首页> 外文期刊>Current Biology: CB >Lack of DREAM protein enhances learning and memory and slows brain aging
【24h】

Lack of DREAM protein enhances learning and memory and slows brain aging

机译:缺乏DREAM蛋白可增强学习和记忆能力,并减缓大脑衰老

获取原文
获取原文并翻译 | 示例
           

摘要

Memory deficits in aging affect millions of people and are often disturbing to those concerned. Dissection of the molecular control of learning and memory is paramount to understand and possibly enhance cognitive functions. Old-age memory loss also has been recently linked to altered Ca(2+) homeostasis. We have previously identified DREAM (downstream regulatory element antagonistic modulator), a member of the neuronal Ca(2+) sensor superfamily of EF-hand proteins, with specific roles in different cell compartments. In the nucleus, DREAM is a Ca(2+)-dependent transcriptional repressor, binding to specific DNA signatures, or interacting with nucleoproteins regulating their transcriptional properties. Also, we and others have shown that dream mutant (dream(-/-)) mice exhibit marked analgesia. Here we report that dream(-/-) mice exhibit markedly enhanced learning and synaptic plasticity related to improved cognition. Mechanistically, DREAM functions as a negative regulator of the key memory factor CREB in a Ca(2+)-dependent manner, and loss of DREAM facilitates CREB-dependent transcription during learning. Intriguingly, 18-month-old dream(-/-) mice display learning and memory capacities similar to young mice. Moreover, loss of DREAM protects from brain degeneration in aging. These data identify the Ca(2+)-regulated "pain gene" DREAM as a novel key regulator of memory and brain aging.
机译:衰老中的记忆力不足影响数以百万计的人,并经常使有关人员感到不安。解剖学习和记忆的分子控制对于理解并可能增强认知功能至关重要。老年记忆丧失最近也与改变的Ca(2+)稳态有关。我们之前已经确定了DREAM(下游调节元件拮抗调节剂),EF手蛋白的神经元Ca(2+)传感器超家族的成员,在不同的细胞区室中具有特定作用。在细胞核中,DREAM是Ca(2+)依赖的转录阻遏物,与特定的DNA签名结合,或与调节其转录特性的核蛋白相互作用。此外,我们和其他人已经表明,梦突变(dream(-/-))小鼠表现出明显的镇痛作用。在这里我们报告说梦(-/-)小鼠表现出明显提高的学习和与改善的认知有关的突触可塑性。从机理上讲,DREAM以Ca(2+)依赖的方式充当关键记忆因子CREB的负调节剂,而DREAM的丢失则有助于学习过程中依赖CREB的转录。有趣的是,18个月大的dream(-/-)小鼠显示出与年轻小鼠相似的学习和记忆能力。此外,DREAM的丧失可防止衰老引起的脑退化。这些数据确定了Ca(2+)调控的“疼痛基因” DREAM是记忆和大脑衰老的新型关键调控因子。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号