Abstract

Escherichia coli DNA adenine methyltransferase (EcoDam) methylates the N-6 position of the adenine in the sequence 5'-GATC-3' and plays vital roles in gene regulation, mismatch repair, and DNA replication. It remains unclear how the small number of critical GATC sites involved in the regulation of replication and gene expression are differentially methylated, whereas the approximately 20,000 GATCs important for mismatch repair and dispersed throughout the genome are extensively methylated. Our prior work, limited to the pap regulon, showed that methylation efficiency is controlled by sequences immediately flanking the GATC sites. We extend these studies to include GATC sites involved in diverse gene regulatory and DNA replication pathways as well as sites previously shown to undergo differential in vivo methylation but whose function remains to be assigned. EcoDam shows no change in affinity with variations in flanking sequences derived from these sources, but methylation kinetics varied 12-fold. A-tracts immediately adjacent to the GATC site contribute significantly to these differences in methylation kinetics. Interestingly, only when the poly(A) is located 5' of the GATC are the changes in methylation kinetics revealed. Preferential methylation is obscured when two GATC sites are positioned on the same DNA molecule, unless both sites are surrounded by large amounts of nonspecific DNA. Thus, facilitated diffusion and sequences immediately flanking target sites contribute to higher order specificity for EcoDam; we suggest that the diverse biological roles of the enzyme are in part regulated by these two factors, which may be important for other enzymes that sequence-specifically modify DNA.

Highlights

  • Ferase (EcoDam), do not participate in such a system

  • Most of these GATC sites are found in the 5Ј-noncoding region of various genes, indicating that they could be involved in gene regulation

  • The GATC sites located within the origin of replication and those differentially methylated in the E. coli genome are thought to be protected from methylation by the presence of a competing protein

Read more

Summary

Biological Implications of EcoDam Site Preference

GATC sites located proximal (GATCprox) and distal (GATCdist) to the papAB gene within the pap promoter [29, 30]. Our previous work on these regulatory GATCs within the pap operon showed a 23-fold decrease in methylation kinetics when compared with a site known to undergo rapid methylation [31]. This preference is enhanced when poorly and rapidly methylated sites are positioned on the same DNA molecule. Our results show that the flanking sequences immediately adjacent to the GATC are important for determining the efficiency of methylation for many of these GATC sites This effect is further dependent on the surrounding nonspecific DNA involving hundreds of flanking base pairs. The higher order specificity observed may contribute to the multiple levels of regulation controlling the various biological pathways in which EcoDam participates

EXPERIMENTAL PROCEDURES
Density changes with time were finally plotted in Sigma Plot
RESULTS
DISCUSSION
Full Text
Published version (Free)

Talk to us

Join us for a 30 min session where you can share your feedback and ask us any queries you have

Schedule a call