Domains controlling cell polarity and proliferation in the Drosophila tumor suppressor Scribble

J Zeitler, CP Hsu, H Dionne, D Bilder - The Journal of cell biology, 2004 - rupress.org
J Zeitler, CP Hsu, H Dionne, D Bilder
The Journal of cell biology, 2004rupress.org
Cell polarity and cell proliferation can be coupled in animal tissues, but how they are
coupled is not understood. In Drosophila imaginal discs, loss of the neoplastic tumor
suppressor gene scribble (scrib), which encodes a multidomain scaffolding protein, disrupts
epithelial organization and also causes unchecked proliferation. Using an allelic series of
mutations along with rescuing transgenes, we have identified domain requirements for
polarity, proliferation control, and other Scrib functions. The leucine-rich repeats (LRR) tether …
Cell polarity and cell proliferation can be coupled in animal tissues, but how they are coupled is not understood. In Drosophila imaginal discs, loss of the neoplastic tumor suppressor gene scribble (scrib), which encodes a multidomain scaffolding protein, disrupts epithelial organization and also causes unchecked proliferation. Using an allelic series of mutations along with rescuing transgenes, we have identified domain requirements for polarity, proliferation control, and other Scrib functions. The leucine-rich repeats (LRR) tether Scrib to the plasma membrane, are both necessary and sufficient to organize a polarized epithelial monolayer, and are required for all proliferation control. The PDZ domains, which recruit the LRR to the junctional complex, are dispensable for overall epithelial organization. PDZ domain absence leads to mild polarity defects accompanied by moderate overproliferation, but the PDZ domains alone are insufficient to provide any Scrib function in mutant discs. We suggest a model in which Scrib, via the activity of the LRR, governs proliferation primarily by regulating apicobasal polarity.
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