Yamauchi Takashi
Department of Biochemistry, Graduate School of Pharmaceutical Sciences, University of Tokushima, Shomachi 1, Tokushima 770-8585, Japan.
Biol Pharm Bull. 2005 Aug;28(8):1342-54. doi: 10.1248/bpb.28.1342.
Much has been learned about the activity-dependent synaptic modifications that are thought to underlie memory storage, but the mechanism by which these modifications are stored remains unclear. A good candidate for the storage mechanism is Ca2+/calmodulin-dependent protein kinase II (CaM kinase II). CaM kinase II is one of the most prominent protein kinases, present in essentially every tissue but most concentrated in brain. Although it has been about a quarter of a century since the finding, CaM kinase II has been of the major interest in the region of brain science. It plays a multifunctional role in many intracellular events, and the expression of the enzyme is carefully regulated in brain regions and during brain development. Neuronal CaM kinase II regulates important neuronal functions, including neurotransmitter synthesis, neurotransmitter release, modulation of ion channel activity, cellular transport, cell morphology and neurite extension, synaptic plasticity, learning and memory, and gene expression. Studies concerning this kinase have provided insight into the molecular basis of nerve functions, especially learning and memory, and indicate one direction for studies in the field of neuroscience. This review presents the molecular structure, properties and functions of CaM kinase II, as a major component of neurons, based mainly developed on findings made in our laboratory.
关于与活动相关的突触修饰,人们已经了解了很多,这些修饰被认为是记忆存储的基础,但这些修饰的存储机制仍不清楚。存储机制的一个很好的候选者是钙/钙调蛋白依赖性蛋白激酶II(CaM激酶II)。CaM激酶II是最突出的蛋白激酶之一,几乎存在于每个组织中,但在大脑中最为集中。尽管自发现以来已有大约四分之一个世纪,但CaM激酶II一直是脑科学领域的主要研究对象。它在许多细胞内事件中发挥多功能作用,并且该酶的表达在脑区和脑发育过程中受到严格调控。神经元CaM激酶II调节重要的神经元功能,包括神经递质合成、神经递质释放、离子通道活性调节、细胞运输、细胞形态和神经突延伸、突触可塑性、学习和记忆以及基因表达。关于这种激酶的研究为神经功能,特别是学习和记忆的分子基础提供了见解,并指出了神经科学领域研究的一个方向。本综述主要基于我们实验室的研究结果,介绍了作为神经元主要成分的CaM激酶II的分子结构、特性和功能。