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Updated: Oct 15, 2025

Two-dimensional Gel Electrophoresis Coupled with Mass Spectrometry Methods for an Analysis of Human Pituitary Adenoma Tissue Proteome
Published on: April 2, 2018
Quantitative Acetylomics Revealed Acetylation-Mediated Molecular Pathway Network Changes in Human Nonfunctional
Siqi Wen1,2, Jiajia Li1,2, Jingru Yang2
1Key Laboratory of Cancer Proteomics of Chinese Ministry of Health, Central South University, Changsha, China.
Abstract:
Acetylation at lysine residue in a protein mediates multiple cellular biological processes, including tumorigenesis. This study aimed to investigate the acetylated protein profile alterations and acetylation-mediated molecular pathway changes in human nonfunctional pituitary neuroendocrine tumors (NF-PitNETs). The anti-acetyl antibody-based label-free quantitative proteomics was used to analyze the acetylomes between NF-PitNETs (n = 4) and control pituitaries (n = 4). A total of 296 acetylated proteins with 517 acetylation sites was identified, and the majority of which were significantly down-acetylated in NF-PitNETs (p<0.05 or only be quantified in NF-PitNETs/controls). These acetylated proteins widely functioned in cellular biological processes and signaling pathways, including metabolism, translation, cell adhesion, and oxidative stress. The randomly selected acetylated phosphoglycerate kinase 1 (PGK1), which is involved in glycolysis and amino acid biosynthesis, was further confirmed with immunoprecipitation and western blot in NF-PitNETs and control pituitaries. Among these acetylated proteins, 15 lysine residues within 14 proteins were down-acetylated and simultaneously up-ubiquitinated in NF-PitNETs to demonstrate a direct competition relationship between acetylation and ubiquitination. Moreover, the potential effect of protein acetylation alterations on NF-PitNETs invasiveness was investigated. Overlapping analysis between acetylomics data in NF-PitNETs and transcriptomics data in invasive NF-PitNETs identified 26 overlapped molecules. These overlapped molecules were mainly involved in metabolism-associated pathways, which means that acetylation-mediated metabolic reprogramming might be the molecular mechanism to affect NF-PitNET invasiveness. This study provided the first acetylomic profiling and acetylation-mediated molecular pathways in human NF-PitNETs, and offered new clues to elucidate the biological functions of protein acetylation in NF-PitNETs and discover novel biomarkers for early diagnosis and targeted therapy of NF-PitNETs.
Insights
This study reveals altered protein acetylation in nonfunctional pituitary neuroendocrine tumors (NF-PitNETs), highlighting potential roles in tumor invasiveness and offering new diagnostic and therapeutic targets.
Area of Science:
- Biochemistry
- Oncology
- Proteomics
Background:
- Protein acetylation is crucial for cellular processes, including tumorigenesis.
- Nonfunctional pituitary neuroendocrine tumors (NF-PitNETs) require further molecular characterization.
Purpose of the Study:
- To investigate protein acetylation alterations in human NF-PitNETs.
- To identify acetylation-mediated molecular pathways involved in NF-PitNET development and invasiveness.
Main Methods:
- Label-free quantitative proteomics using anti-acetyl antibody to analyze acetylomes.
- Immunoprecipitation and western blot for specific protein validation.
- Integrative analysis of acetylomics and transcriptomics data.
Main Results:
- Identified 296 acetylated proteins and 517 acetylation sites, with most down-acetylated in NF-PitNETs.
- Observed competition between acetylation and ubiquitination for specific lysine residues.
- Linked acetylation-mediated metabolic reprogramming to NF-PitNET invasiveness via overlapping molecular analysis.
Conclusions:
- This is the first acetylomic profiling of human NF-PitNETs.
- Altered protein acetylation impacts cellular pathways and potentially NF-PitNET invasiveness.
- Findings provide insights for novel biomarkers and targeted therapies for NF-PitNETs.
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