Kobayashi Shizuka, Hida Yamato, Ishizaki Hiroyoshi, Inoue Eiji, Tanaka-Okamoto Miki, Yamasaki Miwako, Miyazaki Taisuke, Fukaya Masahiro, Kitajima Isao, Takai Yoshimi, Watanabe Masahiko, Ohtsuka Toshihisa, Manabe Toshiya
Division of Neuronal Network, Department of Basic Medical Sciences, Institute of Medical Science, University of Tokyo, Tokyo, 108-8639, Japan.
Department of Biochemistry, University of Yamanashi, Chuo, 409-3898, Japan.
Eur J Neurosci. 2016 Sep;44(5):2272-84. doi: 10.1111/ejn.13331. Epub 2016 Aug 18.
Synaptic efficacy is determined by various factors, including the quantal size, which is dependent on the amount of neurotransmitters in synaptic vesicles at the presynaptic terminal. It is essential for stable synaptic transmission that the quantal size is kept within a constant range and that synaptic efficacy during and after repetitive synaptic activation is maintained by replenishing release sites with synaptic vesicles. However, the mechanisms for these fundamental properties have still been undetermined. We found that the active zone protein CAST (cytomatrix at the active zone structural protein) played pivotal roles in both presynaptic regulation of quantal size and recycling of endocytosed synaptic vesicles. In the CA1 region of hippocampal slices of the CAST knockout mice, miniature excitatory synaptic responses were increased in size, and synaptic depression after prolonged synaptic activation was larger, which was attributable to selective impairment of synaptic vesicle trafficking via the endosome in the presynaptic terminal likely mediated by Rab6. Therefore, CAST serves as a key molecule that regulates dynamics and neurotransmitter contents of synaptic vesicles in the excitatory presynaptic terminal in the central nervous system.
突触效能由多种因素决定,包括量子大小,而量子大小取决于突触前终末突触小泡中神经递质的含量。量子大小保持在恒定范围内,且在重复突触激活期间及之后,通过用突触小泡补充释放位点来维持突触效能,这对于稳定的突触传递至关重要。然而,这些基本特性的机制仍未确定。我们发现,活性区蛋白CAST(活性区细胞基质结构蛋白)在突触前对量子大小的调节以及内吞的突触小泡的循环利用中都起着关键作用。在CAST基因敲除小鼠海马切片的CA1区,微小兴奋性突触反应的大小增加,长时间突触激活后的突触抑制更大,这可能是由于Rab6介导的突触前终末内通过内体的突触小泡运输选择性受损所致。因此,CAST是调节中枢神经系统兴奋性突触前终末突触小泡动力学和神经递质含量的关键分子。