AG百家乐大转轮-AG百家乐导航_怎么看百家乐走势_全讯网官网 (中国)·官方网站

Research News

Professor Nu Zhang’s team reported that uORF of PTEN could encodes a circuit breaker of lactate metabolism

Share
  • Updated: Jan 18, 2021
  • Written:
  • Edited:
Source: The First Affiliated Hospital
Edited by: Tan Rongyu, Wang Dongmei

From the perspective of metabolism, tumor cells of GBM could be divided to quiescent cells and rapidly proliferating cells. To date, quiescent GBM cells with stemness property are considered the primary reason for GBM tumorigenesis, therapeutic resistance and recurrence. Although there are no available therapeutic strategies that target these slow-cycling GBM cells, their distinct biological features have drawn attention. Among the prominent differences, proliferative tumor cells prefer aerobic glycolysis (the Warburg effect), whereas slow-cycling cancer cells utilize OXPHOS as the primary energy source. Recent in vivo studies indicated that lactate is preferred to glucose as the primary energy source for the TCA cycle in tumors, suggesting a symbiosis between glycolytic tumor cells and lactate-addicted tumor cells. However, the specific molecular mechanism is still unclear.

Recently, Professor Nu Zhang's team in the department of neurosurgery of the First Affiliated Hospital of Sun Yat-sen University performed ribosome profiling of 10 GBM specimens and paired normal brain tissues (NBs) adjacent to tumors and found a 31aa uORF, located at the 5`UTR of PTEN, with significantly low expression in glioma samples, named MP31. MP31 is a mitochondrial located micropeptide and can act as a ‘circuit breaker’ that limits lactate-pyruvate conversion in mitochondria by competing with mitochondrial lactate dehydrogenase (mLDH) for nicotinamide adenine dinucleotide (NAD+). Knocking out the MP31 homolog in mice enhanced global lactate metabolism, manifesting as accelerated oxidative phosphorylation (OXPHOS) and increased lactate consumption and production. Conditional knockout (cKO) of MP31 homolog in mouse astrocytes initiated gliomagenesis and shortened the overall survival of the animals, establishing a tumor-suppressing role for MP31. Recombinant MP31 administered intraperitoneally penetrated the blood–brain barrier and inhibited mice GBM xenografts without neurological toxicity, suggesting the clinical implication and application of this micropeptide. These findings reveal a novel mode of MP31-orchestrated lactate metabolism reprogramming in glioblastoma.


Figure 1 MP31 regulates lactate metabolism
 
The research results have been published in Cell Metabolism (IF=21.567), entitled “An Upstream Open Reading Frame in Phosphatase and Tensin Homolog (PTEN) Encodes A Circuit Breaker of Lactate Metabolism”. The First Affiliated Hospital of Sun Yat-sen University is the unit of the first author and the only corresponding author. The first authors are: Nunu Huang, Fanying Li, Maolei Zhang and Huangkai Zhou. The only corresponding author is Professor Nu Zhang. This paper is finished on the experimental platform of Institute of Precision Medicine the First Affiliated Hospital of Sun Yat-sen University.

This work was supported by the National Natural Science Outstanding Youth Foundation of China, the National Key Research and Development Program of China and the National Natural Science Foundation of China.

Link to the paper: https://www.cell.com/cell-metabolism/fulltext/S1550-4131(20)30663-X?dgcid=raven_jbs_etoc_email
TOP
金龍百家乐的玩法技巧和规则| 索罗门百家乐的玩法技巧和规则| 黄金城百家乐官网手机版| 大发888大家赢娱乐| 百家乐牌壳| 百家乐官网赌场现金网| 大发888博彩网站xa11| 千亿百家乐官网的玩法技巧和规则| 网络棋牌游戏排行榜| 博久百家乐论坛| 网上百家乐赢钱公式| 百家乐官网的如何玩| 百家乐国际赌场娱乐网规则| 百家乐官网投注外挂| 太阳城的故事| 女优百家乐官网的玩法技巧和规则 | 百家乐软件编辑原理| 顶尖百家乐官网开户| 全讯网abckkk.com| 帝王百家乐新足球平台| 有百家乐官网的棋牌游戏| 大发888游戏是真的么| 百家乐如何投注技巧| 百家乐官网7杀6| 利记现金| 百家乐游戏卡通| 全景网百家乐官网的玩法技巧和规则| 封丘县| 威尼斯人娱乐城注册| 百家乐登封代理| 百家乐官网现金网信誉排名| 博彩网址大全| 百家乐龙虎台布价格| 百家乐路的看法| 澳门百家乐官网网上娱乐场开户注册| 百家乐官网有没有绝| 德州扑克底牌| 威尼斯人娱乐场官网h00| 澳门百家乐网40125| 百家乐双龙| 百家乐游戏下载|