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大脑中可控且局部性的基因操控。

Controlled and localized genetic manipulation in the brain.

作者信息

Aronoff Rachel, Petersen C C H

机构信息

Laboratory of Sensory Processing, Brain Mind Institute, Ecole Polytechnique Fédérale de Lausanne, Switzerland.

出版信息

J Cell Mol Med. 2006 Apr-Jun;10(2):333-52. doi: 10.1111/j.1582-4934.2006.tb00403.x.

Abstract

Brain structure and function are determined in part through experience and in part through our inherited genes. A powerful approach for unravelling the balance between activity-dependent neuronal plasticity and genetic programs is to directly manipulate the genome. Such molecular genetic studies have been greatly aided by the remarkable progress of large-scale genome sequencing efforts. Sophisticated mouse genetic manipulations allow targeted point-mutations, deletions and additions to the mouse genome. These can be regulated through inducible promoters expressing in genetically specified neuronal cell types. However, despite significant progress it remains difficult to target specific brain regions through transgenesis alone. Recent work suggests that transduction vectors, like lentiviruses and adeno-associated viruses, may provide suitable additional tools for localized and controlled genetic manipulation. Furthermore, studies with such vectors may aid the development of human genetic therapies for brain diseases.

摘要

大脑的结构和功能部分由经验决定,部分由我们继承的基因决定。揭示依赖活动的神经元可塑性与遗传程序之间平衡的一种有效方法是直接操纵基因组。大规模基因组测序工作的显著进展极大地推动了此类分子遗传学研究。复杂的小鼠基因操作允许对小鼠基因组进行靶向点突变、缺失和添加。这些操作可以通过在基因指定的神经元细胞类型中表达的诱导型启动子来调控。然而,尽管取得了重大进展,但仅通过转基因来靶向特定脑区仍然很困难。最近的研究表明,转导载体,如慢病毒和腺相关病毒,可能为局部和可控的基因操作提供合适的额外工具。此外,使用此类载体的研究可能有助于开发针对脑部疾病的人类基因疗法。

相似文献

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Controlled and localized genetic manipulation in the brain.大脑中可控且局部性的基因操控。
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