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Construction of hybrid proteins that migrate retrogradely and transynaptically into the central nervous system

机译:构建逆向和突触转移到中枢神经系统的杂合蛋白

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摘要

The nontoxic proteolytic C fragment of tetanus toxin (TTC peptide) has the same ability to bind nerve cells and be retrogradely transported through a synapse as the native toxin. We have investigated its potential use as an in vivo neurotropic carrier. In this work we show that a hybrid protein encoded by the lacZ–TTC gene fusion retains the biological functions of both proteins in vivo—i.e., retrograde transynaptic transport of the TTC fragment and β-galactosidase enzymatic activity. After intramuscular injection, enzymatic activity could be detected in motoneurons and connected neurons of the brainstem areas. This strategy could be used to deliver a biological activity to neurons from the periphery to the central nervous system. Such a hybrid protein could also be used to map synaptic connections between neural cells.
机译:破伤风毒素(TTC肽)的无毒蛋白水解C片段具有与神经毒素相同的结合神经细胞并通过突触逆行转运的能力。我们已经研究了其作为体内神经营养载体的潜在用途。在这项工作中,我们证明了由lacZ-TTC基因融合体编码的杂合蛋白在体内保留了这两种蛋白的生物学功能,即TTC片段的逆向突触转运和β-半乳糖苷酶的酶活性。肌肉注射后,可以在运动神经元和脑干区域的连接神经元中检测到酶活性。该策略可用于从周围到中枢神经系统向神经元传递生物活性。这种杂合蛋白也可用于定位神经细胞之间的突触连接。

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