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Title: | Liprin-a1, ERC1 and LL5 define polarized and dynamic structures that are implicated in cell migration | Authors: | Astro, V Chiaretti, S Magistrati, E Fivaz, M De Curtis, I |
Keywords: | beta1 integrin carrier protein ERC1 protein, human nerve protein PHLDB1 protein, human PHLDB2 protein, human signal peptide signal transducing adaptor protein cell adhesion cell culture cell membrane cell motion cell polarity extracellular matrix human metabolism physiology pseudopodium tumor cell line Adaptor Proteins, Signal Transducing Antigens, CD29 Carrier Proteins Cell Adhesion Cell Line, Tumor Cell Membrane Cell Movement Cell Polarity Cells, Cultured Extracellular Matrix Humans Intracellular Signaling Peptides and Proteins Nerve Tissue Proteins Pseudopodia |
Issue Date: | 2014 | Publisher: | Company of Biologists Ltd | Citation: | Astro, V, Chiaretti, S, Magistrati, E, Fivaz, M, De Curtis, I (2014). Liprin-a1, ERC1 and LL5 define polarized and dynamic structures that are implicated in cell migration. Journal of Cell Science 127 (17) : 3862-3876. ScholarBank@NUS Repository. https://doi.org/10.1242/jcs.155663 | Rights: | Attribution 4.0 International | Abstract: | Cell migration during development and metastatic invasion requires the coordination of actin and adhesion dynamics to promote protrusive activity at the front of the cell. The knowledge of the molecular mechanisms required to achieve such coordination is fragmentary. Here, we identify a new functional complex that drives cell motility. ERC1a (an isoform of ERC1) and the LL5 proteins LL5? and LL5? (encoded by PHLDB1 and PHLDB2, respectively) are required, together with liprin-?1, for effective migration and tumor cell invasion, and do so by stabilizing the protrusive activity at the cell front. Depletion of either protein negatively affects invasion, migration on extracellular matrix, lamellipodial persistence and the internalization of active integrin ?1 receptors needed for adhesion turnover at the front of the cell. Liprin-?1, ERC1a and LL5 also define new highly polarized and dynamic cytoplasmic structures uniquely localized near the protruding cell edge. Our results indicate that the functional complex and the associated structures described here represent an important mechanism to drive tumor cell migration. © 2014. Published by The Company of Biologists Ltd. | Source Title: | Journal of Cell Science | URI: | https://scholarbank.nus.edu.sg/handle/10635/180168 | ISSN: | 0021-9533 | DOI: | 10.1242/jcs.155663 | Rights: | Attribution 4.0 International |
Appears in Collections: | Staff Publications Elements |
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