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<b>Notch signalling: The long road to the aorta</b>
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<p>Cell Migration Gateway (2008). <a href="http://www.cellmigration.org/cmg_update/2008/080701/full/cmg073.shtml">doi:10.1038/cmg073</a>
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<p>Author: Kim Baumann</p>
<p>Notch signalling drives the specification of endothelial precursors in somites and directs their migration toward the dorsal aorta, thus resulting in its three-dimensional assembly.</p>
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<title>Actin nucleation: To CAP it off</title>
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<b>Actin nucleation: To CAP it off</b>
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<p>Cell Migration Gateway (2008). <a href="http://www.cellmigration.org/cmg_update/2008/080701/full/cmg074.shtml">doi:10.1038/cmg074</a>
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<p>The capping protein favours actin nucleation by the actin-related protein-2/3 complex thus increasing the rate of actin-based motility.</p>
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<dc:title>Actin nucleation: To CAP it off</dc:title>
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<b>Metastasis: Regressing to self-renewal</b>
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<p>Nature Reviews Cancer 8, 483 (2008). <a href="http://www.cellmigration.org/cmg_update/2008/080701/full/nrc2423.shtml">doi:10.1038/nrc2423</a>
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<dc:title>Metastasis: Regressing to self-renewal</dc:title>
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<dc:identifier>doi:10.1038/nrc2423</dc:identifier>
<dc:source>Nature Reviews Cancer 8, 483 (2008)</dc:source>
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<b>Cancer genetics: Looking at the big picture</b>
</p>
<p>Nature Reviews Genetics 9, 498 (2008). <a href="http://www.cellmigration.org/cmg_update/2008/080701/full/nrg2405.shtml">doi:10.1038/nrg2405</a>
</p>
<p>Author: Patrick Goymer</p>
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<dc:title>Cancer genetics: Looking at the big picture</dc:title>
<dc:creator>Patrick Goymer</dc:creator>
<dc:identifier>doi:10.1038/nrg2405</dc:identifier>
<dc:source>Nature Reviews Genetics 9, 498 (2008)</dc:source>
<dc:date>2008-06-10</dc:date>
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<b>Cell morphology: Breaking the spatial code</b>
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<p>Nature Reviews Molecular Cell Biology 9, 500 (2008). <a href="http://www.cellmigration.org/cmg_update/2008/080701/full/nrm2433.shtml">doi:10.1038/nrm2433</a>
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<b>Moving towards a Better Understanding of Chemotaxis</b>
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<b>Sdf1/Cxcr4 signaling controls the dorsal migration of endodermal cells during zebrafish gastrulation</b>
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<description>Leukocytes sense and move in the direction of chemoattractants. Kubes and colleagues show that the phosphatase PTEN is required by migrating neutrophils to 'prioritize' multiple chemoattractant signals, as are encountered in infected tissues.</description>
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<p>
<b>PTEN functions to 'prioritize' chemotactic cues and prevent 'distraction' in migrating neutrophils</b>
</p>
<p>Nature Immunology 9, 743 (2008). <a href="http://dx.doi.org/10.1038/ni.1623">doi:10.1038/ni.1623</a>
</p>
<p>Authors: Bryan Heit, Stephen M Robbins, Charlene M Downey, Zhiwen Guan, Pina Colarusso, B Joan Miller, Frank R Jirik
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<dc:title>PTEN functions to 'prioritize' chemotactic cues and prevent 'distraction' in migrating neutrophils</dc:title>
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<p>
<b>Cancer reveals cruel trick</b>
</p>
<p>Nature News , (2008). <a href="http://dx.doi.org/10.1038/news.2008.887">doi:10.1038/news.2008.887</a>
</p>
<p>Author: Heidi Ledford</p>
<p>Some tumours may stimulate the growth of distant cancers within the body.</p>
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<dc:title>Cancer reveals cruel trick</dc:title>
<dc:creator>Heidi Ledford</dc:creator>
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<dc:source>Nature News , (2008)</dc:source>
<dc:date>2008-06-12</dc:date>
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<title>Consortium July Update</title>
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<description>Actin treadmilling: G-actin diffusion or local recycling?  Signalling in space: Coupling at the plasma membrane.</description>
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<p>
<b>Consortium July Update</b>
</p>
<p>Consortium Updates (2008). <a href="http://www.cellmigration.org/cmcnews/cmcnews.shtml">Article</a>
</p>
<p>Actin treadmilling: G-actin diffusion or local recycling?  Signalling in space: Coupling at the plasma membrane.</p>
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<title>Breaking down EMT</title>
<link>http://www.cellmigration.org/cmg_update/2008/080701/full/ncb0708-757.shtml</link>
<description>Epithelial&#8211;mesenchymal transition, in which epithelial cells lose their polarity and become motile mesenchymal cells, occurs during development and marks a key step in tumour progression towards metastasis. Most studies of this process have focused on the disassembly of adherens junctions, but regulation of basement membrane breakdown by a pathway involving RhoA and microtubules may be equally important.</description>
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