SpoIIE Is Necessary for Asymmetric Division, Sporulation, and Expression of σ F , σ E , and σ G but Does Not Control Solvent Production in Clostridium acetobutylicum ATCC 824

Author:

Bi Changhao1,Jones Shawn W.12,Hess Daniel R.3,Tracy Bryan P.124,Papoutsakis Eleftherios T.1

Affiliation:

1. Molecular Biotechnology Laboratory, Department of Chemical Engineering, and Delaware Biotechnology Institute, University of Delaware, Newark, Delaware 19711

2. Department of Chemical and Biological Engineering, Northwestern University, Evanston, Illinois 60208

3. Department of Chemistry and Biochemistry and Delaware Biotechnology Institute, University of Delaware, Newark, Delaware 19711

4. Elcriton Inc., 15 Innovation Way, Room 288, Newark, Delaware 19711

Abstract

ABSTRACT In order to better characterize the initial stages of sporulation past Spo0A activation and the associated solventogenesis in the important industrial and model organism Clostridium acetobutylicum , the spoIIE gene was successfully disrupted and its expression was silenced. By silencing spoIIE , sporulation was blocked prior to asymmetric division, and no mature spores or any distinguishable morphogenetic changes developed. Upon plasmid-based complementation of spoIIE , sporulation was restored, although the number of spores formed was below that of the plasmid control strain. To investigate the impact of silencing spoIIE on the regulation of sporulation, transcript levels of sigF , sigE , and sigG were examined by semiquantitative reverse transcription-PCR, and the corresponding σ F , σ E , and σ G protein levels were determined by Western analysis. Expression of sigF was significantly reduced in the inactivation strain, and this resulted in very low σ F protein levels. Expression of sigE was barely detected, and no sigG transcript was detected at all; consequently, no σ E or σ G proteins were detected. These data suggest an autostimulatory role for σ F in C. acetobutylicum , in contrast to the model organism for endospore formation, Bacillus subtilis , and confirm that high-level expression of σ F is required for expression of σ E and σ G . Unlike the σ F and σ E inactivation strains, the SpoIIE inactivation strain did not exhibit inoculum-dependent solvent formation and produced good levels of solvents from both exponential- and stationary-phase inocula. Thus, we concluded that SpoIIE does not control solvent formation.

Publisher

American Society for Microbiology

Subject

Molecular Biology,Microbiology

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