Transposon mutagenesis identifies genes associated with Mycoplasma pneumoniae gliding motility

被引:44
作者
Hasselbring, Benjamin A. [1 ]
Page, Clinton A. [1 ]
Sheppard, Edward S. [1 ]
Krause, Duncan C. [1 ]
机构
[1] Univ Georgia, Dept Microbiol, Athens, GA 30602 USA
关键词
D O I
10.1128/JB.00698-06
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
The wall-less prokaryote Mycoplasma pneumoniae, a common cause of chronic respiratory tract infections in humans, is considered to be among the smallest and simplest known cells capable of self-replication, yet it has a complex architecture with a novel cytoskeleton and a differentiated terminal organelle that function in adherence, cell division, and gliding motility. Recent findings have begun to elucidate the hierarchy of protein interactions required for terminal organelle assembly, but the engineering of its gliding machinery is largely unknown. In the current study, we assessed gliding in cytadherence mutants lacking terminal organelle proteins B, C, PI, and HMWI. Furthermore, we screened over 3,500 M. pneumoniae transposon mutants individually to identify genes associated with gliding but dispensable for cytadherence. Forty-seven transformants having motility defects were characterized further, with transposon insertions mapping to 32 different open reading frames widely distributed throughout the M. pneumoniae genome; 30 of these were dispensable for cytadherence. We confirmed the clonality of selected transformants by Southern blot hybridization and PCR analysis and characterized satellite growth and gliding by microcinematography. For some mutants, satellite growth was absent or developed more slowly than that of the wild type. Others produced lawn-like growth largely devoid of typical microcolonies, while still others had a dull, asymmetrical leading edge or a filamentous appearance of colony spreading. All mutants exhibited substantially reduced gliding velocities and/or frequencies. These findings significantly expand our understanding of the complexity of M. pneumoniae gliding and the identity of possible elements of the gliding machinery, providing a foundation for a detailed analysis of the engineering and regulation of motility in this unusual prokaryote.
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页码:6335 / 6345
页数:11
相关论文
共 54 条
[1]  
BASEMAN JB, 1987, ISRAEL J MED SCI, V23, P474
[2]   ULTRASTRUCTURAL FEATURES OF MYCOPLASMA-PNEUMONIAE [J].
BIBERFELD, G ;
BIBERFELD, P .
JOURNAL OF BACTERIOLOGY, 1970, 102 (03) :855-+
[3]   MOTILITY AND MULTIPLICATION OF MYCOPLASMA PNEUMONIAE - A PHASE CONTRAST STUDY [J].
BREDT, W .
PATHOLOGIA ET MICROBIOLOGIA, 1968, 32 (06) :321-&
[4]  
Bredt W, 1979, MYCOPLASMAS, V1, P141
[5]   NUCLEOTIDE-SEQUENCE ANALYSIS OF IS256 FROM THE STAPHYLOCOCCUS-AUREUS GENTAMICIN-TOBRAMYCIN-KANAMYCIN-RESISTANCE TRANSPOSON TN4001 [J].
BYRNE, ME ;
ROUCH, DA ;
SKURRAY, RA .
GENE, 1989, 81 (02) :361-367
[6]   GROWTH ON ARTIFICIAL MEDIUM OF AN AGENT ASSOCIATED WITH ATYPICAL PNEUMONIA AND ITS IDENTIFICATION AS A PPLO [J].
CHANOCK, RM ;
HAYFLICK, L ;
BARILE, MF .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1962, 48 (01) :41-&
[7]  
COLLIER AM, 1971, P SOC EXP BIOL MED, V136, P569, DOI 10.3181/00379727-136-35313
[8]   Re-annotating the Mycoplasma pneumoniae genome sequence:: adding value, function and reading frames [J].
Dandekar, T ;
Huynen, M ;
Regula, JT ;
Ueberle, B ;
Zimmermann, CU ;
Andrade, MA ;
Doerks, T ;
Sánchez-Pulido, L ;
Snel, B ;
Suyama, M ;
Yuan, YP ;
Herrmann, R ;
Bork, P .
NUCLEIC ACIDS RESEARCH, 2000, 28 (17) :3278-3288
[9]   PHOSPHORYLATION OF CYTADHERENCE-ACCESSORY PROTEINS IN MYCOPLASMA-PNEUMONIAE [J].
DIRKSEN, LB ;
KREBES, KA ;
KRAUSE, DC .
JOURNAL OF BACTERIOLOGY, 1994, 176 (24) :7499-7505
[10]   Identification and complementation of frameshift mutations associated with loss of cytadherence in Mycoplasma pneumoniae [J].
Fisseha, M ;
Göhlmann, HWH ;
Herrmann, R ;
Krause, DC .
JOURNAL OF BACTERIOLOGY, 1999, 181 (14) :4404-4410