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Publication : Lamellipodia are crucial for haptotactic sensing and response.

First Author  King SJ Year  2016
Journal  J Cell Sci Volume  129
Issue  12 Pages  2329-42
PubMed ID  27173494 Mgi Jnum  J:249857
Mgi Id  MGI:5922948 Doi  10.1242/jcs.184507
Citation  King SJ, et al. (2016) Lamellipodia are crucial for haptotactic sensing and response. J Cell Sci 129(12):2329-42
abstractText  Haptotaxis is the process by which cells respond to gradients of substrate-bound cues, such as extracellular matrix proteins (ECM); however, the cellular mechanism of this response remains poorly understood and has mainly been studied by comparing cell behavior on uniform ECMs with different concentrations of components. To study haptotaxis in response to gradients, we utilized microfluidic chambers to generate gradients of the ECM protein fibronectin, and imaged the cell migration response. Lamellipodia are fan-shaped protrusions that are common in migrating cells. Here, we define a new function for lamellipodia and the cellular mechanism required for haptotaxis - differential actin and lamellipodial protrusion dynamics lead to biased cell migration. Modest differences in lamellipodial dynamics occurring over time periods of seconds to minutes are summed over hours to produce differential whole cell movement towards higher concentrations of fibronectin. We identify a specific subset of lamellipodia regulators as being crucial for haptotaxis. Numerous studies have linked components of this pathway to cancer metastasis and, consistent with this, we find that expression of the oncogenic Rac1 P29S mutation abrogates haptotaxis. Finally, we show that haptotaxis also operates through this pathway in 3D environments.
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