TY - JOUR
T1 - Myelin basic protein cleaves cell adhesion molecule L1 and promotes neuritogenesis and cell survival
AU - Lutz, David
AU - Loers, Gabriele
AU - Kleene, Ralf
AU - Oezen, Iris
AU - Kataria, Hardeep
AU - Katagihallimath, Nainesh
AU - Braren, Ingke
AU - Harauz, George
AU - Schachner, Melitta
PY - 2014
Y1 - 2014
N2 - The cell adhesion molecule L1 is a Lewisx-carrying glycoprotein that plays important roles in the developing and adult nervous system. Here we show that myelin basic protein (MBP) binds to L1 in a Lewisx-dependent manner. Furthermore, we demonstrate that MBP is released by murine cerebellar neurons as a sumoylated dynamin-containing protein upon L1 stimulation and that this MBP cleaves L1 as a serine protease in the L1 extracellular domain at Arg 687 yielding a transmembrane fragment that promotes neurite outgrowth and neuronal survival in cell culture. L1-induced neurite outgrowth and neuronal survival are reduced in MBP-deficient cerebellar neurons and in wild-type cerebellar neurons in the presence of an MBP antibody or L1 peptide containing the MBP cleavage site. Genetic ablation of MBPin shiverer mice and mutagenesis of the proteolytically active site in MBP or of the MBP cleavage site within L1 as well as serine protease inhibitors and an L1 peptide containing the MBPcleavage site abolish generation of the L1 fragment. Our findings provide evidence for novel functions of MBPin the nervous system.
AB - The cell adhesion molecule L1 is a Lewisx-carrying glycoprotein that plays important roles in the developing and adult nervous system. Here we show that myelin basic protein (MBP) binds to L1 in a Lewisx-dependent manner. Furthermore, we demonstrate that MBP is released by murine cerebellar neurons as a sumoylated dynamin-containing protein upon L1 stimulation and that this MBP cleaves L1 as a serine protease in the L1 extracellular domain at Arg 687 yielding a transmembrane fragment that promotes neurite outgrowth and neuronal survival in cell culture. L1-induced neurite outgrowth and neuronal survival are reduced in MBP-deficient cerebellar neurons and in wild-type cerebellar neurons in the presence of an MBP antibody or L1 peptide containing the MBP cleavage site. Genetic ablation of MBPin shiverer mice and mutagenesis of the proteolytically active site in MBP or of the MBP cleavage site within L1 as well as serine protease inhibitors and an L1 peptide containing the MBPcleavage site abolish generation of the L1 fragment. Our findings provide evidence for novel functions of MBPin the nervous system.
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U2 - 10.1074/jbc.M113.530238
DO - 10.1074/jbc.M113.530238
M3 - Article
C2 - 24671420
AN - SCOPUS:84900396421
SN - 0021-9258
VL - 289
SP - 13503
EP - 13518
JO - Journal of Biological Chemistry
JF - Journal of Biological Chemistry
IS - 19
ER -