Craig Genevieve E, Ramos Lizbeth, Essig Samuel R, Eagles Nicholas J, Jaffe Andrew E, Martinowich Keri, Hallock Henry L
Neuroscience Program, Lafayette College, Easton, Pennsylvania 18042.
Lieber Institute for Brain Development, Johns Hopkins Medical Campus, Baltimore, Maryland 21205.
eNeuro. 2024 Dec 18;11(12). doi: 10.1523/ENEURO.0328-24.2024. Print 2024 Dec.
The medial frontal cortex (mFC) and locus ceruleus (LC) are two brain areas that have been implicated in a range of cognitive phenomena, such as attention, memory, and decision-making. Regulators of these brain regions at the molecular level are not well understood but might help to elucidate underlying mechanisms of disorders that present with deficits in these cognitive domains. To probe this, we used chemogenetic stimulation of neurons in the LC with axonal projections to the prelimbic subregion (PrL) of the mFC and subsequent bulk RNA sequencing from the mouse PrL. We found that stimulation of this circuit caused an increase in transcription of a host of genes, including the gene. To investigate cell type-specific expression of in the PrL, we used a dual-virus approach to express either the excitatory DREADD receptor hM3Dq in LC neurons with projections to the PrL or a control virus and found that increases in expression in the PrL following depolarization of LC inputs is enriched in GABAergic neurons in a sex-dependent manner. The results of these experiments yield insights into how expression affects function in a cortical microcircuit that is important for attention, memory, and decision-making and point to interneuron-specific expression of as a potential biomarker for circuit function in disorders such as attention-deficit hyperactivity disorder, schizophrenia, and Alzheimer's disease.
内侧前额叶皮质(mFC)和蓝斑(LC)是两个与一系列认知现象有关的脑区,如注意力、记忆和决策。这些脑区在分子水平上的调节因子尚未得到充分了解,但可能有助于阐明在这些认知领域存在缺陷的疾病的潜在机制。为了探究这一点,我们对向mFC的前边缘亚区(PrL)投射轴突的LC中的神经元进行了化学遗传刺激,并随后从小鼠PrL进行了大量RNA测序。我们发现,对该回路的刺激导致许多基因的转录增加,包括 基因。为了研究PrL中 的细胞类型特异性表达,我们采用双病毒方法,在向PrL投射的LC神经元中表达兴奋性DREADD受体hM3Dq或对照病毒,发现LC输入去极化后PrL中 表达的增加以性别依赖的方式在GABA能神经元中富集。这些实验结果深入了解了 表达如何影响对注意力、记忆和决策很重要的皮质微回路中的功能,并指出 的中间神经元特异性表达作为注意力缺陷多动障碍、精神分裂症和阿尔茨海默病等疾病中回路功能的潜在生物标志物。