from    
to    
search  

 


第473期“工物学术论坛”:超构表面近远场电磁波前调控方法与应用
学堂班系列讲座:“气相分子和团簇化学键”
清华工业生物催化论坛-真菌多样性与国门生物安全
世纪物理情系列讲座(第27讲):A deep variational free energy approach to dens...
报告题目:
Ribosomal protein-Mdm2-p53 signaling and energy metabolism
 报告人:
Yanping Zhang
Ph.D.
Professor of Department of Radiation Oncology and Lineberger Comprehensive Cancer Center, School of Medicine, the University of North Carolina at Chapel Hill, USA
报告时间:
2011-12-22 16:00
报告地点:
医学院B321
主办单位:
医学院
  简介:

Nutrient restriction is a potent means of extending lifespan and postponing disease, including cancer, in many animal species. However, little is known about the signaling pathways that coordinate the animal response to nutritional restriction and maintain metabolic homeostasis. The p53 tumor suppressor has been shown to regulate energy metabolism through regulation of glucose transport, glycolysis, oxidative phosphorylation, glutamine hydrolysis, fatty acid oxidation, mTOR signaling and autophagy. Despite this, a direct role for p53 in signaling nutritional restriction stress and maintaining metabolic homeostasis has yet to be established, in part due to the absence of model organisms that are suitable to p53 nutrient response analysis. We have recently identified the ribosomal protein (RP)-Mdm2-p53 pathway as an anti-cancer signaling pathway safeguarding oncogenic c-Myc induced superfluous ribosomal biosynthesis. Here we utilize a mouse model containing single point mutation (C305F) in the Mdm2, which results in its impaired binding to ribosomal proteins, to investigate the impact of energy status on both the rates of ribosome biogenesis and p53 function. We show that this mutation, although does not cause phenotypical changes to mice fed a standard diet, has led to a profound inability of mice to respond to dietary restriction. We establish a nutrient stress-response signaling pathway in which ribosomal proteins mediate activation of p53 through their interaction with Mdm2, and postulate how changes in nutrient availability may induce the RP-Mdm2-p53 signaling pathway to modulate p53-dependent metabolic regulation that could ultimately determine disease and survival.

若有意向与报告人交流,烦请与医学院常智杰老师(zhijiec@mail.tsinghu​a.edu.cn)联系。

今日相关信息
科研过程的反思
A different perspective on the quantu...
海德格尔形式现象学的诠释学意义(西方哲学...
 
同类别相关信息
清华大学‘海外名师讲堂’: Electroni...
清华大学艺术博物馆系列学术讲座——“感...
学堂班系列学术报告-《分子医学的基石:...
Fluorophore, Receptor and Linkage o...
Chemical and Enzymatic syntheses of...
学术活动