Roles of protein post-translational modifications in glucose and lipid metabolism: mechanisms and perspectives

YH Yang, R Wen, N Yang, TN Zhang, CF Liu - Molecular medicine, 2023 - Springer
The metabolism of glucose and lipids is essential for energy production in the body, and
dysregulation of the metabolic pathways of these molecules is implicated in various acute …

[HTML][HTML] New advances of adiponectin in regulating obesity and related metabolic syndromes

Y Han, Q Sun, W Chen, Y Gao, J Ye, Y Chen… - Journal of …, 2024 - Elsevier
Obesity and related metabolic syndromes have been recognized as important disease risks,
in which the role of adipokines cannot be ignored. Adiponectin (ADP) is one of the key …

A glimpse of the connection between PPARγ and macrophage

L Yu, Y Gao, N Aaron, L Qiang - Frontiers in Pharmacology, 2023 - frontiersin.org
Nuclear receptors are ligand-regulated transcription factors that regulate vast cellular
activities and serve as an important class of drug targets. Among them, peroxisome …

[HTML][HTML] Acetylation in pathogenesis: Revealing emerging mechanisms and therapeutic prospects

N Jiang, W Li, S Jiang, M Xie, R Liu - Biomedicine & Pharmacotherapy, 2023 - Elsevier
Protein acetylation modifications play a central and pivotal role in a myriad of biological
processes, spanning cellular metabolism, proliferation, differentiation, apoptosis, and …

PPARγ in Atherosclerotic Endothelial Dysfunction: Regulatory Compounds and PTMs

J Luan, X Ji, L Liu - International Journal of Molecular Sciences, 2023 - mdpi.com
The formation of atherosclerotic plaques is one of the main sources of cardiovascular
disease. In addition to known risk factors such as dyslipidemia, diabetes, obesity, and …

PPARγ acetylation in adipocytes exacerbates BAT whitening and worsens age-associated metabolic dysfunction

Y He, R Zhang, L Yu, T Zahr, X Li, TW Kim, L Qiang - Cells, 2023 - mdpi.com
Aging and obesity are the two prominent driving forces of metabolic dysfunction, yet the
common underlying mechanisms remain elusive. PPARγ, a central metabolic regulator and …

[HTML][HTML] Adipose Tissue Plasticity: A Comprehensive Definition and Multidimensional Insight

YY Mo, YX Han, SN Xu, HL Jiang, HX Wu, JM Cai, L Li… - Biomolecules, 2024 - mdpi.com
Adipose tissue is composed of adipocytes, stromal vascular fraction, nerves, surrounding
immune cells, and the extracellular matrix. Under various physiological or pathological …

Role of complement factor D in cardiovascular and metabolic diseases

Y Kong, N Wang, Z Tong, D Wang, P Wang… - Frontiers in …, 2024 - frontiersin.org
In the genesis and progression of cardiovascular and metabolic diseases (CVMDs), adipose
tissue plays a pivotal and dual role. Complement factor D (CFD, also known as adipsin) …

Ketone bodies promote epididymal white adipose expansion to alleviate liver steatosis in response to a ketogenic diet

MF Zhao, XG Zhang, YP Tang, YX Zhu, HY Nie… - Journal of Biological …, 2024 - ASBMB
Liver can sense the nutrient status and send signals to other organs to regulate overall
metabolic homoeostasis. Herein, we demonstrate that ketone bodies act as signals released …

Menin orchestrates hepatic glucose and fatty acid uptake via deploying the cellular translocation of SIRT1 and PPARγ

T Liu, R Li, L Sun, Z Xu, S Wang, J Zhou, X Wu, K Shi - Cell & Bioscience, 2023 - Springer
Background Menin is a scaffold protein encoded by the Men1 gene, which interacts with
various transcriptional proteins to activate or repress cellular processes and is a key …