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Updated: Nov 7, 2025

Conjugative Mating Assays for Sequence-specific Analysis of Transfer Proteins Involved in Bacterial Conjugation
Published on: January 4, 2017
Molecular analysis of the replication functions of the bifidobacterial conjugative megaplasmid pMP7017
Rebecca L Dineen1,2, Christophe Penno3, Philip Kelleher1,2
1APC Microbiome Ireland, University College Cork, Western Road, Cork, Ireland.
Abstract:
pMP7017 is a conjugative megaplasmid isolated from the gut commensal Bifidobacterium breve JCM7017 and was shown to encode two putative replicases, designated here as RepA and RepB. In the current work, RepB was identified as the pMP7017 replicative initiator, as the repB gene, and its surrounding region was shown to be sufficient to allow autonomous replication in two bifidobacterial species, B. breve and Bifidobacterium longum subsp. longum. RepB was shown to bind to repeat sequence downstream of its coding sequence and this region was determined to be essential for efficient replication. Based on our results, we hypothesize that pMP7017 is an iteron-regulated plasmid (IRP) under strict auto-regulatory control. Recombinantly produced and purified RepB was determined to exist as a dimer in solution, differing from replicases of other IRPs, which exist as a mix of dimers and monomers. Furthermore, a stable low-copy Bifidobacterium-E. coli shuttle vector, pRD1.3, was created which can be employed for cloning and expression of large genes, as was demonstrated by the cloning and heterologous expression of the 5.1 kb apuB gene encoding the extracellular amylopullulanase from B. breve UCC2003 into B. longum subsp. longum NCIMB8809.
Insights
The replicative initiator RepB from the Bifidobacterium plasmid pMP7017 was identified. This study also developed a novel shuttle vector for Bifidobacterium and E. coli, enabling large gene cloning and expression.
Area of Science:
- Microbiology
- Molecular Biology
- Genetics
Background:
- pMP7017 is a conjugative megaplasmid from Bifidobacterium breve.
- It encodes two putative replicases, RepA and RepB.
Purpose of the Study:
- Identify the pMP7017 replicative initiator.
- Characterize the function of RepB.
- Develop a Bifidobacterium-E. coli shuttle vector.
Main Methods:
- Autonomous replication assays in Bifidobacterium species.
- DNA binding studies of RepB.
- Recombinant protein production and purification.
- Construction and testing of a shuttle vector.
Main Results:
- RepB is the replicative initiator of pMP7017.
- The repB gene and its downstream region are sufficient for autonomous replication.
- RepB binds to a downstream repeat sequence essential for replication.
- RepB exists as a dimer in solution.
- A stable low-copy Bifidobacterium-E. coli shuttle vector (pRD1.3) was created.
- The apuB gene was successfully cloned and expressed heterologously using pRD1.3.
Conclusions:
- pMP7017 is likely an auto-regulated iteron-regulated plasmid (IRP).
- RepB's dimeric state differentiates it from other IRP replicases.
- The pRD1.3 vector is suitable for cloning and expressing large genes in Bifidobacterium.
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