An abundance of free regulatory (19S) proteasome particles

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An abundance of free regulatory (19S) proteasome particles
The life cycle of the 26S proteasome: from birth, through regulation and function, and onto its death. - Abstract - Europe PMC
An abundance of free regulatory (19S) proteasome particles
Proteasome subunit α1 overexpression preferentially drives canonical proteasome biogenesis and enhances stress tolerance in yeast
An abundance of free regulatory (19S) proteasome particles
An abundance of free regulatory (19S) proteasome particles regulates neuronal synapses
An abundance of free regulatory (19S) proteasome particles
A) Proteasome species found in different cell types. Extracts of
An abundance of free regulatory (19S) proteasome particles
26S proteasomes become stably activated upon heat shock when ubiquitination and protein degradation increase
An abundance of free regulatory (19S) proteasome particles
The ubiquitin-like modifier FAT10 is degraded by the 20S proteasome in vitro but not in cellulo
An abundance of free regulatory (19S) proteasome particles
Biomolecules, Free Full-Text
An abundance of free regulatory (19S) proteasome particles
PDF) An abundance of free regulatory (19S) proteasome particles regulates neuronal synapses
An abundance of free regulatory (19S) proteasome particles
Structure, Dynamics and Function of the 26S Proteasome
An abundance of free regulatory (19S) proteasome particles
Synaptic proteasome is inhibited in Alzheimer's disease models and associates with memory impairment in mice
An abundance of free regulatory (19S) proteasome particles
Biomolecules, Free Full-Text
An abundance of free regulatory (19S) proteasome particles
Efficiency of the four proteasome subtypes to degrade ubiquitinated or oxidized proteins
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