Cell motility and biofilm formation in Bacillus subtilis are affected by the ribosomal proteins, S11 and S21

Author:

Takada Hiraku1,Morita Masato1,Shiwa Yuh2,Sugimoto Ryoma1,Suzuki Shota3,Kawamura Fujio13,Yoshikawa Hirofumi12

Affiliation:

1. Department of Bioscience, Tokyo University of Agriculture, Tokyo, Japan

2. Genome Research Center, NODAI Research Institute, Tokyo University of Agriculture, Tokyo, Japan

3. Department of Life Science and Research Center for Life Science, College of Science, Rikkyo University, Tokyo, Japan

Abstract

Abstract Bacillus subtilis differentiates into various cellular states in response to environmental changes. It exists in two states during the exponential growth phase: motile cells and connected chains of sessile cells. Here, we identified new regulators of cell motility and chaining, the ribosomal proteins S21 (rpsU) and S11 (rpsK). Their mutants showed impaired cell motility (observed in a laboratory strain) and robust biofilm formation (observed in an undomesticated strain). The two major operons for biofilm formation, tapA-sipW-tasA and epsA-O, were strongly expressed in the rpsU mutant, whereas the flagellin-encoding hag gene and other SigD-dependent motility regulons were not. Genetic analysis revealed that the mutation of remA, the transcriptional activator of the eps operon, is epistatic to that of rpsU, whereas the mutation of antagonistic regulators of SinR is not. Our studies demonstrate that S11 and S21 participate in the regulation of bistability via the RemA/RemB pathway.

Publisher

Oxford University Press (OUP)

Subject

Organic Chemistry,Molecular Biology,Applied Microbiology and Biotechnology,General Medicine,Biochemistry,Analytical Chemistry,Biotechnology

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