Takao-Rikitsu Etsuko, Mochida Sumiko, Inoue Eiji, Deguchi-Tawarada Maki, Inoue Marie, Ohtsuka Toshihisa, Takai Yoshimi
KAN Research Institute, Kyoto Research Park, Shimogyo-ku, Kyoto 600-8815, Japan.
J Cell Biol. 2004 Jan 19;164(2):301-11. doi: 10.1083/jcb.200307101.
We have recently isolated a novel cytomatrix at the active zone (CAZ)-associated protein, CAST, and found it directly binds another CAZ protein RIM1 and indirectly binds Munc13-1 through RIM1; RIM1 and Munc13-1 directly bind to each other and are implicated in priming of synaptic vesicles. Here, we show that all the CAZ proteins thus far known form a large molecular complex in the brain, including CAST, RIM1, Munc13-1, Bassoon, and Piccolo. RIM1 and Bassoon directly bind to the COOH terminus and central region of CAST, respectively, forming a ternary complex. Piccolo, which is structurally related to Bassoon, also binds to the Bassoon-binding region of CAST. Moreover, the microinjected RIM1- or Bassoon-binding region of CAST impairs synaptic transmission in cultured superior cervical ganglion neurons. Furthermore, the CAST-binding domain of RIM1 or Bassoon also impairs synaptic transmission in the cultured neurons. These results indicate that CAST serves as a key component of the CAZ structure and is involved in neurotransmitter release by binding these CAZ proteins.
我们最近分离出一种新的活性区细胞基质(CAZ)相关蛋白CAST,并发现它直接结合另一种CAZ蛋白RIM1,并通过RIM1间接结合Munc13-1;RIM1和Munc13-1直接相互结合,并与突触小泡的引发有关。在此,我们表明,迄今为止已知的所有CAZ蛋白在大脑中形成一个大分子复合物,包括CAST、RIM1、Munc13-1、巴松管蛋白和短笛蛋白。RIM1和巴松管蛋白分别直接结合CAST的COOH末端和中央区域,形成三元复合物。与巴松管蛋白结构相关的短笛蛋白也结合CAST的巴松管蛋白结合区域。此外,微量注射的CAST的RIM1或巴松管蛋白结合区域会损害培养的颈上神经节神经元的突触传递。此外,RIM1或巴松管蛋白的CAST结合结构域也会损害培养神经元中的突触传递。这些结果表明,CAST作为CAZ结构的关键成分,通过结合这些CAZ蛋白参与神经递质释放。