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Intracellular Trafficking

L1 Is Sequentially Processed by Two Differently Activated Metalloproteases and Presenilin/γ-Secretase and Regulates Neural Cell Adhesion, Cell Migration, and Neurite Outgrowth

, , , , , , , & show all
Pages 9040-9053 | Received 10 Jun 2005, Accepted 14 Jun 2005, Published online: 27 Mar 2023
 

Abstract

The immunoglobulin superfamily recognition molecule L1 plays important functional roles in the developing and adult nervous system. Metalloprotease-mediated cleavage of this adhesion molecule has been shown to stimulate cellular migration and neurite outgrowth. We demonstrate here that L1 cleavage is mediated by two distinct members of the disintegrin and metalloprotease family, ADAM10 and ADAM17. This cleavage is differently regulated and leads to the generation of a membrane bound C-terminal fragment, which is further processed through γ-secretase activity. Pharmacological approaches with two hydroxamate-based inhibitors with different preferences in blocking ADAM10 and ADAM17, as well as loss of function and gain of function studies in murine embryonic fibroblasts, showed that constitutive shedding of L1 is mediated by ADAM10 while phorbol ester stimulation or cholesterol depletion led to ADAM17-mediated L1 cleavage. In contrast, N-methyl-d-aspartate treatment of primary neurons stimulated ADAM10-mediated L1 shedding. Both proteases were able to affect L1-mediated adhesion and haptotactic migration of neuronal cells. In particular, both proteases were involved in L1-dependent neurite outgrowth of cerebellar neurons. Thus, our data identify ADAM10 and ADAM17 as differentially regulated L1 membrane sheddases, both critically affecting the physiological functions of this adhesion protein.

ACKNOWLEDGMENTS

We thank S. Jessen for her excellent technical assistance and J. Hedderich for help in perfoming statistical analysis.

This work was supported by Deutsche Forschungsgemeinschaft Sonderforschungsbereich 415 to P.S. and K.R., DFG LU869/1-2 to A.L., Interuniversity Attraction Poles Program P5/19 of the Belgian Federal Science Policy Office, and the APOPIS EU Network. K.R. was supported by the Stiftung zur Förderung der medizinischen Forschung, CAU Kiel. P.A. was supported by a grant from the Deutsche Krebshilfe (10-1307-3A1).

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