利用 Dcx-CreERT2 基因敲入小鼠对新生神经元进行遗传操作。

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS ACS Applied Bio Materials Pub Date : 2023-12-16 DOI:10.1002/dvg.23584
Gabriella A. Perez, Kyung-Won Park, Denise Lanza, Jenna Cicardo, M. Danish Uddin, Joanna L. Jankowsky
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引用次数: 0

摘要

有多种 CreERT2 驱动系可用于对小鼠大脑中的成神经元进行遗传操作。这些工具有助于研究支持终生神经发生的干细胞的命运潜能、迁移、电路整合和形态。尽管有丰富的工具,但由于许多针对早期祖细胞的驱动系特异性差,以及无法获得针对神经元成熟后期的选择性驱动系,用于电路和行为研究的成神经元遗传操作一直受到限制。为了解决这些局限性,我们创建了一种新的 CreERT2 驱动系,以内源性小鼠双皮质素基因座为靶点,作为命运特化神经母细胞和未成熟神经元的标记。我们的新模型将一个 T2A-CreERT2 盒紧贴在 X 染色体上 Dcx 编码序列的下游,从而允许 Dcx 和 CreERT2 蛋白以该基因的内源性时空模式表达。我们证明,新的小鼠品系能在新生小鼠的整个大脑和成年动物的已知神经源龛中驱动 Cre 依赖性报告基因的表达。该品系已存入杰克逊实验室,它将为针对命运受限神经元前体的研究提供一种可利用的工具。
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Generation of a Dcx-CreERT2 knock-in mouse for genetic manipulation of newborn neurons

A wide variety of CreERT2 driver lines are available for genetic manipulation of adult-born neurons in the mouse brain. These tools have been instrumental in studying fate potential, migration, circuit integration, and morphology of the stem cells supporting lifelong neurogenesis. Despite a wealth of tools, genetic manipulation of adult-born neurons for circuit and behavioral studies has been limited by poor specificity of many driver lines targeting early progenitor cells and by the inaccessibility of lines selective for later stages of neuronal maturation. We sought to address these limitations by creating a new CreERT2 driver line targeted to the endogenous mouse doublecortin locus as a marker of fate-specified neuroblasts and immature neurons. Our new model places a T2A-CreERT2 cassette immediately downstream of the Dcx coding sequence on the X chromosome, allowing expression of both Dcx and CreERT2 proteins in the endogenous spatiotemporal pattern for this gene. We demonstrate that the new mouse line drives expression of a Cre-dependent reporter throughout the brain in neonatal mice and in known neurogenic niches of adult animals. The line has been deposited with the Jackson Laboratory and should provide an accessible tool for studies targeting fate-restricted neuronal precursors.

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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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