2012
DOI: 10.1002/cm.21086
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Common mechanisms regulating cell cortex properties during cell division and cell migration

Abstract: Single cell morphogenesis results from a balance of forces involving internal pressure (also called turgor pressure in plants and fungi) and the plastic and dynamic outer shell of the cell. Dominated by the cell wall in plants and fungi, mechanical properties of the outer shell of animal cells arise from the cell cortex, which is mostly composed of the plasma membrane (and membrane proteins) and the underlying meshwork of actin filaments and myosin motors (and associated proteins). In this review, following Br… Show more

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Cited by 23 publications
(25 citation statements)
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“…Several mechanistic similarities between migration and cell division have been described [119,120,122-130], and genetic signatures enriched with mitosis genes have been identified as predictors of metastasis and poor survival for several human cancers [131-133]. We identified a linear relationship between cell division and average distance migrated for HT-1080s in synthetic ECM (Figure S9E), which is consistent with a recently reported correlation between proliferation and migration distance for several malignant melanoma cell lines in 2D culture [130].…”
Section: Discussionmentioning
confidence: 99%
“…Several mechanistic similarities between migration and cell division have been described [119,120,122-130], and genetic signatures enriched with mitosis genes have been identified as predictors of metastasis and poor survival for several human cancers [131-133]. We identified a linear relationship between cell division and average distance migrated for HT-1080s in synthetic ECM (Figure S9E), which is consistent with a recently reported correlation between proliferation and migration distance for several malignant melanoma cell lines in 2D culture [130].…”
Section: Discussionmentioning
confidence: 99%
“…Of the ∌3700 non-essential genes of S. pombe , we identified and chose 16 genes whose deletion causes non-straight axial growth phenotypes (Table 1 and [3], [4], [11]). They included genes with a known role in cell polarity or cytoskeleton like tea1 (a Kelch-repeat containing polarity factor), tea2 (a kinesin), tea4 (a Tea1 interactor), pom1 (DYRK kinase) and mto1 (centrosomin-related microtubule nucleator), but also genes not related to those machineries like vps71 and swr1 (chromatin remodelling), rpl3702 (ribosomal structure), and mss116 and mgr2 (predicted mitochondrial; www.pombase.org).…”
Section: Resultsmentioning
confidence: 99%
“…Cell shape is not only the product of genetic design and of the physical and biochemical environment but it is also subject to inheritance, as every cell stems from a previous cellular entity with a given composition and morphology [3], [4]. In the last two decades many studies have demonstrated the importance that transmission from cells to their progeny of molecules – DNA, proteins or even prions - and intracellular organelles – including nuclei - can have in the development and fate of cells, tissues and organisms.…”
Section: Introductionmentioning
confidence: 99%
“…Our study showed that the differential protein spots 1672 and 1105 were multiple variants of actin. Actin is one of the major cytoskeletal proteins that is involved in cell motility (29,30). Among these actin variants, Acta1 is associated with congenital myopathy with excess of thin myofilaments (31), Acta2 is associated with dysfunction of vascular smooth muscle cell (32,33), Actb lies in endothelial cells and is involved in cell motility and is reduced by parabolic flight maneuvers (34), and Actc1 may serve a function in the onset of congenital heart disease through induction of cardiomyocyte apoptosis (35).…”
Section: Discussionmentioning
confidence: 99%