Dana-Farber Cancer Institute and Department of Neurobiology, Harvard Medical School, 450 Brookline Ave, Boston, Massachusetts 02215, USA.
Mol Brain. 2012 Jan 24;5:3. doi: 10.1186/1756-6606-5-3.
The neurocircuits that process somatic sensory information in the dorsal horn of the spinal cord are still poorly understood, with one reason being the lack of Cre lines for genetically marking or manipulating selective subpopulations of dorsal horn neurons. Here we describe Tac2-Cre mice that were generated to express the Cre recombinase gene from the Tac2 locus. Tachykinin 2 (Tac2) encodes a neurotransmitter, neurokinin B (NKB).
By crossing Tac2-Cre mice with ROSA26-tdTomato reporter mice, we directly visualized Tac2 lineage neurons in the dorsal root ganglia, the dorsal horn of the spinal cord, and many parts of the brain including the olfactory bulb, cerebral cortex, amygdala, hippocampus, habenula, hypothalamus, and cerebellum. This Tac2-Cre allele itself was a null allele for the Tac2 gene. Behavioral analyses showed that Tac2 homozygous null mice responded normally to a series of algogenic (pain-inducing) and pruritic (itch-inducing) stimuli.
Tac2-Cre mice are a useful tool to mark specific subsets of neurons in the sensory ganglia, the dorsal spinal cord, and the brain. These mice can also be used for future genetic manipulations to study the functions of Tac2-expressing neurons or the functions of genes expressed in these neurons.
脊髓背角中处理躯体感觉信息的神经回路仍知之甚少,其中一个原因是缺乏用于遗传标记或操纵背角神经元选择性亚群的 Cre 线。本文描述了 Tac2-Cre 小鼠,其是从 Tac2 基因座表达 Cre 重组酶基因而产生的。速激肽 2(Tac2)编码一种神经递质,神经激肽 B(NKB)。
通过将 Tac2-Cre 小鼠与 ROSA26-tdTomato 报告小鼠杂交,我们直接在背根神经节、脊髓背角以及大脑的许多部位(包括嗅球、大脑皮层、杏仁核、海马体、缰核、下丘脑和小脑)中观察到 Tac2 谱系神经元。该 Tac2-Cre 等位基因本身是 Tac2 基因的无效等位基因。行为分析表明,Tac2 纯合缺失小鼠对一系列致痛(引起疼痛)和致痒(引起瘙痒)刺激的反应正常。
Tac2-Cre 小鼠是标记感觉神经节、脊髓背角和大脑中特定神经元亚群的有用工具。这些小鼠还可用于未来的遗传操作,以研究 Tac2 表达神经元的功能或这些神经元中表达的基因的功能。