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Proteome and Acetylome Analysis Identifies Novel Pathways and Targets Regulated by Perifosine in Neuroblastoma
Xiao Gu1, Zhongyan Hua1, Yudi Dong1
1Medical Research Center, Shengjing Hospital of China Medical University, Shenyang, 110004, China.
Abstract:
Perifosine, an Akt inhibitor, has been shown to be effective in controlling neuroblastoma tumor growth. However, studies indicate that in addition to the ability to inhibit Akt, other mechanisms contribute to perifosine's anti-tumor activity. To gain insight into perifosine anti-tumor activity in neuroblastoma we have studied changes in the proteome and acetylome after perifosine treatment in SK-N-AS neuroblastoma cells using SILAC labeling, affinity enrichment, high-resolution and LC-MS/MS analysis. Bioinformatic analysis indicates that, a total of 5,880 proteins and 3,415 lysine acetylation sites were quantified in SK-N-AS cells and 216 differentially expressed proteins and 115 differentially expressed lysine acetylation sites were obtained. These differentially expressed proteins and lysine acetylated proteins were involved in a number of different biological functions, metabolic pathways and pathophysiological processes. This study details the impact of perifosine on proteome and lysine acetylome in SK-N-AS cells and expands our understanding of the mechanisms of perifosine action in neuroblastoma.
Insights
Perifosine controls neuroblastoma growth by affecting protein expression and acetylation. This study reveals new insights into its anti-tumor mechanisms beyond Akt inhibition in neuroblastoma cells.
Area of Science:
- Biochemistry
- Molecular Biology
- Oncology
Background:
- Perifosine is an Akt inhibitor effective against neuroblastoma.
- Its anti-tumor activity may involve mechanisms beyond Akt inhibition.
Purpose of the Study:
- To investigate the impact of perifosine on the proteome and acetylome of neuroblastoma cells.
- To elucidate additional mechanisms of perifosine's anti-tumor activity.
Main Methods:
- Utilized SILAC labeling, affinity enrichment, and LC-MS/MS analysis.
- Quantified global proteome and lysine acetylome changes in SK-N-AS neuroblastoma cells after perifosine treatment.
Main Results:
- Quantified 5,880 proteins and 3,415 lysine acetylation sites.
- Identified 216 differentially expressed proteins and 115 differentially expressed lysine acetylation sites.
- These changes impact various biological functions, metabolic pathways, and pathophysiological processes.
Conclusions:
- Perifosine significantly alters the proteome and acetylome in neuroblastoma cells.
- This provides a deeper understanding of perifosine's multifaceted anti-tumor mechanisms in neuroblastoma.
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