Corrêa Clynton Lourenço, da Silva Simone Florim, Lowe Jennifer, Tortelote Giovane G, Einicker-Lamas Marcelo, Martinez Ana M Blanco, Allodi Silvana
Departamento de Histologia e Embriologia, Instituto de Ciências Biomédicas, Universidade Federal do Rio de Janeiro, 21941-590, Rio de Janeiro, Brazil.
Cell Tissue Res. 2004 Dec;318(3):609-15. doi: 10.1007/s00441-004-0992-5. Epub 2004 Oct 9.
Neurofilaments (NFs) have not been observed in crustaceans using conventional electron microscopy, and intermediate filaments have never been described in crustaceans and other arthropods by immunocytochemistry. Since polypeptides, labeled by the NN18-clone antibody, were revealed on microtubule side-arms of crayfish, we have tested, in this study, whether proteins similar to mammalian NFs are present in the protocerebral tract (PCT) of the crab Ucides cordatus. We used immunohistochemistry for light microscopy with monoclonal antibodies against three different NF subunits, high (NF-H), medium (NF-M), and light (NF-L). Labeling was observed with the NN18-clone, which recognizes NF-M. In order to confirm the results obtained with the immunohistochemical reactions, Western blotting, using the three primary antibodies, was performed and the presence of NF-M was confirmed. The NN18-clone monoclonal antibody recognized a protein of approximately 160 kDa, similar to the mammalian NF-M protein, but NF-L and NF-H were not recognized. Conventional transmission electron microscopy was used to observe the ultrastructural components of the axons and immunoelectron microscopy was used to show the distribution of the NF-M-like polypeptides along cytoskeletal elements of the PCT. Our results agree with previous studies on crustacean NF proteins that have reported negative immunoreactions against NF-H and NF-L subunits and positive immunoreactions against the mammalian NF-M subunit. However, the protein previously referred to as P600 and recognized by the NN18-clone, has a very high molecular weight, thus, being different from mammalian NF-M subunit and from the protein revealed now in our study.
使用传统电子显微镜在甲壳类动物中未观察到神经丝(NFs),并且通过免疫细胞化学从未在甲壳类动物和其他节肢动物中描述过中间丝。由于用NN18克隆抗体标记的多肽在小龙虾的微管侧臂上被发现,因此在本研究中,我们测试了蟹Ucides cordatus的原脑束(PCT)中是否存在与哺乳动物NFs相似的蛋白质。我们使用针对三种不同NF亚基,即重链(NF-H)、中链(NF-M)和轻链(NF-L)的单克隆抗体进行免疫组织化学光镜检查。使用识别NF-M的NN18克隆观察到了标记。为了证实免疫组织化学反应获得的结果,使用这三种一抗进行了蛋白质印迹,并证实了NF-M的存在。NN18克隆单克隆抗体识别一种约160 kDa的蛋白质,类似于哺乳动物的NF-M蛋白,但未识别出NF-L和NF-H。使用传统透射电子显微镜观察轴突的超微结构成分,并使用免疫电子显微镜显示NF-M样多肽沿PCT细胞骨架成分的分布。我们的结果与先前关于甲壳类动物NF蛋白的研究一致,那些研究报告了对NF-H和NF-L亚基的阴性免疫反应以及对哺乳动物NF-M亚基的阳性免疫反应。然而,先前被称为P600并被NN18克隆识别的蛋白质具有非常高的分子量,因此,与哺乳动物NF-M亚基以及我们研究中现在发现的蛋白质不同。