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Dimeric Quaternary Structure of Human Laforin
Authors:Rajeshwer S Sankhala  Adem C Koksal  Lan Ho  Felix Nitschke  Berge A Minassian  Gino Cingolani
Abstract:The phosphatase laforin removes phosphate groups from glycogen during biosynthetic activity. Loss-of-function mutations in the gene encoding laforin is the predominant cause of Lafora disease, a fatal form of progressive myoclonic epilepsy. Here, we used hybrid structural methods to determine the molecular architecture of human laforin. We found that laforin adopts a dimeric quaternary structure, topologically similar to the prototypical dual specificity phosphatase VH1. The interface between the laforin carbohydrate-binding module and the dual specificity phosphatase domain generates an intimate substrate-binding crevice that allows for recognition and dephosphorylation of phosphomonoesters of glucose. We identify novel molecular determinants in the laforin active site that help decipher the mechanism of glucan phosphatase activity.
Keywords:Dual Specificity Phosphoprotein  Phosphatase  Epilepsy  Glycogen  Neurodegenerative Disease  Phosphorylation  Lafora Disease  Laforin
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