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The flagellar protein FliL is essential for swimming in Rhodobacter sphaeroides.


ABSTRACT: In this work we characterize the function of the flagellar protein FliL in Rhodobacter sphaeroides. Our results show that FliL is essential for motility in this bacterium and that in its absence flagellar rotation is highly impaired. A green fluorescent protein (GFP)-FliL fusion forms polar and lateral fluorescent foci that show different spatial dynamics. The presence of these foci is dependent on the expression of the flagellar genes controlled by the master regulator FleQ, suggesting that additional components of the flagellar regulon are required for the proper localization of GFP-FliL. Eight independent pseudorevertants were isolated from the fliL mutant strain. In each of these strains a single nucleotide change in motB was identified. The eight mutations affected only three residues located on the periplasmic side of MotB. Swimming of the suppressor mutants was not affected by the presence of the wild-type fliL allele. Pulldown and yeast two-hybrid assays showed that that the periplasmic domain of FliL is able to interact with itself but not with the periplasmic domain of MotB. From these results we propose that FliL could participate in the coupling of MotB with the flagellar rotor in an indirect fashion.

SUBMITTER: Suaste-Olmos F 

PROVIDER: S-EPMC2981197 | biostudies-literature | 2010 Dec

REPOSITORIES: biostudies-literature

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The flagellar protein FliL is essential for swimming in Rhodobacter sphaeroides.

Suaste-Olmos Fernando F   Domenzain Clelia C   Mireles-Rodríguez José Cruz JC   Poggio Sebastian S   Osorio Aurora A   Dreyfus Georges G   Camarena Laura L  

Journal of bacteriology 20101001 23


In this work we characterize the function of the flagellar protein FliL in Rhodobacter sphaeroides. Our results show that FliL is essential for motility in this bacterium and that in its absence flagellar rotation is highly impaired. A green fluorescent protein (GFP)-FliL fusion forms polar and lateral fluorescent foci that show different spatial dynamics. The presence of these foci is dependent on the expression of the flagellar genes controlled by the master regulator FleQ, suggesting that add  ...[more]

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