Literature DB >> 12488076

Cloning and characterisation of type 4 fimbrial genes from Actinobacillus pleuropneumoniae.

Andrew Stevenson1, Julie Macdonald, Mark Roberts.   

Abstract

Actinobacillus pleuropneumoniae is the cause of porcine pleuropneumoniae. Little is known about the mechanisms by which A. pleuropneumoniae colonises the respiratory tract. Fimbriae are common mediators of bacterial adherence to mucosal epithelia and have been observed on the surface of A. pleuropneumoniae cells. Here we report the identification and characterisation of the type 4 fimbrial structural gene (apfA) from A. pleuropneumoniae. In addition a number of open reading frames were identified in A. pleuropneumoniae that have significant homology to type 4 fimbrial biogenesis genes from other species, including a putative leader specific peptidase (apfD). A. pleuropneumoniae apfA codes for a predicted polypeptide of approximately 16kDa, removal of the leader sequence at the predicted cleavage site would yield a 14.5kDa polypeptide. The first 30 residues of the mature polypeptide are well conserved with other members of the group A type 4 fimbriae family. The signal sequence of ApfA is 13 amino acids in length and, unusually, the residue that precedes the cleavage site is alanine rather than glycine which is found in most other type 4 fimbriae. The C-terminus of ApfA possesses cysteine residues that are conserved in type 4 fimbriae of many species. In other type 4 fimbriae the distal C-terminal cysteines form a disulphide bond that produces a loop, which is important for the function of fimbriae and also comprises a major antigenic determinant. A motif within the predicted loop in ApfA was found to be highly conserved in type 4 fimbriae of other HAP organisms (Haemophilus, Actinobacillus, Pasteurella). The A. pleuropneumoniae type 4 fimbrial biogenesis genes showed the strongest homology to putative type 4 fimbrial genes of Haemophilus ducreyi. A. pleuropneumoniae apfA gene was shown to be present and highly conserved in different serotypes of A. pleuropneumoniae. Recombinant ApfA was produced and used to raise anti-ApfA antisera.

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Year:  2003        PMID: 12488076     DOI: 10.1016/s0378-1135(02)00351-6

Source DB:  PubMed          Journal:  Vet Microbiol        ISSN: 0378-1135            Impact factor:   3.293


  10 in total

1.  Genomic sequence of an otitis media isolate of nontypeable Haemophilus influenzae: comparative study with H. influenzae serotype d, strain KW20.

Authors:  Alistair Harrison; David W Dyer; Allison Gillaspy; William C Ray; Rachna Mungur; Matthew B Carson; Huachun Zhong; Jenny Gipson; Mandy Gipson; Linda S Johnson; Lisa Lewis; Lauren O Bakaletz; Robert S Munson
Journal:  J Bacteriol       Date:  2005-07       Impact factor: 3.490

2.  Demonstration of Type IV pilus expression and a twitching phenotype by Haemophilus influenzae.

Authors:  Lauren O Bakaletz; Beth D Baker; Joseph A Jurcisek; Alistair Harrison; Laura A Novotny; James E Bookwalter; Rachna Mungur; Robert S Munson
Journal:  Infect Immun       Date:  2005-03       Impact factor: 3.441

Review 3.  Virulence factors of Actinobacillus pleuropneumoniae involved in colonization, persistence and induction of lesions in its porcine host.

Authors:  Koen Chiers; Tine De Waele; Frank Pasmans; Richard Ducatelle; Freddy Haesebrouck
Journal:  Vet Res       Date:  2010-06-15       Impact factor: 3.683

4.  Host cell contact-induced transcription of the type IV fimbria gene cluster of Actinobacillus pleuropneumoniae.

Authors:  Bouke K H L Boekema; Jos P M Van Putten; Norbert Stockhofe-Zurwieden; Hilde E Smith
Journal:  Infect Immun       Date:  2004-02       Impact factor: 3.441

5.  Regulation of pga operon expression and biofilm formation in Actinobacillus pleuropneumoniae by sigmaE and H-NS.

Authors:  Janine T Bossé; Sunita Sinha; Ming-Shi Li; Clíona A O'Dwyer; John H E Nash; Andrew N Rycroft; J Simon Kroll; Paul R Langford
Journal:  J Bacteriol       Date:  2010-03-05       Impact factor: 3.490

6.  Genomic characterization of Haemophilus parasuis SH0165, a highly virulent strain of serovar 5 prevalent in China.

Authors:  Zhuofei Xu; Min Yue; Rui Zhou; Qi Jin; Yang Fan; Weicheng Bei; Huanchun Chen
Journal:  PLoS One       Date:  2011-05-17       Impact factor: 3.240

7.  Type IV fimbrial subunit protein ApfA contributes to protection against porcine pleuropneumonia.

Authors:  Lenka Sadilkova; Jiri Nepereny; Vladimir Vrzal; Peter Sebo; Radim Osicka
Journal:  Vet Res       Date:  2012-01-12       Impact factor: 3.683

8.  Global effects of catecholamines on Actinobacillus pleuropneumoniae gene expression.

Authors:  Lu Li; Zhuofei Xu; Yang Zhou; Lili Sun; Ziduo Liu; Huanchun Chen; Rui Zhou
Journal:  PLoS One       Date:  2012-02-08       Impact factor: 3.240

9.  Identification of surprisingly diverse type IV pili, across a broad range of gram-positive bacteria.

Authors:  Saheed Imam; Zhongqiang Chen; David S Roos; Mechthild Pohlschröder
Journal:  PLoS One       Date:  2011-12-21       Impact factor: 3.240

10.  Auxotrophic Actinobacillus pleurpneumoniae grows in multispecies biofilms without the need for nicotinamide-adenine dinucleotide (NAD) supplementation.

Authors:  Abraham Loera-Muro; Mario Jacques; Francisco J Avelar-González; Josée Labrie; Yannick D N Tremblay; Ricardo Oropeza-Navarro; Alma L Guerrero-Barrera
Journal:  BMC Microbiol       Date:  2016-06-27       Impact factor: 3.605

  10 in total

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