from    
to    
search  

 


学堂班系列讲座:“Towards Energy Efficient Information Processing withIntelli...
Sculpting quantum phases of matter with measurements
吉林大学化学学院-清华大学化学系双边学术研讨会(2024)
纳米结构工程与纳米压印
报告题目:
CISD2 Mediates Life Span in Mammals
 报告人:
Ting-Fen Tsai, Ph.D. 蔡亭芬 教授
Professor & Director 
Department of Life Sciences and Institute of Genome Sciences, National Yang-Ming University , Taiwan
报告时间:
2014-09-01 14:00
报告地点:
Room 143, New Biology Building (新馆143)
主办单位:
生命科学学院
  简介:
Abstract
The CISD2 gene, which is an evolutionarily conserved novel gene, encodes a transmembrane protein primarily associated with the mitochondrial outer membrane. Human CISD2 gene has been identified as the second causative gene associated with Wolfram syndrome (WFS; MIM 222300), which is an autosomal recessive neuro-degenerative disorder with premature death. WFS is highly variable in its clinical manifestations, which include Diabetes Insipidus, Diabetes Mellitus, Optic Atrophy, and Deafness; thus, it is also known as the DIDMOAD syndrome. Importantly, the CISD2 gene is located within the candidate region on chromosome 4q where a genetic component for human longevity has been mapped. Previously we have shown that mouse Cisd2 deficiency shortens lifespan resulting in premature aging. Additionally, an age-dependent decrease in mouse Cisd2 expression has been detected during normal aging. Recently, we demonstrated that a persistent level of Cisd2 achieved by transgenic expression in mice extends their median and maximum lifespan without any apparent deleterious side effects. Cisd2 also ameliorates age-associated degeneration of the skin, skeletal muscles and neurons. Moreover, Cisd2 protects mitochondria from age-associated damage and functional decline as well as attenuating the age-associated reduction in whole-body energy metabolism. These results suggest that Cisd2 is a fundamentally important regulator of lifespan, and provide an experimental basis for exploring the candidacy of CISD2 in human longevity. Furthermore, any development of a therapy involving the CISD2 and anti-aging will, of course, directly benefit WFS2 sufferers too. Finally, I will discuss the molecular mechanism and recent findings for the regulatory roles of CISD2 in mammalian lifespan control.
今日相关信息
Entanglement spectra in topological p...
“中国主要城市居住用地价格指数”发布会暨...
Energy Positioning: Control and Econo...
 
同类别相关信息
学堂班系列讲座:“生物合成高性能融合及...
AIR学术沙龙第2期|人工智能赋能个体化...
现代数学报告:New Piece of Mathemat...
学堂班系列讲座:“活细胞上的化学”
Population extinction and growth on...
学术活动