Rhodococcus erythropolis as a host for expression, secretion and glycosylation of Mycobacterium tuberculosis proteins

Microb Cell Fact. 2017 Jan 19;16(1):12. doi: 10.1186/s12934-017-0628-6.

Abstract

Background: Glycosylation is one of the most abundant posttranslational polypeptide chain modification in nature. Although carbohydrate modification of protein antigens from many microbial pathogens constitutes important components of B cell epitopes, the role in T cell immunity is not completely understood. There is growing evidence about the importance of these modifications in host bacteria interactions in tuberculosis. It is known, that the sugars present in some Mycobacterium tuberculosis glycoproteins play an important role in both humoral and cellular immune response against the pathogen. Since this modification is lost in the recombinant proteins expressed in Escherichia coli, it is fundamental to search for host bacteria with the capacity to modify the foreign proteins. Amongst the bacteria that are likely to have this possibility are some members of Rhodococcus genus which are Gram-positive bacteria, with high GC-content and genetically very close related to M. tuberculosis.

Results: In this work, apa, pstS1 and lprG genes that coding for M. tuberculosis glycoproteins were cloned and expressed in Rhodococcus erythropolis. All recombinant proteins were mannosylated as demonstrated by their interaction with mannose binding lectin Concanavalin A. In addition, as native proteins recombinants Apa and PstS1 were secreted to the culture medium in contrast with LprG that was retained in the cell wall.

Conclusions: Together these results, point out R. erythropolis, as a new host for expression of M. tuberculosis glycoproteins.

Keywords: Mycobacterium tuberculosis; Posttranslational modification; Recombinant glycoproteins; Rhodococcus erythropolis.

MeSH terms

  • Antigens, Bacterial / genetics
  • Bacterial Proteins / genetics*
  • Bacterial Proteins / isolation & purification
  • Bacterial Proteins / metabolism*
  • Cloning, Molecular
  • Concanavalin A / metabolism
  • Culture Media / chemistry
  • Escherichia coli / genetics
  • Glycoproteins / genetics*
  • Glycoproteins / metabolism*
  • Glycosylation
  • Mycobacterium tuberculosis / chemistry
  • Mycobacterium tuberculosis / genetics*
  • Protein Processing, Post-Translational
  • Recombinant Proteins / isolation & purification
  • Recombinant Proteins / metabolism
  • Rhodococcus / genetics*
  • Rhodococcus / metabolism

Substances

  • Antigens, Bacterial
  • Bacterial Proteins
  • Culture Media
  • Glycoproteins
  • Recombinant Proteins
  • Concanavalin A