首页> 外文期刊>Journal of Anatomy >The neurofilament antibody RT97 recognises a developmentally regulated phosphorylation epitope on microtubule-associated protein 1B.
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The neurofilament antibody RT97 recognises a developmentally regulated phosphorylation epitope on microtubule-associated protein 1B.

机译:神经丝抗体RT97识别出在微管相关蛋白质1B上的发育调节磷酸化表位。

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Microtubules are important for the growth and maintenance of stable neuronal processes and their organisation is controlled partly by microtubule-associated proteins (MAPs). MAP 1B is the first MAP to be expressed in neurons and plays an important role in neurite outgrowth. MAP 1B is phosphorylated at multiple sites and it is believed that the function of the protein is regulated by its phosphorylation state. We have shown that the monoclonal antibody (mAb) RT97, which recognises phosphorylated epitopes on neurofilament proteins, fetal tau, and on Alzheimer's paired helical filament-tau, also recognises a developmentally regulated phosphorylation epitope on MAP 1B. In the rat cerebellum, Western blot analysis shows that mAb RT97 recognises the upper band of the MAP 1B doublet and that the amount of this epitope peaks very early postnatally and decreases with increasing age so that it is absent in the adult, despite the continued expression of MAP 1B in the adult. We confirmed that mAb RT97 binds to MAP1B by showing that it recognises MAP 1B immunoprecipitated from postnatal rat cerebellum using polyclonal antibodies to recombinant MAP 1B proteins. We established that the RT97 epitope on MAP 1B is phosphorylated by showing that antibody binding was abolished by alkaline phosphatase treatment of immunoblots. Epitope mapping experiments suggest that the mAb RT97 site on MAP 1B is near the N-terminus of the molecule. Despite our immunoblotting data, immunostaining of sections of postnatal rat cerebellum with mAb RT97 shows a staining pattern typical of neurofilaments with no apparent staining of MAP 1B. For instance, basket cell axons and axons in the granule cell layer and white matter stained, whereas parallel fibres did not. These results suggest that the MAP 1B epitope is masked or lost under the immunocytochemical conditions in which the cerebellar sections are prepared. The upper band of the MAP 1B doublet is believed to be predominantly phosphorylated by proline-directed protein kinases (PDPKs). PDPKs are also good candidates for phosphorylating neurofilament proteins and tau and therefore we postulate that the sites recognised by RT97 on these neuronal cytoskeletal proteins may be phosphorylated by similar kinases. Important goals are to determine the precise location of the RT97 epitope on MAP 1B and the kinase responsible.
机译:微管对稳定神经元过程的生长和维持很重要,并且它们的组织部分地由微管相关蛋白(地图)控制。地图1B是第一个在神经元表达的地图,在神经突上发挥重要作用。 MAP 1B在多个位点磷酸化,据信蛋白质的功能由其磷酸化状态调节。我们已经表明,单克隆抗体(MAB)RT97识别出神经膜蛋白,胎儿TAU和Alzheimer成对的螺旋丝丝的磷酸化表位,也识别在地图1B上的发育调节磷酸化表位。在大鼠小脑中,Western印迹分析表明,MAB RT97识别地图1B双峰的上部带,并且这种表位峰的峰值在后期早期峰值和随着年龄的增加而降低,因此尽管存在持续的表达,但是在成年人中不存在于成年人中地图1b在成年人中。我们证实MABRT97通过表明它识别使用多克隆抗体对重组图1B蛋白的从产后大鼠小脑免疫沉淀的MAP 1B免疫沉淀的MAP 1B。我们确定地图1B上的RT97表位通过表明通过对免疫印迹的碱性磷酸酶治疗废除抗体结合而磷酸化。表位映射实验表明MAP 1B上的MAB RT97位点在分子的N-末端附近。尽管我们的免疫印迹数据,但具有MAB RT97的产后大鼠小脑细胞部分的免疫染色显示了神经细胞典型的染色模式,没有明显染色的图1B。例如,颗粒细胞层和白质染色的篮子单元轴突和轴突,而平行纤维没有。这些结果表明,在制备小脑切片的免疫细胞化学条件下掩盖或丢失地图1B表位。据信地图1b双峰的上部带主要由脯氨酸定向的蛋白激酶(Pdpks)磷酸化。 PDPKS也是磷酸化神经膜蛋白和TAU的良好候选者,因此我们假设在这些神经元细胞骨架蛋白上识别的位点可以通过类似的激酶磷酸化。重要的目标是确定RT97表位在地图1B和激酶负责的rT97表位的精确位置。

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