MS-based proteomics has been applied to a differential network analysis of the nuclear–cytoplasmic subcellular distribution of proteins between cell-cycle arrest: (a) at the origin activation checkpoint for DNA replication, or (b) in response to oxidative stress. Significant changes were identified for 401 proteins. Cellular response combines changes in trafficking and in total abundance to vary the local compartmental abundances that are the basis of cellular response. Appreciable changes for both perturbations were observed for 245 proteins, but cross-talk between oxidative stress and DNA replication is dominated by 49 proteins that show strong changes for both. Many nuclear processes are influenced by a spatial switch involving the prote...
Oxidative stress is a biological state that occurs due to imbalance between reactive oxygen species ...
Depletion of DNA replication initiation factors such as CDC7 kinase triggers the origin activation c...
Genomes are spatially assembled into chromosome territories (CT) within the nucleus of living cells....
MS-based proteomics has been applied to a differential network analysis of the nuclear–cytoplasmic s...
MS-based proteomics has been applied to a differential network analysis of the nuclear-cytoplasmic s...
We have used a subcellular spatial razor approach based on LC–MS/MS-based proteomics with SILAC isot...
The Redox Code involves specific, reversible oxidative changes in proteins that modulate protein ter...
The Redox Code involves specific, reversible oxidative changes in proteins that modulate protein ter...
At the molecular level, living cells are enormously complicated complex adaptive systems in which in...
Protein subcellular localization is tightly controlled and intimately linked to protein function in ...
A major challenge in cell biology is to identify the subcellular distribution of proteins within cel...
Characterizing the molecular components of the basic unit of life; the cell, is crucial for a comple...
Concurrent proteomics analysis of the nuclei and mitochondria of MCF7 breast cancer cells identified...
We have used a proteomics subcellular spatial razor approach to look at changes in total protein abu...
Oxidative stress is a biological state that occurs due to imbalance between reactive oxygen species ...
Depletion of DNA replication initiation factors such as CDC7 kinase triggers the origin activation c...
Genomes are spatially assembled into chromosome territories (CT) within the nucleus of living cells....
MS-based proteomics has been applied to a differential network analysis of the nuclear–cytoplasmic s...
MS-based proteomics has been applied to a differential network analysis of the nuclear-cytoplasmic s...
We have used a subcellular spatial razor approach based on LC–MS/MS-based proteomics with SILAC isot...
The Redox Code involves specific, reversible oxidative changes in proteins that modulate protein ter...
The Redox Code involves specific, reversible oxidative changes in proteins that modulate protein ter...
At the molecular level, living cells are enormously complicated complex adaptive systems in which in...
Protein subcellular localization is tightly controlled and intimately linked to protein function in ...
A major challenge in cell biology is to identify the subcellular distribution of proteins within cel...
Characterizing the molecular components of the basic unit of life; the cell, is crucial for a comple...
Concurrent proteomics analysis of the nuclei and mitochondria of MCF7 breast cancer cells identified...
We have used a proteomics subcellular spatial razor approach to look at changes in total protein abu...
Oxidative stress is a biological state that occurs due to imbalance between reactive oxygen species ...
Depletion of DNA replication initiation factors such as CDC7 kinase triggers the origin activation c...
Genomes are spatially assembled into chromosome territories (CT) within the nucleus of living cells....