首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Pan-neurotrophin 1: a genetically engineered neurotrophic factor displaying multiple specificities in peripheral neurons in vitro and in vivo.
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Pan-neurotrophin 1: a genetically engineered neurotrophic factor displaying multiple specificities in peripheral neurons in vitro and in vivo.

机译:泛神经营养蛋白1:一种基因工程化的神经营养因子,在体外和体内均在外周神经元中表现出多种特异性。

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Pan-neurotrophin 1 (PNT-1) is a synthetic trophic factor engineered by combining active domains of the neurotrophins nerve growth factor (NGF), brain-derived neurotrophic factor (BDNF), and neurotrophin 3 (NT-3) into an NT-3 backbone. This molecule was produced in transiently transfected COS cells or in baculovirus-infected insect cells transfected COS cells or in baculovirus-infected insect cells and subsequently purified to homogeneity. Saturation binding in embryonic spinal sensory neurons demonstrated a greater number of high-affinity binding sites for PNT-1 than for its parental molecule NT-3. PNT-1 was shown to efficiently block the chemical crosslinking of NGF, BDNF, and NT-3 to their cognate Trk receptors and to the low-affintiy NGF receptor expressed on neuronal and nonneuronal cells. PNT-1 stimulated survival and proliferation of MG87 fibroblasts expressing either TrkA, TrkB, or TrkC. PNT-1 also promoted survival of a greater number of embryonic dorsal root ganglion neurons than any of the other neurotrophins alone, and its effects were equivalent to a combination of NGF, BDNF, and NT-3. Analysis of receptor-specific neurotrophic activities demonstrated that PNT-1 efficiently rescued TrkA mRNA-containing sympathetic neurons and TrkB and TrkC mRNA-containing sensory neurons from the dorsal root and nodose ganglia. Finally, PNT-1 showed robust retrograde transport to DRG neurons in vivo after injection into the sciatic nerve. Radiolabeled PNT-1 accumulated in small-, medium-, and large-sized neurons. Coinjection with different unlabeled neurotrophins inhibited PNT-1 transport in distinct subpopulations of neurons of different sizes, suggesting that this molecule affects sensory neurons of different modalities. These results indicate that PNT-1 is a potent and multispecific neurotrophic factor that may be useful in the treatment of peripheral neurophathies and nerve damage.
机译:泛神经营养蛋白1(PNT-1)是通过将神经营养蛋白神经生长因子(NGF),脑源性神经营养因子(BDNF)和神经营养蛋白3(NT-3)的活性域结合到NT- 3个骨干。该分子在瞬时转染的COS细胞中或在杆状病毒感染的昆虫细胞中转染的COS细胞中或在杆状病毒感染的昆虫细胞中产生,然后纯化至同质。胚胎脊髓感觉神经元中的饱和结合表现出比其亲本分子NT-3更大的PNT-1高亲和力结合位点。 PNT-1已显示可有效阻断NGF,BDNF和NT-3与它们的同源Trk受体以及在神经元和非神经元细胞上表达的低亲和力NGF受体的化学交联。 PNT-1刺激表达TrkA,TrkB或TrkC的MG87成纤维细胞的存活和增殖。与单独使用任何其他神经营养蛋白相比,PNT-1还促进了更多个胚胎背根神经节神经元的存活,其作用相当于NGF,BDNF和NT-3的组合。受体特异性神经营养活动的分析表明,PNT-1有效地从背根和结节神经节中拯救了含有TrkA mRNA的交感神经元以及含有TrkB和TrkC mRNA的感觉神经元。最后,在注射到坐骨神经中后,PNT-1在体内显示出向DRG神经元的强大逆行转运。放射性标记的PNT-1在小,中和大型神经元中积累。与不同的未标记神经营养蛋白的共同注射抑制了不同大小的神经元的不同亚群中的PNT-1转运,表明该分子影响了不同方式的感觉神经元。这些结果表明,PNT-1是一种有效的多特异性神经营养因子,可用于治疗周围神经吞噬和神经损伤。

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