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首页> 外文期刊>Neuroscience Letters: An International Multidisciplinary Journal Devoted to the Rapid Publication of Basic Research in the Brain Sciences >A TAT-modified fusion protein efficiently penetrates mouse hypoglossal nuclei from transduced ependyma.
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A TAT-modified fusion protein efficiently penetrates mouse hypoglossal nuclei from transduced ependyma.

机译:TAT修饰的融合蛋白可有效地从转导的室管膜透入小鼠舌下核。

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Future gene therapy for brainstem variant amyotrophic lateral sclerosis may be technically difficult if gene therapy vectors are injected near vital cardiorespiratory centers or if large portions of the tongue and pharyngeal muscles must be peripherally injected for retrograde transport of vectors to motor neurons. In this study we show that it is possible to deliver recombinant proteins to the hypoglossal nuclei without brainstem or muscle injections, by taking advantage of enhanced uptake of fusion proteins containing the protein transduction domain from the human immunodeficiency virus TAT protein. Adenoviral vectors expressing either TAT-modified or native beta-glucuronidase (beta-gluc) were injected into the lateral cerebral ventricles of mice, transducing ventricular epithelium down to the level of the obex in the brainstem. There was significant uptake into the hypoglossal nuclei of TAT-modified but not native beta-glucuronidase. The TAT-modified beta-gluc appeared to encompass half or more of the hypoglossal nuclei as visualized by retrograde labeling with cholera toxin subunit b in adjacent sections. TAT-modification of gene products may allow a relatively non-invasive approach to brainstem gene therapy via cerebroventricular injection.
机译:如果将基因治疗载体注射到重要的心肺中心附近,或者如果必须向周围注射大部分舌和咽肌以将载体逆行运输到运动神经元,那么将来脑干变异型肌萎缩性侧索硬化的未来基因治疗可能在技术上会很困难。在这项研究中,我们表明通过利用人类免疫缺陷病毒TAT蛋白中包含蛋白转导域的融合蛋白的增强摄取,可以将重组蛋白递送到舌下核而无需脑干或肌肉注射。将表达TAT修饰或天然β-葡糖醛酸糖苷酶(β-gluc)的腺病毒载体注射到小鼠的侧脑室,将脑室上皮转导至脑干中的obex水平。 TAT修饰的舌下核中有大量摄取,但天然β-葡萄糖醛酸苷酶没有摄取。如通过在相邻切片中用霍乱毒素亚基b逆行标记所显示的,TAT修饰的β-葡萄糖似乎涵盖了一半或更多的舌下核。 TAT修饰的基因产物可能允许通过脑室注射进行相对非侵入性的脑干基因治疗方法。

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