Previous Article | Next Article 
Journal of Bacteriology, March 2002, p. 1244-1252, Vol. 184, No. 5
0021-9193/02/$04.00+0 DOI: 10.1128/JB.184.5.1244-1252.2002
Copyright © 2002, American Society for Microbiology. All Rights Reserved.
Shigella Spa32 Is an Essential Secretory Protein for Functional Type III Secretion Machinery and Uniformity of Its Needle Length
***
Koichi Tamano,1 Eisaku Katayama,2,3 Takahito Toyotome,1 and Chihiro Sasakawa1*
Division of Bacterial Infection, Department of Microbiology and Immunology,1
Division of Biomolecular Imaging, Department of Basic Medical Sciences, Institute of Medical Science, University of Tokyo, Minato-ku, Tokyo 108-8639 ,2
PRESTO, Japan Science and Technology Corporation, Kawaguchi, Saitama 332-0012, Japan3
Received 4 October 2001/
Accepted 20 November 2001
The Shigella type III secretion machinery is responsible for delivering to host cells the set of effectors required for invasion. The type III secretion complex comprises a needle composed of MxiH and MxiI and a basal body made up of MxiD, MxiG, and MxiJ. In S. flexneri, the needle length has a narrow range, with a mean of approximately 45 nm, suggesting that it is strictly regulated. Here we show that Spa32, encoded by one of the spa genes, is an essential protein translocated via the type III secretion system and is involved in the control of needle length as well as type III secretion activity. When the spa32 gene was mutated, the type III secretion complexes possessed needles of various lengths, ranging from 40 to 1,150 nm. Upon introduction of a cloned spa32 into the spa32 mutant, the bacteria produced needles of wild-type length. The spa32 mutant overexpressing MxiH produced extremely long (>5 µm) needles. Spa32 was secreted into the medium via the type III secretion system, but secretion did not depend on activation of the system. The spa32 mutant and the mutant overexpressing MxiH did not secrete effectors such as Ipa proteins into the medium or invade HeLa cells. Upon introduction of Salmonella invJ, encoding InvJ, which has 15.4% amino acid identity with Spa32, into the spa32 mutant, the bacteria produced type III needles of wild-type length and efficiently entered HeLa cells. These findings suggest that Spa32 is an essential secreted protein for a functional type III secretion system in Shigella spp. and is involved in the control of needle length. Furthermore, its function is interchangeable with that of Salmonella InvJ.
* Corresponding author. Mailing address: Division of Bacterial Infection, Department of Microbiology and Immunology, Institute of Medical Science, University of Tokyo, 4-6-1, Shirokanedai, Minato-ku, Tokyo 108-8639, Japan. Phone: 81-3-5449-5252. Fax: 81-3-5449-5405. E-mail:
sasakawa{at}ims.u-tokyo.ac.jp.
Journal of Bacteriology, March 2002, p. 1244-1252, Vol. 184, No. 5
0021-9193/02/$04.00+0 DOI: 10.1128/JB.184.5.1244-1252.2002
Copyright © 2002, American Society for Microbiology. All Rights Reserved.
This article has been cited by other articles:
-
Wood, S. E., Jin, J., Lloyd, S. A.
(2008). YscP and YscU Switch the Substrate Specificity of the Yersinia Type III Secretion System by Regulating Export of the Inner Rod Protein YscI. J. Bacteriol.
190: 4252-4262
[Abstract]
[Full Text]
-
Betts, H. J., Twiggs, L. E., Sal, M. S., Wyrick, P. B., Fields, K. A.
(2008). Bioinformatic and Biochemical Evidence for the Identification of the Type III Secretion System Needle Protein of Chlamydia trachomatis. J. Bacteriol.
190: 1680-1690
[Abstract]
[Full Text]
-
Schroeder, G. N., Hilbi, H.
(2008). Molecular Pathogenesis of Shigella spp.: Controlling Host Cell Signaling, Invasion, and Death by Type III Secretion. Clin. Microbiol. Rev.
21: 134-156
[Abstract]
[Full Text]
-
Davis, A. J., Mecsas, J.
(2007). Mutations in the Yersinia pseudotuberculosis Type III Secretion System Needle Protein, YscF, That Specifically Abrogate Effector Translocation into Host Cells. J. Bacteriol.
189: 83-97
[Abstract]
[Full Text]
-
Morita-Ishihara, T., Ogawa, M., Sagara, H., Yoshida, M., Katayama, E., Sasakawa, C.
(2006). Shigella Spa33 Is an Essential C-ring Component of Type III Secretion Machinery. J. Biol. Chem.
281: 599-607
[Abstract]
[Full Text]
-
Kenjale, R., Wilson, J., Zenk, S. F., Saurya, S., Picking, W. L., Picking, W. D., Blocker, A.
(2005). The Needle Component of the Type III Secreton of Shigella Regulates the Activity of the Secretion Apparatus. J. Biol. Chem.
280: 42929-42937
[Abstract]
[Full Text]
-
Ferris, H. U., Furukawa, Y., Minamino, T., Kroetz, M. B., Kihara, M., Namba, K., Macnab, R. M.
(2005). FlhB Regulates Ordered Export of Flagellar Components via Autocleavage Mechanism. J. Biol. Chem.
280: 41236-41242
[Abstract]
[Full Text]
-
Garmendia, J., Frankel, G., Crepin, V. F.
(2005). Enteropathogenic and Enterohemorrhagic Escherichia coli Infections: Translocation, Translocation, Translocation. Infect. Immun.
73: 2573-2585
[Full Text]
-
Ghosh, P.
(2004). Process of Protein Transport by the Type III Secretion System. Microbiol. Mol. Biol. Rev.
68: 771-795
[Abstract]
[Full Text]
-
Ren, C.-P., Chaudhuri, R. R., Fivian, A., Bailey, C. M., Antonio, M., Barnes, W. M., Pallen, M. J.
(2004). The ETT2 Gene Cluster, Encoding a Second Type III Secretion System from Escherichia coli, Is Present in the Majority of Strains but Has Undergone Widespread Mutational Attrition. J. Bacteriol.
186: 3547-3560
[Abstract]
[Full Text]
-
Journet, L., Agrain, C., Broz, P., Cornelis, G. R.
(2003). The Needle Length of Bacterial Injectisomes Is Determined by a Molecular Ruler. Science
302: 1757-1760
[Abstract]
[Full Text]
-
Lan, R., Stevenson, G., Reeves, P. R.
(2003). Comparison of Two Major Forms of the Shigella Virulence Plasmid pINV: Positive Selection Is a Major Force Driving the Divergence. Infect. Immun.
71: 6298-6306
[Abstract]
[Full Text]
-
Edqvist, P. J., Olsson, J., Lavander, M., Sundberg, L., Forsberg, A., Wolf-Watz, H., Lloyd, S. A.
(2003). YscP and YscU Regulate Substrate Specificity of the Yersinia Type III Secretion System. J. Bacteriol.
185: 2259-2266
[Abstract]
[Full Text]