Previous Article | Next Article ![]()
J. Bacteriol., 04 1995, 1662-1669, Vol 177, No. 7
CM Stephens, G Zweiger and L Shapiro
The expression of the Caulobacter ccrM gene and the activity of its
product, the M.Ccr II DNA methyltransferase, are limited to a discrete
portion of the cell cycle (G. Zweiger, G. Marczynski, and L. Shapiro, J.
Mol. Biol. 235:472-485, 1994). Temporal control of DNA methylation has been
shown to be critical for normal development in the dimorphic Caulobacter
life cycle. To understand the mechanism by which ccrM expression is
regulated during the cell cycle, we have identified and characterized the
ccrM promoter region. We have found that it belongs to an unusual promoter
family used by several Caulobacter class II flagellar genes. The expression
of these class II genes initiates assembly of the flagellum just prior to
activation of the ccrM promoter in the predivisional cell. Mutational
analysis of two M.Ccr II methylation sites located 3' to the ccrM promoter
suggests that methylation might influence the temporally controlled
inactivation of ccrM transcription. An additional parallel between the ccrM
and class II flagellar promoters is that their transcription responds to a
cell cycle DNA replication checkpoint. We propose that a common regulatory
system coordinates the expression of functionally diverse genes during the
Caulobacter cell cycle.
Copyright © 1995, American Society for Microbiology
Coordinate cell cycle control of a Caulobacter DNA methyltransferase and the flagellar genetic hierarchy
Department of Developmental Biology, Beckman Center for Molecular and Genetic Medicine, Stanford University, California 94305-5427.
This article has been cited by other articles:
| Appl. Environ. Microbiol. | Infect. Immun. | Eukaryot. Cell |
|---|---|---|
| Mol. Cell. Biol. | J. Virol. | Microbiol. Mol. Biol. Rev. |
| ALL ASM JOURNALS |