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MAP1B and Clathrin Are Novel Interacting Partners...
Journal article

MAP1B and Clathrin Are Novel Interacting Partners of the Giant Cyto-linker Dystonin

Abstract

Dystonin is a large multidomain cytoskeletal-associated protein that plays an essential role in the nervous system. Loss of dystonin results in neuromuscular dysfunction and early death in a mouse mutant called dystonia musculorum. Conserved among related proteins, the plakin domain is a defining feature of all major dystonin isoforms, yet its interactions have not been explored in detail. The purpose of the present study was to identify novel interacting partners of the plakin domain of the neuronal isoform of dystonin (dystonin-a). Newly identified interacting proteins discovered through a pull-down assay were validated using coimmunoprecipitation, coimmunofluorescence, and proximity ligation assays. Microtubule associated protein 1B (MAP1B), a microtubule stabilizing protein, and clathrin heavy chain, the major component of the clathrin triskelion, were identified as interaction partners for dystonin-a. Increased levels of phosphorylated MAP1B suggest a misregulation of MAP1B and a potentially novel component of the dt pathology. This work will further facilitate our understanding of how cytoskeletal proteins can affect and regulate neurodegenerative disorders.

Authors

Bhanot K; Young KG; Kothary R

Journal

Journal of Proteome Research, Vol. 10, No. 11, pp. 5118–5127

Publisher

American Chemical Society (ACS)

Publication Date

November 4, 2011

DOI

10.1021/pr200564g

ISSN

1535-3893

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