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Debreux, K.

Publications and source records attributed to Debreux, K..

3 recordsLinked to original sources

Leucine-rich glioma inactivated 1 is a ganglioside-binding protein

In LGI1-linked animal models of inherited autosomal dominant lateral temporal lobe epilepsy, increased neuronal excitability is accompanied by modifications in the AMPA/NMDA receptor ratio and a large decrease in Kv1 type potassium channels. However, the mechanism which links the absence of LGI1 to reduced expression of key neuronal ion channels is unknown. We observed multiple conserved canonical ganglioside-binding domains (GBDs) within human LGI1, mainly located in the EPTP domain. We show that GT1b is co-captured from native rat brain extracts by human LGI1 antibodies and, using SPR analysis, that recombinant full length LGI1 interacted with liposomes containing GT1b and GM1, but not GM3, lyso-lactosylceramide, phosphatidylserine or phosphatidylcholine. The ganglioside binding capacity of GBD peptide sequences exposed at the surface of LGI1 were confirmed using SPR and Langmuir film balance. Our data suggest that LGI1 interacts with gangliosides and may be involved in organizing lipid membrane platforms accommodating functional protein complexes. The loss of LGI1 could destabilize these platforms and contribute to reduced expression of key ion channels in Lgi1-/- mice.

neuroscience↗

A hyperglycosylated form of Kv1.2 upregulated in LGI1 knockout mice

Kv1 voltage-gated potassium channels determine key functional neuronal properties. Their activity is modulated by subunit composition and post-translational modifications such as phosphorylation and glycosylation. Using an antibody directed against a phosphotyrosine (Y458) located in the C-terminal tail of Kv1.2, we identified yet unreported high molecular weight forms of Kv1.2 among them, a phosphorylated and heavily glycosylated 100 kDa form. Owing to the significant downregulation of Kv1.2 in LGI1-dependent autosomal dominant lateral temporal lobe epilepsy, we investigated, in total brain and the hippocampal formation of both WT and Lgi1-/- mice, the distribution of phosphoY458 Kv1.2 and we compared their respective proteomic interactomes with those of Kv1.2. In addition to major differences between the interactomes of pY458Kv1.2 and Kv1.2 in WT and Lgi1-/-, we found a major reshaping of pY458 Kv1.2 molecular neighbourhood between WT and Lgi1-/- as well as a significant upregulation of the glycosylated form in Lgi1-/-.

neuroscience↗

Molecular Basis of Kv1 Channel Downregulation and Its Epileptogenic Implications in Lgi1 Knock-out Mice

The Kv1 members (KCNA, Shaker) of the voltage-gated potassium channels are implicated in determining key functional neuronal properties from spike generation at axonal initial segments to the control of synaptic strength at nerve terminals. In animal models of LGI1-dependent autosomal dominant lateral temporal lobe epilepsy (ADTLE), Kv1 channels are downregulated, suggesting their crucial involvement in epileptogenesis. The molecular basis of Kv1 channel-downregulation in LGI1 knock-out mice has not been elucidated and how the absence of this extracellular protein induces an important modification in the expression of Kv1 remains unknown. In this study we analyse by immunofluorescence the detailed modifications in neuronal Kv1.1 and Kv1.2 distribution throughout the hippocampal formation of LGI1 knock-out mice. We show that Kv1 downregulation is not restricted to the axonal compartment, but also takes place in the somatodendritic region and is accompanied by a drastic decrease in Kv2 expression levels. Moreover, we find that the downregulation of these Kv channels is associated with an important increase in bursting patterns. Finally, mass spectrometry uncovered key important modifications in the Kv1 interactome that highlight the epileptogenic implication of Kv1 downregulation in LGI1 knock-out animals.

neuroscience↗