otr(A), which overlapped, but did not include, the consensus GTP-binding sequences. The low-level, Tc-resistant determinant of pKQ10, named tet(U), does not appear to correspond to any other known Tc resistance determinant.

Amino Acid Sequence↗

Increased opsonization of a prtH-defective mutant of Porphyromonas gingivalis W83 is caused by reduced degradation of complement-derived opsonins.

Periodontitis is a disease of the supporting structures of the teeth that is caused by bacteria whose common ecologic niche is the gingival crevice or the periodontal pocket. Tissue destruction occurs in spite of both local and systemic immune responses against such bacteria. Porphyromonas gingivalis is considered to be an important pathogen in some forms of human periodontitis and is particularly interesting because of its multiplicity of virulence factors. We have previously observed that phagocytosis-resistant invasive strains of P. gingivalis proteolytically degrade C3 and IgG and accumulate less C3-derived opsonins during complement activation. We recently have cloned the prtH gene from P. gingivalis W83 that encodes a 97-kDa active protease, which has the capacity to degrade purified C3 protein. By using this cloned gene we created an allelic exchange mutant of P. gingivalis W83, designated V2296, in which the prtH gene was inactivated. This mutant was previously shown to be less virulent than its parent strain W83 in a mouse model of bacterial invasiveness. In the present study we have assessed the relative capacity of V2296 and W83 to be opsonized by complement and to be taken up by PMNs. The data demonstrate that V2296, in comparison with its parent strain W83, is less able to degrade C3 and that it accumulates significantly greater numbers of molecules of C3-derived opsonins on the bacterial surface in the form of C3b and iC3b during complement activation. Furthermore, opsonized V2296 is taken up in much higher numbers by human PMNs than W83, suggesting that the prtH gene product may be important in evasion of host defense mechanisms.

Antigens, Bacterial↗

Virulence of a Porphyromonas gingivalis W83 mutant defective in the prtH gene.

In a previous study we cloned and determined the nucleotide sequence of the prtH gene from Porphyromonas gingivalis W83. This gene specifies a 97-kDa protease which is normally found in the membrane vesicles produced by P. gingivalis and which cleaves the C3 complement protein under defined conditions. We developed a novel ermF-ermAM antibiotic resistance gene cassette, which was used with the cloned prtH gene to prepare an insertionally inactivated allele of this gene. This genetic construct was introduced by electroporation into P. gingivalis W83 in order to create a protease-deficient mutant by recombinational allelic exchange. The mutant strain, designated V2296, was compared with the parent strain W83 for proteolytic activity and virulence. Extracellular protein preparations from V2296 showed decreased proteolytic activity compared with preparations from W83. Casein substrate zymography revealed that the 97-kDa proteolytic component as well as a 45-kDa protease was missing in the mutant. In in vivo experiments using a mouse model, V2296 was dramatically reduced in virulence compared with the wild-type W83 strain. A molecular survey of several clinical isolates of P. gingivalis using the prtH gene as a probe suggested that prtH gene sequences were conserved and that they may have been present in multiple copies. Two of 10 isolates did not hybridize with the prtH gene probe. These strains, like the V2296 mutant, also displayed decreased virulence in the mouse model. Taken together, these results suggest an important role for P. gingivalis proteases in soft tissue infections and specifically indicate that the prtH gene product is a virulence factor.

Alleles↗

Cloning and characterization of a new protease gene (prtH) from Porphyromonas gingivalis.

Porphyromonas gingivalis has been implicated as a contributing etiological agent of adult periodontitis and generalized forms of early-onset periodontitis. Proteases of P. gingivalis may contribute to its pathogenicity by destroying connective tissue as well as inactivating key plasma proteins that might mediate protective host functions. In order to explore this problem, antiserum raised against membrane vesicles of P. gingivalis W83 was used to screen a genomic library of strain W83 constructed by using the lambda DASH vector system. A recombinant phage (lambda 34) expressing a P. gingivalis protease from the library was identified and characterized. Casein substrate zymography of lambda 34 lysates revealed a protease with an apparent molecular mass of 97 kDa. The gene encoding this protease was designated prtH. It was localized to a 3.7-kb HindIII-BamHI fragment and specified an enzyme which hydrolyzed the human C3 complement protein under defined conditions. The nucleotide sequence of this 3.7-kb fragment was determined, and one 2.9-kb open reading frame (992 amino acids) corresponding to a 110-kDa protein was detected, suggesting it might be a precursor of the 97-kDa active protease. prtH is not similar to any previously cloned protease gene from P. gingivalis.

Amino Acid Sequence↗

Intravaginal misoprostol as a cervical ripening agent.

OBJECTIVE: To determine if misoprostol (exogenous prostaglandin E1 PGE1) used vaginally was of value in improving the Bishop score, leading to an early safe vaginal delivery in women in whom the cervix is unripe and delivery is indicated. DESIGN: A double-blind clinical trial. SETTING: Antenatal and labour wards of the University Hospital of the West Indies, Jamaica. SUBJECTS: Forty-five women in the third trimester with various obstetric indications for induction of labour and with no contra-indications to prostaglandins. INTERVENTIONS: The women were randomly assigned to receive treatment or a placebo. The treated group had 100 micrograms misoprostol inserted vaginally while the placebo was similarly inserted. MAIN OUTCOME MEASURES: Efficacy of the misoprostol was measured by the increase in the Bishop score 12 h after giving the treatment, the time between insertion and delivery, the need for oxytocin, and the outcome of the pregnancy. RESULTS: The prostaglandin was superior to the placebo in ripening the cervix and inducing labour. The change in Bishop score was 5.3 in the misoprostol group compared with 1.5 in the placebo group (P < 0.001). The mean time from insertion to delivery was 15.6 h in the former while it was 43.2 h in the placebo group (P < or = 0.001). The need for oxytocin was also significantly less in the women receiving the prostaglandin compared with those who received the placebo (29% vs 62%, P < 0.02). There was no difference in the two groups in the delivery outcome in terms of complications, Apgar scores and mode of delivery. CONCLUSIONS: Intravaginal misoprostol is an effective and cheap method of inducing labour in the third trimester.

Administration, Intravaginal↗

A truncated Tn916-like element in a clinical isolate of Enterococcus faecium.

A 58.7-kb nonconjugative plasmid (pKQ1) previously reported in a clinical isolate of Enterococcus faecium was found to contain both a tetM and an erythromycin resistance (erm) determinant. The plasmid contained a region homologous to the A, F, H, and G HincII fragments of Tn916. However, the 4.8-kb B fragment of Tn916 which contained the tetM determinant was replaced by a 7.3-kb fragment, and the 3.6-kb HincII C fragment of Tn916 was missing. An element homologous to Tn917 was juxtaposed to the truncated Tn916-like element. The Tn917-like element was similar in size to the erm transposon Tn917 as determined by a ClaI restriction digest which spanned approximately 99% of the transposon. When Bacillus subtilis or Streptococcus sanguis were transformed with pKQ1, no zygotically induced transposition of the tetM element was detected. Similarly no transposition of the Tn917-like element was detected.

Bacillus subtilis↗

Molecular survey of clindamycin and tetracycline resistance determinants in Bacteroides species.

We have examined 13 clinical isolates of the intestinal Bacteroides group using DNA probes representing Bacteroides macrolide-lincosamide-streptogramin B (MLS) (ermF) and tetracycline resistance (tetQ) determinants as well as an insertion sequence (IS4351) previously seen in association with erm genes. tetQ-hybridizing sequences were detected in 11 of 13 tetracycline-resistant clinical isolates. On the other hand, ermF-like sequences were detected in only three of eight clindamycin-resistant strains. One isolate displayed low-level, inducible resistance to clindamycin and was sensitive to erythromycin. This same isolate had IS4351-like sequences but was missing ermF-like sequences, in contrast to previous reports which demonstrated the common association of IS4351 and erm genes. Our results suggest the occurrence of unclassified MLS genes in the Bacteroides group and furthermore suggest that IS4351-like sequences are not always linked to Bacteroides ermF-like sequences. Finally, 4 of 13 isolates conjugally transferred tetracycline resistance or linked tetracycline-clindamycin (MLS) resistances, but this process did not involve plasmids.

Autoradiography↗

Transposon-916-like elements in clinical isolates of Enterococcus faecium.

Tetracycline (Tc) resistance was found in nine out of ten clinical isolates of Enterococcus faecium. Conjugative transposons, designated Tn5031, Tn5032 and Tn5033, were present in the chromosome of three isolates. The transposons were similar both structurally and functionally to Tn916 containing the tetM determinant. A large non-conjugative plasmid found in a fourth isolate contained an element homologous to Tn916. The four isolates containing the element showing homology to Tn916 exhibited a substantially higher level of Tc resistance than the remaining five Tc-resistant isolates. Tc-resistance genes which have not been identified are apparently responsible for the low-level Tc resistance in five clinical isolates.

Conjugation, Genetic↗