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Published on: March 29, 2024
Ras GAP-related and C-terminal domain-dependent localization and tumorigenic activities of IQGAP1 in melanoma cells
Michael Reimer1, Elisabeth Denby1, Silviya P Zustiak2
1Department of Pharmaceutical Sciences, Southern Illinois University Edwardsville, Edwardsville, Illinois, United States of America.
Abstract:
IQGAP1 interacts with a number of binding partners through a calponin homology domain (CHD), a WW motif, IQ repeats, a Ras GAP-related domain (GRD), and a conserved C-terminal (CT) domain. Among various biological and cellular functions, IQGAP1 is known to play a role in actin cytoskeleton dynamics during membrane ruffling and lamellipodium protrusion. In addition, phosphorylation near the CT domain is thought to control IQGAP1 activity through regulation of intramolecular interaction. In a previous study, we discovered that IQGAP1 preferentially localizes to retracting areas in B16F10 mouse melanoma cells, not areas of membrane ruffling and lamellipodium protrusion. Nothing is known of the domains needed for retraction localization and very little is known of IQGAP1 function in the actin cytoskeleton of melanoma cells. Thus, we examined localization of IQGAP1 mutants to retracting areas, and characterized knock down phenotypes on tissue culture plastic and physiologic-stiffness hydrogels. Localization of IQGAP1 mutants (S1441E/S1443D, S1441A/S1443A, ΔCHD, ΔGRD or ΔCT) to retracting and protruding cell edges were measured. In retracting areas there was a decrease in S1441A/S1443A, ΔGRD and ΔCT localization, a minor decrease in ΔCHD localization, and normal localization of the S1441E/S1443D mutant. In areas of cell protrusion just behind the lamellipodium leading edge, we surprisingly observed both ΔGRD and ΔCT localization, and increased number of microtubules. IQGAP1 knock down caused loss of cell polarity on laminin-coated glass, decreased proliferation on tissue culture polystyrene, and abnormal spheroid growth on laminin-coated hydrogels. We propose that the GRD and CT domains regulate IQGAP1 localization to retracting actin networks to promote a tumorigenic role in melanoma cells.
Insights
IQGAP1
Area of Science:
- Cell Biology
- Cancer Research
- Molecular Biology
Background:
- IQGAP1 is involved in actin cytoskeleton dynamics.
- Its role in melanoma cell retraction is unknown.
- Phosphorylation may regulate IQGAP1 activity.
Purpose of the Study:
- To investigate IQGAP1 domain requirements for localization in retracting melanoma cells.
- To characterize IQGAP1 knockdown effects on melanoma cell behavior.
Main Methods:
- Examined localization of IQGAP1 mutants (S1441E/S1443D, S1441A/S1443A, ΔCHD, ΔGRD, ΔCT) in B16F10 melanoma cells.
- Assessed IQGAP1 knockdown phenotypes on various substrates.
Main Results:
- GRD and CT domains are crucial for IQGAP1 localization to retracting cell edges.
- ΔGRD and ΔCT mutants showed localization in protruding areas with increased microtubules.
- IQGAP1 knockdown impaired cell polarity, proliferation, and spheroid growth.
Conclusions:
- The GRD and CT domains of IQGAP1 are key regulators of its localization to retracting actin networks.
- These domains contribute to IQGAP1's proposed tumorigenic role in melanoma.
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