Protein Domain : IPR004797

Type:  Family Name:  Competence protein ComEC/Rec2
Description:  Competence is the ability of a cell to take up exogenous DNA from its environment, resulting in transformation. It is widespread among bacteria and is probably an important mechanism for the horizontal transfer of genes. DNA usually becomes available by the death and lysis of other cells. Competent bacteria use components of extracellular filaments called type 4 pili to create pores in their membranes and pull DNA through the pores into the cytoplasm. This process, including the development of competence and the expression of the uptake machinery, is regulated in response to cell-cell signalling and/or nutritional conditions [].The development of genetic competence in Bacillus subtilisis a highly regulated adaptive response to stationary-phase stress. For competence to develop, the transcriptional regulator, ComK, must be activated. ComK is required for the expression of genes encoding proteins that function in DNA uptake. In log-phase cultures, ComK is inactive in a complex with MecA and ClpC. The comS gene is induced in response to high culture cell density and nutritional stress and its product functions to release active ComK from the complex. ComK then stimulates the transcription initiation of its own gene as well as that of the late competence operons [].This is the DNA internalisation-related competence protein ComEC/Rec2 family. Apparent orthologs are found in 5 species so far (Haemophilus influenzae, Escherichia coli, Bacillus subtilis, Neisseria gonorrhoeae, Streptococcus pneumoniae), of which all but E. coli are model systems for the study of competence for natural transformation. This protein is a predicted multiple membrane-spanning protein likely to be involved in DNA internalisation. Short Name:  Competence_ComEC/Rec2

0 Child Features

2 Contains

DB identifier Type Name
IPR001279 Domain Metallo-beta-lactamase
IPR004477 Domain ComEC/Rec2-related protein

1 Cross References

Identifier
TIGR00361

0 Found In

2 GO Annotations

GO Term Gene Name
GO:0030420 IPR004797
GO:0016021 IPR004797

2 Ontology Annotations

GO Term Gene Name
GO:0030420 IPR004797
GO:0016021 IPR004797

0 Parent Features

0 Proteins

2 Publications

First Author Title Year Journal Volume Pages PubMed ID
            8901420
            10361283