AbstractLocal axon degeneration is a common pathological feature of many neurodegenerative diseases and peripheral neuropathies. While it is believed to operate with an apoptosis-independent molecular program, the underlying molecular mechanisms are largely unknown. In this study, we used the degeneration of transected axons, termed “Wallerian degeneration,” as a model to examine the possible involvement of the ubiquitin proteasome system (UPS). Inhibiting UPS activity by both pharmacological and genetic means profoundly delays axon degeneration both in vitro and in vivo. In addition, we found that the fragmentation of microtubules is the earliest detectable change in axons undergoing Wallerian degeneration, which among other degenerative e...
In disorders known as ‘dying-back’ neuropathies, the distal nerves appear to degenerate first and th...
Wallerian degeneration, the disintegration of the distal part of an injured axon, is an important ev...
AbstractThe ubiquitin-proteasome system targets numerous cellular proteins for degradation. In addit...
AbstractLocal axon degeneration is a common pathological feature of many neurodegenerative diseases ...
Abstract: Axons are essential, vulnerable and often irreplaceable so it is essential to understand h...
Axonal degeneration is an active process that differs from neuronal death, and it is the hallmark of...
The present study examined the effects of proteasome inhibitors on Wallerian degeneration (WD) in th...
International audienceThe selective degeneration of an axon, without the death of the parent neuron,...
The ubiquitin proteasome system (UPS) plays a vital role in the regulation of protein degradation. U...
Wallerian degeneration is delayed when sufficient levels of proteins with NMNAT activity are maintai...
Traditionally, researchers have believed that axons are highly dependent on their cell bodies for lo...
<div><p>Wallerian degeneration is delayed when sufficient levels of proteins with NMNAT activity are...
In the C57BL/WldS mouse, a dominant mutation dramatically delays Wallerian degeneration in injury an...
Wallerian degeneration is a widespread mechanism of axon degeneration. It has mostly been studied af...
The degeneration of nerve fibres following injury was first described by Augustus Waller over 170 ye...
In disorders known as ‘dying-back’ neuropathies, the distal nerves appear to degenerate first and th...
Wallerian degeneration, the disintegration of the distal part of an injured axon, is an important ev...
AbstractThe ubiquitin-proteasome system targets numerous cellular proteins for degradation. In addit...
AbstractLocal axon degeneration is a common pathological feature of many neurodegenerative diseases ...
Abstract: Axons are essential, vulnerable and often irreplaceable so it is essential to understand h...
Axonal degeneration is an active process that differs from neuronal death, and it is the hallmark of...
The present study examined the effects of proteasome inhibitors on Wallerian degeneration (WD) in th...
International audienceThe selective degeneration of an axon, without the death of the parent neuron,...
The ubiquitin proteasome system (UPS) plays a vital role in the regulation of protein degradation. U...
Wallerian degeneration is delayed when sufficient levels of proteins with NMNAT activity are maintai...
Traditionally, researchers have believed that axons are highly dependent on their cell bodies for lo...
<div><p>Wallerian degeneration is delayed when sufficient levels of proteins with NMNAT activity are...
In the C57BL/WldS mouse, a dominant mutation dramatically delays Wallerian degeneration in injury an...
Wallerian degeneration is a widespread mechanism of axon degeneration. It has mostly been studied af...
The degeneration of nerve fibres following injury was first described by Augustus Waller over 170 ye...
In disorders known as ‘dying-back’ neuropathies, the distal nerves appear to degenerate first and th...
Wallerian degeneration, the disintegration of the distal part of an injured axon, is an important ev...
AbstractThe ubiquitin-proteasome system targets numerous cellular proteins for degradation. In addit...