Shiomura Y, Hirokawa N
J Cell Biol. 1987 Jun;104(6):1575-8. doi: 10.1083/jcb.104.6.1575.
Microtubule-associated protein 1A (MAP1A) and microtubule-associated protein 2 (MAP2) were shown to be colocalized on the same microtubules (MTs) within neuronal cytoskeletons by double-label immunoelectron microscopy. To investigate the electron microscopic disposition of MAP1A and MAP2 and their relationship to MTs in vivo, and to determine whether there are different subsets of MTs which specifically bind either MAP1 or MAP2, we employed a double-label immunogold procedure on rat cerebella using mouse monoclonal antibody against rat brain MAP1A and affinity-purified rabbit polyclonal antibody against rat brain MAP2. MAP1A and MAP2 were identified with secondary antibodies coupled to 10- and 5-nm gold particles, respectively. In Purkinje cell dendrites, both 10- and 5-nm gold particles were observed to be studded on the fuzzy structures attached to the same MTs. Many such structures connected MTs to each other. There was no particular MT which bound either MAP1A or MAP2 alone. Furthermore, there seemed to be no specific regions on MTs where either MAP1A or MAP2 was specifically attached. Hence, we conclude that MAP1A and MAP2 are colocalized on MTs in dendrites and assume that MAP1A and MAP2 have some interrelationship in vivo and that their interactions are responsible for forming the network of cross-bridges between MTs and MTs in neuronal cytoskeletons.
通过双标记免疫电子显微镜观察发现,微管相关蛋白1A(MAP1A)和微管相关蛋白2(MAP2)在神经元细胞骨架内的同一微管上共定位。为了研究MAP1A和MAP2在体内的电子显微镜分布情况以及它们与微管的关系,并确定是否存在特异性结合MAP1或MAP2的不同微管亚群,我们使用针对大鼠脑MAP1A的小鼠单克隆抗体和针对大鼠脑MAP2的亲和纯化兔多克隆抗体,对大鼠小脑进行了双标记免疫金法实验。分别用与10纳米和5纳米金颗粒偶联的二抗来识别MAP1A和MAP2。在浦肯野细胞树突中,观察到10纳米和5纳米的金颗粒都散布在附着于同一微管的模糊结构上。许多这样的结构将微管相互连接。没有单独结合MAP1A或MAP2的特定微管。此外,微管上似乎也没有MAP1A或MAP2特异性附着的特定区域。因此,我们得出结论,MAP1A和MAP2在树突中的微管上共定位,并推测MAP1A和MAP2在体内存在某种相互关系,且它们的相互作用负责形成神经元细胞骨架中微管与微管之间的交叉桥网络。