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Eukaryotic cell biology is temporally coordinated to support the energetic demands of protein homeostasis
Abstract: Yeast physiology is temporally regulated, this becomes apparent under nutrient-limited conditions and results in respiratory oscillations (YROs). YROs share features with circadian rhythms and interact with, but are...
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Eukaryotic cell biology is temporally coordinated to support the energetic demands of protein homeostasis
Abstract: Yeast physiology is temporally regulated, this becomes apparent under nutrient-limited conditions and results in respiratory oscillations (YROs). YROs share features with circadian rhythms and interact with, but are...
Published by:
Eukaryotic cell biology is temporally coordinated to support the energetic demands of protein homeostasis
Abstract: Yeast physiology is temporally regulated, this becomes apparent under nutrient-limited conditions and results in respiratory oscillations (YROs). YROs share features with circadian rhythms and interact with, but are...
Published by:
Time-resolved in vivo ubiquitinome profiling by DIA-MS reveals USP7 targets on a proteome-wide scale
Abstract: Mass spectrometry (MS)-based ubiquitinomics provides system-level understanding of ubiquitin signaling. Here we present a scalable workflow for deep and precise in vivo ubiquitinome profiling, coupling an improved...
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