DOI QR코드

DOI QR Code

Characterization of Surface Layer Proteins in Lactobacillus crispatus Isolate ZJ001

  • Chen, Xueyan (Zhejiang University Institute of Preventive Veterinary Medicine, and Zhejiang Provincial Key Laboratory of Preventive Veterinary Medicine) ;
  • Chen, Yang (Zhejiang University Institute of Preventive Veterinary Medicine, and Zhejiang Provincial Key Laboratory of Preventive Veterinary Medicine) ;
  • Li, Xiaoliang (Zhejiang University Institute of Preventive Veterinary Medicine, and Zhejiang Provincial Key Laboratory of Preventive Veterinary Medicine) ;
  • Chen, Ning (Zhejiang University Institute of Preventive Veterinary Medicine, and Zhejiang Provincial Key Laboratory of Preventive Veterinary Medicine) ;
  • Fang, Weihuan (Zhejiang University Institute of Preventive Veterinary Medicine, and Zhejiang Provincial Key Laboratory of Preventive Veterinary Medicine)
  • Published : 2009.10.31

Abstract

Lactobacillus crispatus (L. crispatus) ZJ001 is highly adhesive to epithelial cells and expresses S-layer proteins. In this study, S-S-layer layer genes were sequenced and expressed in E. coli to characterize the function of proteins with this particular strain. L. crispatus ZJ001 harbored two S-layer genes slpA and slpB, and only slpA gene was expressed in the bacterium, as revealed by RT-PCR and immunoassays. The mature SlpA showed 47% amino acid sequence identity to SlpB. The SlpA and SlpB of L. crispatus ZJ001 were highly homologous at the C-terminal region to other Lactobacillus S-layer proteins, but were substantially variable at N-terminal and middle regions. Electron microscopic analysis indicated that His-slpA expressed in E. coli was able to form a sheet-like structure similar to the natural S-layer, but His-slpB formed as disc-like structures. In the cell binding experiments, HeLa cells were able to bind to both recombinant His-slpA and His-slpB proteins to the extent similar to the natural S-layer. The cell binding domains remain mostly in the N-terminal regions in SlpA and SlpB, as shown by high binding of truncated peptides SlpA2-228 and SlpB2-249. Our results indicated that SlpA was active and high binding to HeLa cells, and that the slpA gene could be targeted to display foreign proteins on the bacterial surface of ZJ001 as a potential mucosal vaccine vector.

Keywords

References

  1. Antikainen, J., L. Anton, J. Sillanp$\ddot{a}$$\ddot{a}$, and T. K. Korhonen. 2002. Domains in S-layer protein CbsA of Lactobacillus crispatus involved in adherence to collagens, laminin and lipoteichoic acids and self-assembly. Mol. Microbiol. 46: 381-394 https://doi.org/10.1046/j.1365-2958.2002.03180.x
  2. $\AA$vall-J$\ddot{a}$$\ddot{a}$skelainen, S. and A. Palva. 2005. Lactobacillus surface layers and their applications. FEMS Microbiol. Rev. 29: 511-529 https://doi.org/10.1016/j.femsre.2005.04.003
  3. Boot, H. J., C. P. Kolen, J. M. Van Noort, and P. H. Pouwels. 1993. S-layer protein of Lactobacillus acidophilus ATCC 4356:Purification, expression in Escherichia coli, and nucleotide sequence of the corresponding gene. J. Bacteriol. 175: 6089-6096
  4. Boot, H. J., C. P. Kolen, and P. H. Pouwels. 1995. Identification, cloning and nucleotide sequence of a silent S-layer protein gene of Lactobacillus acidophilus ATCC 4356 which has extensive similarity with the S-layer protein gene of this species. J. Bacteriol. 177: 7222-7230
  5. Boot, H. J., C. P. Kolen, B. Pot, K. Kersters, and P. H. Pouwels. 1996. The presence of two S-layer-protein-encoding genes is conserved among species related to Lactobacillus acidophilus. Microbiology 142: 2375-2384 https://doi.org/10.1099/00221287-142-9-2375
  6. Boot, H. J., C. P. Kolen, and P. H. Pouwels. 1996. Interchange of the active and silent S-layer protein genes of Lactobacillus acidophilus by inversion of the chromosomal slp segment. Mol. Microbiol. 21: 799-809 https://doi.org/10.1046/j.1365-2958.1996.401406.x
  7. Callegari, M. L., B. Riboli, J. W. Sanders, P. S. Coccocelli, J. Kok, G. Venema, and L. Morelli. 1998. The S-layer gene of Lactobacillus helveticus CNRZ 892: Cloning, sequence and heterologous expression. Microbiology 144: 719-726 https://doi.org/10.1099/00221287-144-3-719
  8. Chen, X., J. Xu, J. Shuai, J. Chen, Z. Zhang, and W. Fang. 2007. The S-layer proteins of Lactobacillus crispatus strain ZJ001 is responsible for competitive exclusion against Escherichia coli O157:H7 and Salmonella Typhimurium. Int. J. Food Microbiol. 115: 307-312 https://doi.org/10.1016/j.ijfoodmicro.2006.11.007
  9. Frece, J., B. Kos, I. K. Svetec, Z. Zgaga, V. Mr$\check{s}$a, and J. $\check{S}$u$\check{s}$koviae. 2005. Importance of S-layer proteins in probiotic activity of Lactobacillus acidophilus M92. J. Appl. Microbiol. 98: 285-292 https://doi.org/10.1111/j.1365-2672.2004.02473.x
  10. Hagen, K. E., L. L. Guan, G. W. Tannock, D. R. Korver, and G. E. Allison. 2005. Detection, characterization, and in vitro expression of genes encoding S-proteins in Lactobacillus gallinarum strains isolated from chicken crops. Appl. Environ. Microbiol. 71: 6633-6643 https://doi.org/10.1128/AEM.71.11.6633-6643.2005
  11. Hyn$\ddot{o}$nen, U., Benita Westerlund-Wikstr$\ddot{o}$m, Airi Palva, and Timo K. Korhonen. 2002. Identification by flagellum display of an epithelial cell- and fibronectin-binding function in the SlpA surface protein of Lactobacillus brevis. J. Bacteriol. 184:3360-3367 https://doi.org/10.1128/JB.184.12.3360-3367.2002
  12. Jakava-viljanen, M., S. Avall-Jaaskelainen, P. Messner, U. B. Sleytr, and A. Palva. 2002. Isolation of three new surface layer protein genes (slp) from Lactobacillus brevis ATCC 14869 and characterization of the change in their expression under aerated and anaerobic conditions. J. Bacteriol. 184: 6786-6795 https://doi.org/10.1128/JB.184.24.6786-6795.2002
  13. Masuda, K. 1992. Heterogeneity of S-layer proteins of Lactobacillus acidophilus strains. Microbiol. Immunol. 36: 297-301
  14. S$\acute{a}$ra, M. and U. B. Sleytr. 2000. S-layer proteins. J. Bacteriol. 182: 859-868 https://doi.org/10.1128/JB.182.4.859-868.2000
  15. Schneitz, C., L. Nuotio, and K. Lounatma. 1993. Adhesion of Lactobacillus acidophilus to avian intestinal epithelial cells mediated by the crystalline bacterial cell surface layer (S-layer). J. Appl. Bacteriol. 74: 290-294 https://doi.org/10.1111/j.1365-2672.1993.tb03028.x
  16. Sillanpaa, J., B. Martínez, J. Antikainen, T. Toba, N. Kalkkinen, S. Tankka, et al. 2000. Characterization of the collagen-binding S-layer protein CbsA of Lactobacillus crispatus. J. Bacteriol. 182: 6446-6450
  17. Smit, E., F. Oling, R. Demel, B. Martinez, and P. H. Pouwels. 2001. The S-layer proteins of Lactobacillus acidophilus ATCC 4356: Identification and characterisation of domains responsible for S-protein assembly and cell wall binding. J. Mol. Biol. 305:245-257 https://doi.org/10.1006/jmbi.2000.4258
  18. Toba, T., R. Virkola, B. Westerlund, Y. Bjorkman, J. Sillanpaa, T. Vartio, N. Kalkkinen, and T. K. Korhonen. 1995. A collagenbinding S-layer protein in Lactobacillus crispatus. Appl. Environ. Microbiol. 61: 2467-2471
  19. Vidgren, G., I. Palva, R. Pakkanen, K. Lounatmaa, and A. Palva. 1992. S-layer protein gene of Lactobacillus brevis:Cloning by polymerase chain reaction and determination of the nucleotide and sequence. J. Bacteriol. 174: 7419-7427

Cited by

  1. LC-MS/MS Analysis of Surface Layer Proteins as a Useful Method for the Identification of Lactobacilli from the Lactobacillus acidophilus Group vol.21, pp.4, 2009, https://doi.org/10.4014/jmb.1009.09036
  2. Lactobacillus surface layer proteins: structure, function and applications vol.97, pp.12, 2009, https://doi.org/10.1007/s00253-013-4962-2
  3. Surface display on lactic acid bacteria without genetic modification: strategies and applications vol.100, pp.22, 2009, https://doi.org/10.1007/s00253-016-7842-8
  4. Comparative analysis of immunological properties of S-layer proteins isolated from Lactobacillus strains vol.165, pp.2, 2009, https://doi.org/10.1099/mic.0.000766