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August 28, 2017Proceedings of the National Academy of Sciences25 citationsOpen Access

Shear force-based genetic screen reveals negative regulators of cell adhesion and protrusive activity

TLThomas J. LampertNKNadine KampradMEMarc Edwards

Structured PICO

P
Population
Restriction enzyme-mediated integration mutagenized cells
I
Intervention
Shear force-based genetic screen for overly adhesive mutants
O
Outcome
Identification of negative regulators of cell adhesion and protrusive activitysurrogate

A shear force-based genetic screen successfully identified novel negative regulators of cell adhesion and migration, revealing diverse cellular networks involved in these processes.

Abstract

cells lacking the tumor suppressor PTEN show strongly impaired migratory activity and adhere strongly to their substrates. We reasoned that other regulators of migration could be obtained through a screen for overly adhesive mutants. A screen of restriction enzyme-mediated integration mutagenized cells yielded numerous mutants with the desired phenotypes, and the insertion sites in 18 of the strains were mapped. These regulators of adhesion and motility mutants have increased adhesion and decreased motility. Characterization of seven strains demonstrated decreased directed migration, flatness, increased filamentous actin-based protrusions, and increased signal transduction network activity. Many of the genes share homology to human genes and demonstrate the diverse array of cellular networks that function in adhesion and migration.

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Cite This Study

Lampert et al. (2017) studied this question.

synapsesocial.com/papers/6a0cd28159b087b0dc625dadhttps://doi.org/10.1073/pnas.1616600114
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