ADF/Cofilin-Mediated Actin Turnover Promotes Axon Regeneration in the Adult CNS

ADF/Cofilin介导的肌动蛋白周转促进成年中枢神经系统的轴突再生

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作者:Andrea Tedeschi ,Sebastian Dupraz ,Michele Curcio ,Claudia J Laskowski ,Barbara Schaffran ,Kevin C Flynn ,Telma E Santos ,Sina Stern ,Brett J Hilton ,Molly J E Larson ,Christine B Gurniak ,Walter Witke ,Frank Bradke

Abstract

Injured axons fail to regenerate in the adult CNS, which contrasts with their vigorous growth during embryonic development. We explored the potential of re-initiating axon extension after injury by reactivating the molecular mechanisms that drive morphogenetic transformation of neurons during development. Genetic loss- and gain-of-function experiments followed by time-lapse microscopy, in vivo imaging, and whole-mount analysis show that axon regeneration is fueled by elevated actin turnover. Actin depolymerizing factor (ADF)/cofilin controls actin turnover to sustain axon regeneration after spinal cord injury through its actin-severing activity. This pinpoints ADF/cofilin as a key regulator of axon growth competence, irrespective of developmental stage. These findings reveal the central role of actin dynamics regulation in this process and elucidate a core mechanism underlying axon growth after CNS trauma. Thereby, neurons maintain the capacity to stimulate developmental programs during adult life, expanding their potential for plasticity. Thus, actin turnover is a key process for future regenerative interventions.

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