首页> 外文期刊>Brain research. Molecular brain research >Targeted gene transfer to nigrostriatal neurons in the rat brain by helper virus-free HSV-1 vector particles that contain either a chimeric HSV-1 glycoprotein C-GDNF or a gC-BDNF protein.
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Targeted gene transfer to nigrostriatal neurons in the rat brain by helper virus-free HSV-1 vector particles that contain either a chimeric HSV-1 glycoprotein C-GDNF or a gC-BDNF protein.

机译:通过包含嵌合HSV-1糖蛋白C-GDNF或gC-BDNF蛋白的无辅助病毒的HSV-1矢量颗粒,将基因靶向转移到大鼠脑中的黑质纹状体神经元。

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摘要

Direct gene transfer into neurons has potential for both studying neuronal physiology and for developing gene therapy treatments for specific neurological conditions. Due to the heterogeneous cellular composition of the brain, cell-type-specific recombinant gene expression is required for many potential applications of neuronal gene transfer. The two prevalent approaches for achieving cell-type-specific expression are to use a cell-type-specific promoter to control recombinant gene expression or to modify a virus vector particle to target gene transfer to a specific cell type. Targeted gene transfer to multiple peripheral cell types has been described, but targeted gene transfer to a specific type of neuron in the brain has yet to be reported. Targeted gene transfer approaches with Herpes Simplex Virus (HSV-1) vectors have focused on modifying glycoprotein C (gC) to remove the heparin binding domain and add a binding activity for a specific protein on the cell surface. This study was designed to develop HSV-1 vectors that target gene transfer to cells that contain receptors for either glial-cell-line-derived neurotrophic factor (GDNF) or brain-derived neurotrophic factor (BDNF), such as nigrostriatal neurons. We isolated chimeric gC-GDNF or chimeric gC-BDNF constructs, and the resulting proteins were incorporated into HSV-1 virus particles. We performed helper virus-free HSV-1 vector packaging in the presence of each chimeric protein. The resulting vector stocks supported 2.2- to 5.0-fold targeted gene transfer to nigrostriatal neurons in the rat brain, compared to vector particles that contained wild-type (wt) gC. Gene transfer to nigrostriatal neurons by vector particles that contained chimeric gC-BDNF was reduced by preincubation with an anti-BDNF antibody. Targeted gene transfer to neurons that contain specific neurotrophic factor receptors may benefit specific physiological and gene therapy studies.
机译:将基因直接转移到神经元中对于研究神经元生理学和开发针对特定神经系统疾病的基因治疗方法具有潜力。由于大脑的细胞组成异质,神经元基因转移的许多潜在应用都需要细胞类型特异性的重组基因表达。实现细胞类型特异性表达的两种流行方法是使用细胞类型特异性启动子来控制重组基因表达或修饰病毒载体颗粒以将基因靶向转移到特定细胞类型。已经描述了将靶基因转移到多种外周细胞类型的方法,但是尚未报道将靶基因转移到大脑中特定类型的神经元的方法。使用单纯疱疹病毒(HSV-1)载体的靶向基因转移方法已集中在修饰糖蛋白C(gC)上,以去除肝素结合结构域,并增加对细胞表面特定蛋白的结合活性。这项研究旨在开发HSV-1载体,其靶向基因转移至含有神经胶质细胞系神经营养因子(GDNF)或脑源性神经营养因子(BDNF)(如黑纹状体神经元)受体的细胞。我们分离了嵌合gC-GDNF或嵌合gC-BDNF构建体,并将所得蛋白质掺入HSV-1病毒颗粒中。在每种嵌合蛋白的存在下,我们进行了无辅助病毒的HSV-1载体包装。与包含野生型(wt)gC的载体颗粒相比,所得的载体原种支持将2.2至5.0倍的靶向基因转移至大鼠脑中的黑纹状体神经元。通过与抗BDNF抗体进行预孵育,可减少包含嵌合gC-BDNF的载体颗粒将基因转移至黑纹状体神经元的过程。有针对性的基因转移到包含特定神经营养因子受体的神经元可能有益于特定的生理和基因治疗研究。

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