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1.
Front Cell Neurosci ; 14: 596072, 2020.
Article En | MEDLINE | ID: mdl-33240046

The current study investigates the neurotrophic effects of Clostridium botulinum C3 transferase (C3bot) on highly purified, glia-free, GABAergic, and glutamatergic neurons. Incubation with nanomolar concentrations of C3bot promotes dendrite formation as well as dendritic and axonal outgrowth in rat GABAergic neurons. A comparison of C3bot effects on sorted mouse GABAergic and glutamatergic neurons obtained from newly established NexCre;Ai9xVGAT Venus mice revealed a higher sensitivity of GABAergic cells to axonotrophic and dendritic effects of C3bot in terms of process length and branch formation. Protein biochemical analysis of known C3bot binding partners revealed comparable amounts of ß1 integrin in both cell types but a higher expression of vimentin in GABAergic neurons. Accordingly, binding of C3bot to GABAergic neurons was stronger than binding to glutamatergic neurons. A combinatory treatment of glutamatergic neurons with C3bot and vimentin raised the amount of bound C3bot to levels comparable to the ones in GABAergic neurons, thereby confirming the specificity of effects. Overall, different surface vimentin levels between GABAergic and glutamatergic neurons exist that mediate neurotrophic C3bot effects.

2.
Glia ; 67(4): 703-717, 2019 04.
Article En | MEDLINE | ID: mdl-30485542

Clostridium botulinum C3 transferase (C3bot) ADP-ribosylates rho proteins to change cellular functions in a variety of cell types including astrocytes and neurons. The intermediate filament protein vimentin as well as transmembrane integrins are involved in internalization of C3bot into cells. The exact contribution, however, of these proteins to binding of C3bot to the cell surface and subsequent cellular uptake remains to be unraveled. By comparing primary astrocyte cultures derived from wild-type with Vim-/- mice, we demonstrate that astrocytes lacking vimentin exhibited a delayed ADP-ribosylation of rhoA concurrent with a blunted morphological response. This functional impairment was rescued by the extracellular excess of recombinant vimentin. Binding assays using C3bot harboring a mutated integrin-binding RGD motif (C3bot-G89I) revealed the involvement of integrins in astrocyte binding of C3bot. Axonotrophic effects of C3bot are vimentin dependent and postulate an underlying mechanism entertaining a molecular cross-talk between astrocytes and neurons. We present functional evidence for astrocytic release of vimentin by exosomes using an in vitro scratch wound model. Exosomal vimentin+ particles released from wild-type astrocytes promote the interaction of C3bot with neuronal membranes. This effect vanished when culturing Vim-/- astrocytes. Specificity of these findings was confirmed by recombinant vimentin propagating enhanced binding of C3bot to synaptosomes from rat spinal cord and mouse brain. We hypothesize that vimentin+ exosomes released by reactive astrocytes provide a novel molecular mechanism constituting axonotrophic (neuroprotective) and plasticity augmenting effects of C3bot after spinal cord injury.


ADP Ribose Transferases/pharmacology , Astrocytes/metabolism , Botulinum Toxins/pharmacology , Extracellular Vesicles/physiology , Neurons/metabolism , Vimentin/metabolism , ADP Ribose Transferases/metabolism , Animals , Astrocytes/ultrastructure , Botulinum Toxins/metabolism , Cells, Cultured , Disease Models, Animal , Extracellular Vesicles/ultrastructure , Male , Mice , Mice, Inbred C57BL , Mice, Transgenic , Microscopy, Immunoelectron , Neurons/drug effects , Neurons/ultrastructure , Protein Binding/drug effects , Protein Binding/genetics , Rats , Rats, Inbred Lew , Spinal Cord/cytology , Spinal Cord Injuries/metabolism , Spinal Cord Injuries/pathology , Subcellular Fractions/drug effects , Subcellular Fractions/metabolism , Subcellular Fractions/ultrastructure , Time Factors , Vimentin/genetics
3.
J Biol Chem ; 292(43): 17668-17680, 2017 10 27.
Article En | MEDLINE | ID: mdl-28882889

The Rho ADP-ribosylating C3 exoenzyme (C3bot) is a bacterial protein toxin devoid of a cell-binding or -translocation domain. Nevertheless, C3 can efficiently enter intact cells, including neurons, but the mechanism of C3 binding and uptake is not yet understood. Previously, we identified the intermediate filament vimentin as an extracellular membranous interaction partner of C3. However, uptake of C3 into cells still occurs (although reduced) in the absence of vimentin, indicating involvement of an additional host cell receptor. C3 harbors an Arg-Gly-Asp (RGD) motif, which is the major integrin-binding site, present in a variety of integrin ligands. To check whether the RGD motif of C3 is involved in binding to cells, we performed a competition assay with C3 and RGD peptide or with a monoclonal antibody binding to ß1-integrin subunit and binding assays in different cell lines, primary neurons, and synaptosomes with C3-RGD mutants. Here, we report that preincubation of cells with the GRGDNP peptide strongly reduced C3 binding to cells. Moreover, mutation of the RGD motif reduced C3 binding to intact cells and also to recombinant vimentin. Anti-integrin antibodies also lowered the C3 binding to cells. Our results indicate that the RGD motif of C3 is at least one essential C3 motif for binding to host cells and that integrin is an additional receptor for C3 besides vimentin.


ADP Ribose Transferases , Botulinum Toxins , Integrin beta1 , Neurons/metabolism , Oligopeptides , Synaptosomes/metabolism , ADP Ribose Transferases/chemistry , ADP Ribose Transferases/pharmacokinetics , ADP Ribose Transferases/pharmacology , Amino Acid Motifs , Animals , Botulinum Toxins/chemistry , Botulinum Toxins/pharmacokinetics , Botulinum Toxins/pharmacology , Cell Line , Integrin beta1/chemistry , Integrin beta1/genetics , Integrin beta1/metabolism , Mice , Vimentin/chemistry , Vimentin/genetics , Vimentin/metabolism
4.
J Neurochem ; 139(2): 234-244, 2016 10.
Article En | MEDLINE | ID: mdl-27419376

The type III intermediate filament protein vimentin was recently identified to mediate binding and uptake of Clostridium botulinum C3 exoenzyme (C3bot) in two cell lines. Here, we used primary neuronal cultures from vimentin knockout (Vim-/- ) mice to study the impact of vimentin on axonal growth and internalization of C3bot. In contrast to wild type, vimentin knockout neurons were insensitive to C3bot. Application of extracellular vimentin to Vim-/- neurons completely restored the growth-promoting effects of C3bot. In line with this uptake of C3bot into Vim-/- neurons was strongly decreased resulting in reduced ADP-ribosylation of RhoA and B as detected by an antibody recognizing selectively ADP-ribosylated RhoA/B. Again, uptake of C3bot into Vim-/- neurons was rescued by addition of extracellular vimentin. In addition, in purified embryonic stem cell-derived motor neurons that are devoid of glial cells C3bot elicited axonotrophic effects confining neuronal vimentin as a binding partner. Primary neuronal cultures from vimentin knockout (KO) mice were used to study the impact of vimentin on axonal growth and internalization of C3bot. In contrast to wild type, vimentin knockout neurons were insensitive to the axonotrophic effects of C3bot. Application of extracellular vimentin (recombinant vimentin) to vimentin KO neurons completely restored the growth-promoting effects of C3bot. In line with this uptake of C3bot into vimentin KO neurons was strongly decreased resulting in reduced ADP-ribosylation of RhoA and B as detected by an antibody recognizing selectively ADP-ribosylated RhoA/B.


ADP Ribose Transferases/pharmacology , Axons/drug effects , Botulinum Toxins/pharmacology , Vimentin/metabolism , Adenosine Diphosphate Ribose/metabolism , Animals , Cell Line , Genotype , Mice , Mice, 129 Strain , Mice, Knockout , Motor Neurons/drug effects , Motor Neurons/metabolism , Neural Stem Cells/metabolism , Primary Cell Culture , Vimentin/genetics , rho GTP-Binding Proteins/metabolism , rhoA GTP-Binding Protein , rhoB GTP-Binding Protein/metabolism
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