bioRxiv · 10.1101/2020.04.06.007948
POMK Regulates Dystroglycan Function via LARGE-mediated Elongation of Matriglycan
Abstract
Matriglycan [-GlcA-{beta}1,3-Xyl-1,3-]n serves as a scaffold in many tissues for extracellular matrix proteins containing laminin-G domains including laminin, agrin, and perlecan. Like-acetylglucosaminyltransferase-1 (LARGE) synthesizes and extends matriglycan on -dystroglycan (-DG) during skeletal muscle differentiation and regeneration; however, the mechanisms which regulate matriglycan elongation are unknown. Here, we show that Protein O-Mannose Kinase (POMK), which phosphorylates mannose of core M3 (GalNac-{beta}1,3-GlcNac-{beta}1,4-Man) preceding matriglycan synthesis, is required for LARGE-mediated generation of full-length matriglycan on -DG ([~]150 kDa). In the absence of POMK, LARGE synthesizes a very short matriglycan resulting in a [~]90 kDa -DG in mouse skeletal muscle which binds laminin but cannot prevent eccentric contraction-induced force loss or muscle pathology. Solution NMR spectroscopy studies demonstrate that LARGE directly interacts with core M3 and binds preferentially to the phosphorylated form. Collectively, our study demonstrates that phosphorylation of core M3 by POMK enables LARGE to elongate matriglycan on -DG, thereby preventing muscular dystrophy.
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Walimbe, A. S., Yang, T., Yonekawa, T., Venzke, D., Anderson, M. E., Torelli, S., Manzur, A., Yu, L., Devereaux, M., Cuellar, M., Prouty, S., O'Campo Landa, S., Muntoni, F., Campbell, K. P.. 2020-04-07. POMK Regulates Dystroglycan Function via LARGE-mediated Elongation of Matriglycan. https://doi.org/10.1101/2020.04.06.007948
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