Two enhancer binding proteins activate σ<sup>54</sup>-dependent transcription of a quorum regulatory RNA in a bacterial symbiont.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 37145113.
- Also identified by DOI 10.7554/eLife.78544 and PMC identifier 10162802.
- Licence recorded as CC BY.
- The licence permits redistribution, so the abstract is shown in full and the full text is available from the publisher.
Abstract
To colonize a host, bacteria depend on an ensemble of signaling systems to convert information about the various environments encountered within the host into specific cellular activities. How these signaling systems coordinate transitions between cellular states in vivo remains poorly understood. To address this knowledge gap, we investigated how the bacterial symbiont <i>Vibrio fischeri</i> initially colonizes the light organ of the Hawaiian bobtail squid <i>Euprymna scolopes</i>. Previous work has shown that the small RNA Qrr1, which is a regulatory component of the quorum-sensing system in <i>V. fischeri</i>, promotes host colonization. Here, we report that transcriptional activation of Qrr1 is inhibited by the sensor kinase BinK, which suppresses cellular aggregation by <i>V. fischeri</i> prior to light organ entry. We show that Qrr1 expression depends on the alternative sigma factor σ<sup>54</sup> and the transcription factors LuxO and SypG, which function similar to an OR logic gate, thereby ensuring Qrr1 is expressed during colonization. Finally, we provide evidence that this regulatory mechanism is widespread throughout the <i>Vibrionaceae</i> family. Together, our work reveals how coordination between the signaling pathways underlying aggregation and quorum-sensing promotes host colonization, which provides insight into how integration among signaling systems facilitates complex processes in bacteria.
Medical subject headings
- Symbiosis
- DNA-Binding Proteins