*Biocenter, Division of Neurobiochemistry, Innsbruck Medical University, 6020 Innsbruck, Austria.
Biochem J. 2013 Oct 15;455(2):217-27. doi: 10.1042/BJ20130579.
Nogo-A is the largest isoform of the Nogo/RTN4 (reticulon 4) proteins and has been characterized as a major myelin-associated inhibitor of regenerative nerve growth in the adult CNS (central nervous system). Apart from the myelin sheath, Nogo-A is expressed at high levels in principal neurons of the CNS. The specificity of Nogo-A resides in its central domain, NiG. We identified Apg-1, a member of the stress-induced Hsp110 (heat-shock protein of 110 kDa) family, as a novel interactor of NiG/Nogo-A. The interaction is selective because Apg-1 interacts with Nogo-A/RTN4-A, but not with RTN1-A, the closest paralogue of Nogo-A. Conversely, Nogo-A binds to Apg-1, but not to Apg-2 or Hsp105, two other members of the Hsp110 family. We characterized the Nogo-A-Apg-1 interaction by affinity precipitation, co-immunoprecipitation and proximity ligation assay, using primary hippocampal neurons derived from Nogo-deficient mice. Under conditions of hypoxic and oxidative stress we found that Nogo-A and Apg-1 were tightly co-regulated in hippocampal neurons. Although both proteins were up-regulated under hypoxic conditions, their expression levels were reduced upon the addition of hydrogen peroxide. Taken together, we suggest that Nogo-A is closely involved in the neuronal response to hypoxic and oxidative stress, an observation that may be of relevance not only in stroke-induced ischaemia, but also in neuroblastoma formation.
Nogo-A 是 Nogo/RTN4(网复蛋白 4)蛋白中最大的同种型,已被鉴定为成年中枢神经系统(CNS)中再生神经生长的主要髓鞘相关抑制剂。除了髓鞘外,Nogo-A 在 CNS 的主要神经元中高水平表达。Nogo-A 的特异性在于其中心结构域 NiG。我们鉴定出 Apg-1 是应激诱导的 Hsp110(110 kDa 热休克蛋白)家族的成员,是 NiG/Nogo-A 的一种新型相互作用蛋白。这种相互作用是选择性的,因为 Apg-1 与 Nogo-A/RTN4-A 相互作用,但与 Nogo-A 的最接近的旁系同源物 RTN1-A 不相互作用。相反,Nogo-A 与 Apg-1 结合,但不与 Apg-2 或 Hsp105 结合,Apg-2 或 Hsp105 是 Hsp110 家族的另外两个成员。我们使用源自 Nogo 缺失小鼠的原代海马神经元通过亲和沉淀、共免疫沉淀和接近连接测定来表征 Nogo-A-Apg-1 相互作用。在缺氧和氧化应激条件下,我们发现 Nogo-A 和 Apg-1 在海马神经元中紧密共调控。尽管在缺氧条件下两种蛋白都上调,但在添加过氧化氢后其表达水平降低。总之,我们认为 Nogo-A 密切参与神经元对缺氧和氧化应激的反应,这一观察结果不仅与中风引起的缺血有关,而且与神经母细胞瘤的形成有关。