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Phosphorylation mapping of laminin α1-chain: Kinases in association with active sites.

ΤίτλοςPhosphorylation mapping of laminin α1-chain: Kinases in association with active sites.
Publication TypeJournal Article
Year of Publication2019
AuthorsGalliou, P. Angeliki, Verrou K-M., & Koliakos G.
JournalComput Biol Chem
Volume80
Pagination480-497
Date Published2019 Jun
ISSN1476-928X
Λέξεις κλειδιάAmino Acid Sequence, Catalytic Domain, Computational Biology, Databases, Protein, Humans, Laminin, Phosphorylation, Protein Kinases, Protein Processing, Post-Translational
Abstract

Laminin-111 is a trimeric glycoprotein of the extracellular matrix (ECM) that holds a significant role in cell adhesion, migration and differentiation. Laminin-111 is the most studied laminin isoform, composed of three chains; α1, β1 and γ1. Phosphorylation is the most common eukaryotic post - translational modification and has regulatory effect on protein function. Using bioinformatic tools we computationally predicted all the possible phosphorylation sites on human laminin α1-chain sequence (LAMA1) according to kinases binding motifs. Thus, we predicted, for the first time, the possibly responsible kinases for fifteen of the nineteen already published experimentally observed phosphorylated residues in LAMA1. Searching the literature extensively, we recorded all the known functional sites (active sites) in LAMA1. We combined the experimentally observed and predicted phosphorylated residues as well as the active sites in LAMA1, generating an analytic phosphorylation map of human laminin α1-chain, which is useful for further analysis. Our results indicated fourteen kinases that might be important for the phosphorylation of human laminin α1-chain, out of which three kinases with reported ecto-phosphorylation activity (PKA, PKC and CKII) were suggested to have a more significant role. Six cancer associated-active sites were correlated with kinases, three out which were correlated with only the above ecto - kinases.

DOI10.1016/j.compbiolchem.2019.04.012
Alternate JournalComput Biol Chem
PubMed ID31174160

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