African Journal of
Biotechnology

  • Abbreviation: Afr. J. Biotechnol.
  • Language: English
  • ISSN: 1684-5315
  • DOI: 10.5897/AJB
  • Start Year: 2002
  • Published Articles: 12481

Full Length Research Paper

The effect of mucA allele on biofilm architecture and the biofilm-related proteomes

Anqun Chen1, Linka Xie2, Ming Ni2, Mathee Kalai3 and Deying Tian2*
1Department of Nephrology, the first affiliated hospital of Chongqing Medical university, ChongQing 400016, China. 2Department of Infectious Disease, TongJi Hospital, TongJi Medical College of HuaZhong University of Science and Technology, WuHan 430030, China. 3Florida International University, University Park Campus, MARC 430, Miami, FL 33199, USA.
Email: [email protected]

  •  Accepted: 11 August 2011
  •  Published: 29 August 2013

Abstract

In this study, a unique mucA mutation (designated mucA56) was introduced, which was characterized by deletion of bases 166-333, encoding MucA56 protein with the deletion of the trans-membrane region, which then was proved to be cytoplasmic with phoA-mucA fusion method. PAOmucA56 was constructed with homologous recombination; two PAO1 derivatives PAOmucA22 (PDO300) and PAOmucA56 displayed mucoid phenotype on pseudomonas isolation agar (PIA) agar, but PDO300 produced more alginate than PAOmucA56. Scanning confocal laser microscopy was used to observe the biofilm structures of the three strains during various biofilm development stages. PDO300 developed biofilm with low substratum coverage and high structural heterogeneity, while PAOmucA56 and PAO1 formed uniform biofilm with complete substratum coverage. The proteomes of crude protein extracts of biofilm cells revealed that there are 17 candidate proteins differentially expressed between the two kinds of biofilm, which were proteins involved in protein synthesis, MucA degradation, energy metabolism, carbon catabolism and amino acid metabolism and so on. We might conclude that alginate production may affect biofilm architecture, and proteins involved in protein synthesis, MucA degradation, energy metabolism, carbon catabolism and amino acid metabolism might play a role in biofilm development alternatively.

 

Key words: Pseudomonas aeruginosa, mucA, alginate, biofilm, proteome.