A Toxin–Antitoxin System Promotes the Maintenance of an Integrative Conjugative Element
Токсин-антитоксиновая система способствует поддержанию интегративного конъюгативного элемента
2009-03-26
SCID: 54.1/37pww55t
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SXT elementVibrio choleraeconjugative transferintegrative conjugative elementtoxin-antitoxin system
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Abstract (AI)
SXT is an integrative and conjugative element (ICE) that confers resistance to multiple antibiotics upon many clinical isolates of Vibrio cholerae. In most cells, this approximately 100 Kb element is integrated into the host genome in a site-specific fashion; however, SXT can excise to form an extrachromosomal circle that is thought to be the substrate for conjugative transfer. Daughter cells lacking SXT can theoretically arise if cell division occurs prior to the element's reintegration. Even though approximately 2% of SXT-bearing cells contain the excised form of the ICE, cells that have lost the element have not been detected. Here, using a positive selection-based system, SXT loss was detected rarely at a frequency of approximately 1 x 10(-7). As expected, excision appears necessary for loss, and factors influencing the frequency of excision altered the frequency of SXT loss. We screened the entire 100 kb SXT genome and identified two genes within SXT, now designated mosA and mosT (for maintenance of SXT Antitoxin and Toxin), that promote SXT stability. These two genes, which lack similarity to any previously characterized genes, encode a novel toxin-antitoxin pair; expression of mosT greatly impaired cell growth and mosA expression ameliorated MosT toxicity. Factors that promote SXT excision upregulate mosAT expression. Thus, when the element is extrachromosomal and vulnerable to loss, SXT activates a TA module to minimize the formation of SXT-free cells.
Key Findings
1
A genome-wide screen identified mosA and mosT as previously uncharacterized SXT genes that promote maintenance of the integrative conjugative element.
2
MosA and MosT form a novel toxin–antitoxin pair: MosT strongly impairs cell growth, while MosA counteracts its toxicity.
3
SXT excision is necessary for element loss, and factors affecting excision frequency correspondingly alter SXT-loss frequency.
4
SXT loss from Vibrio cholerae occurs rarely, at approximately 1 × 10^-7, despite excision in about 2% of SXT-bearing cells.
5
Signals that promote SXT excision upregulate mosAT expression, activating antitoxin–toxin-mediated stabilization when extrachromosomal SXT is vulnerable to loss.
Research Object
The SXT integrative and conjugative element (ICE) in Vibrio cholerae
Research Subject
The MosA–MosT toxin–antitoxin system and its role in maintaining SXT stability and preventing element loss during excision
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2009-03-26
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