Double-Edge Sword of Sustained ROCK Activation in Prion Diseases through Neuritogenesis Defects and Prion Accumulation

被引:30
作者
Alleaume-Butaux, Aurelie [1 ,2 ]
Nicot, Simon [1 ,2 ]
Pietri, Mathea [1 ,2 ]
Baudry, Anne [1 ,2 ]
Dakowski, Caroline [1 ,2 ]
Tixador, Philippe [3 ,4 ]
Ardila-Osorio, Hector [1 ,2 ]
Haeberle, Anne-Marie [5 ]
Bailly, Yannick [5 ]
Peyrin, Jean-Michel [3 ,4 ,6 ]
Launay, Jean-Marie [7 ]
Kellermann, Odile [1 ,2 ]
Schneider, Benoit [1 ,2 ]
机构
[1] INSERM, UMR S 1124, Paris, France
[2] Univ Paris 05, Sorbonne Paris Cite, UMR S 1124, Paris, France
[3] CNRS, Biol Adaptat & Ageing, UMR 8256, Paris, France
[4] Univ Paris 06, Sorbonne Univ, Biol Adaptat & Ageing, Inst Biol Paris Seine,B2A,UMR 8256, Paris, France
[5] CNRS, Cytol & Cytopathol Neuron, Inst Neurosci & Cellulaires & Integrat, UPR 3212, Strasbourg, France
[6] Hop Lariboisiere, AP HP, INSERM, Serv Biochim,UMR S942, F-75475 Paris, France
[7] Hoffmann La Roche Ltd, Pharma Res Dept, Basel, Switzerland
关键词
STRESS-INDUCIBLE PROTEIN-1; CELLULAR PRION; RHO KINASE; SEROTONIN TRANSPORTER; SIGNALING PATHWAYS; MESSENGER-RNA; PDK1; CYTOSKELETON; INHIBITION; RECEPTOR;
D O I
10.1371/journal.ppat.1005073
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
In prion diseases, synapse dysfunction, axon retraction and loss of neuronal polarity precede neuronal death. The mechanisms driving such polarization defects, however, remain unclear. Here, we examined the contribution of RhoA-associated coiled-coil containing kinases (ROCK), key players in neuritogenesis, to prion diseases. We found that over-activation of ROCK signaling occurred in neuronal stem cells infected by pathogenic prions (PrPSc) and impaired the sprouting of neurites. In reconstructed networks of mature neurons, PrPSc-induced ROCK overactivation provoked synapse disconnection and dendrite/axon degeneration. This overactivation of ROCK also disturbed overall neurotransmitter-associated functions. Importantly, we demonstrated that beyond its impact on neuronal polarity ROCK overactivity favored the production of PrPSc through a ROCK-dependent control of 3-phosphoinositide-dependent kinase 1 (PDK1) activity. In non-infectious conditions, ROCK and PDK1 associated within a complex and ROCK phosphorylated PDK1, conferring basal activity to PDK1. In prion-infected neurons, exacerbated ROCK activity increased the pool of PDK1 molecules physically interacting with and phosphorylated by ROCK. ROCK-induced PDK1 overstimulation then canceled the neuroprotective alpha-cleavage of normal cellular prion protein PrPC by TACE alpha-secretase, which physiologically precludes PrPSc production. In prion-infected cells, inhibition of ROCK rescued neurite sprouting, preserved neuronal architecture, restored neuronal functions and reduced the amount of PrPSc. In mice challenged with prions, inhibition of ROCK also lowered brain PrPSc accumulation, reduced motor impairment and extended survival. We conclude that ROCK overactivation exerts a double detrimental effect in prion diseases by altering neuronal polarity and triggering PrPSc accumulation. Eventually ROCK emerges as therapeutic target to combat prion diseases.
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页数:25
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