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Imaging InlC Secretion to Investigate Cellular Infection by the Bacterial Pathogen Listeria monocytogenes
Published on: September 19, 2013
RNAi screen reveals host cell kinases specifically involved in Listeria monocytogenes spread from cell to cell
Ryan Chong1, Raynal Squires, Rachel Swiss
1Section of Microbial Pathogenesis, Boyer Center for Molecular Medicine, Yale University School of Medicine, New Haven, Connecticut, United States of America.
Abstract:
Intracellular bacterial pathogens, such as Listeria monocytogenes and Rickettsia conorii display actin-based motility in the cytosol of infected cells and spread from cell to cell through the formation of membrane protrusions at the cell cortex. Whereas the mechanisms supporting cytosolic actin-based motility are fairly well understood, it is unclear whether specific host factors may be required for supporting the formation and resolution of membrane protrusions. To address this gap in knowledge, we have developed high-throughput fluorescence microscopy and computer-assisted image analysis procedures to quantify pathogen spread in human epithelial cells. We used the approach to screen a siRNA library covering the human kinome and identified 7 candidate kinases whose depletion led to severe spreading defects in cells infected with L. monocytogenes. We conducted systematic validation procedures with redundant silencing reagents and confirmed the involvement of the serine/threonine kinases, CSNK1A1 and CSNK2B. We conducted secondary assays showing that, in contrast with the situation observed in CSNK2B-depleted cells, L. monocytogenes formed wild-type cytosolic tails and displayed wild-type actin-based motility in the cytosol of CSNK1A1-depleted cells. Furthermore, we developed a protrusion formation assay and showed that the spreading defect observed in CSNK1A1-depleted cells correlated with the formation of protrusion that did not resolve into double-membrane vacuoles. Moreover, we developed sending and receiving cell-specific RNAi procedures and showed that CSNK1A was required in the sending cells, but was dispensable in the receiving cells, for protrusion resolution. Finally, we showed that the observed defects were specific to Listeria monocytogenes, as Rickettsia conorii displayed wild-type cell-to-cell spread in CSNK1A1- and CSNK2B-depleted cells. We conclude that, in addition to the specific host factors supporting cytosolic actin-based motility, such as CSNK2B, Listeria monocytogenes requires specific host factors, such as CSNK1A1 in order to form productive membrane protrusions and spread from cell to cell.
Insights
Listeria monocytogenes cell-to-cell spread requires host kinase CSNK1A1 for membrane protrusion resolution, distinct from factors aiding actin-based motility.
Area of Science:
- Cell biology
- Microbiology
- Molecular biology
Background:
- Intracellular bacteria like Listeria monocytogenes use actin-based motility for cell-to-cell spread via membrane protrusions.
- Host factors for protrusion formation and resolution remain largely unknown.
- Existing knowledge focuses on actin-based motility mechanisms within the cytosol.
Purpose of the Study:
- To identify host factors regulating membrane protrusion formation and resolution during bacterial cell-to-cell spread.
- To investigate the specific roles of kinases in Listeria monocytogenes dissemination.
- To differentiate host factor requirements for cytosolic motility versus cell-to-cell spread.
Main Methods:
- High-throughput fluorescence microscopy and computational image analysis to quantify bacterial spread.
- siRNA screening of the human kinome in infected epithelial cells.
- Secondary assays including protrusion formation assays and cell-specific RNAi.
Main Results:
- Kinase depletion screen identified 7 candidate kinases affecting L. monocytogenes spread.
- CSNK1A1 and CSNK2B (serine/threonine kinases) were validated as crucial for spread.
- CSNK1A1 is required in sending cells for protrusion resolution, while CSNK2B supports cytosolic motility.
- Rickettsia conorii spread was unaffected by CSNK1A1 or CSNK2B depletion.
Conclusions:
- L. monocytogenes requires CSNK1A1 for productive membrane protrusion resolution during cell-to-cell spread.
- CSNK1A1 function in spread is distinct from CSNK2B's role in cytosolic actin-based motility.
- Host cell factors specifically regulate the cell-to-cell spread mechanism, independent of intracellular motility machinery.
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