Zhang Sijie, Manahan-Vaughan Denise
Department of Neurophysiology, Medical Faculty; International Graduate School for Neuroscience, Ruhr University Bochum, Germany.
Hippocampus. 2014 Nov;24(11):1330-40. doi: 10.1002/hipo.22314. Epub 2014 Jun 25.
The metabotropic glutamate (mGlu) receptors are critically involved in enabling the persistency of forms of synaptic plasticity that are believed to underlie hippocampus-dependent memory. These receptors and in particular, mGlu5, are also required for hippocampus-dependent learning and memory. In the hippocampus, synaptic plasticity is one of the mechanisms by which spatial information may be represented. Another mechanism involves increased firing of place cells. Place cells increase their firing activity when an animal is in a specific spatial location. Inhibition of factors that are essential for synaptic plasticity, such as N-methyl-d-aspartate receptors or protein synthesis, also impair place cell activity. This raises the question as to whether mGlu receptors, that are so important for synaptic plasticity and spatial memory, are also important for place cell encoding. We examined location-dependent place cell firing i.e. place fields. We observed that antagonism of mGlu5, using 2-methyl-6-(phenylethynyl) pyridine (MPEP) had no effect on place field profiles in a familiar environment. However, in a novel environment mGlu5-antagonism affected long-term place field stability, reduced place cell firing and spatial information. These data strongly suggest a role for mGlu5 in the mechanisms underlying informational content and long-term stability of place fields, and add to evidence supporting the importance of these receptors for hippocampal function.
代谢型谷氨酸(mGlu)受体在使突触可塑性形式具有持久性方面起着关键作用,而这种突触可塑性被认为是海马体依赖性记忆的基础。这些受体,尤其是mGlu5,对于海马体依赖性学习和记忆也是必需的。在海马体中,突触可塑性是表征空间信息的机制之一。另一种机制涉及位置细胞放电增加。当动物处于特定空间位置时,位置细胞会增加其放电活动。抑制对突触可塑性至关重要的因素,如N-甲基-D-天冬氨酸受体或蛋白质合成,也会损害位置细胞的活动。这就提出了一个问题,即对于突触可塑性和空间记忆如此重要的mGlu受体,对于位置细胞编码是否也很重要。我们研究了位置依赖性位置细胞放电,即位置野。我们观察到,使用2-甲基-6-(苯乙炔基)吡啶(MPEP)拮抗mGlu5对熟悉环境中的位置野轮廓没有影响。然而,在新环境中,mGlu5拮抗作用影响了位置野的长期稳定性,降低了位置细胞放电和空间信息。这些数据有力地表明mGlu5在位置野信息内容和长期稳定性潜在机制中发挥作用,并进一步证明了这些受体对海马体功能的重要性。