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通过 Disc1/亨廷顿蛋白介导的 Bdnf 运输调节皮质-纹状体回路中的感觉运动门控。

Regulation of sensorimotor gating via Disc1/Huntingtin-mediated Bdnf transport in the cortico-striatal circuit.

机构信息

Department of Psychiatry, Johns Hopkins University School of Medicine, Baltimore, MD, USA.

Department of Psychiatry and Behavioral Sciences, Neurobiology, and Biomedical Engineering, Duke University Medical Center, Durham, NC, USA.

出版信息

Mol Psychiatry. 2022 Mar;27(3):1805-1815. doi: 10.1038/s41380-021-01389-3. Epub 2022 Feb 14.

Abstract

Sensorimotor information processing underlies normal cognitive and behavioral traits and has classically been evaluated through prepulse inhibition (PPI) of a startle reflex. PPI is a behavioral dimension deregulated in several neurological and psychiatric disorders, yet the mechanisms underlying the cross-diagnostic nature of PPI deficits across these conditions remain to be understood. To identify circuitry mechanisms for PPI, we performed circuitry recording over the prefrontal cortex and striatum, two brain regions previously implicated in PPI, using wild-type (WT) mice compared to Disc1-locus-impairment (LI) mice, a model representing neuropsychiatric conditions. We demonstrated that the corticostriatal projection regulates neurophysiological responses during the PPI testing in WT, whereas these circuitry responses were disrupted in Disc1-LI mice. Because our biochemical analyses revealed attenuated brain-derived neurotrophic factor (Bdnf) transport along the corticostriatal circuit in Disc1-LI mice, we investigated the potential role of Bdnf in this circuitry for regulation of PPI. Virus-mediated delivery of Bdnf into the striatum rescued PPI deficits in Disc1-LI mice. Pharmacologically augmenting Bdnf transport by chronic lithium administration, partly via phosphorylation of Huntingtin (Htt) serine-421 and its integration into the motor machinery, restored striatal Bdnf levels and rescued PPI deficits in Disc1-LI mice. Furthermore, reducing the cortical Bdnf expression negated this rescuing effect of lithium, confirming the key role of Bdnf in lithium-mediated PPI rescuing. Collectively, the data suggest that striatal Bdnf supply, collaboratively regulated by Htt and Disc1 along the corticostriatal circuit, is involved in sensorimotor gating, highlighting the utility of dimensional approach in investigating pathophysiological mechanisms across neuropsychiatric disorders.

摘要

感觉运动信息处理是正常认知和行为特征的基础,经典的评估方法是通过惊跳反射的前脉冲抑制(PPI)。PPI 在多种神经和精神疾病中失调,但其在这些疾病中PPI 缺陷的跨诊断性质的潜在机制仍有待理解。为了确定 PPI 的电路机制,我们在野生型(WT)小鼠和 Disc1 基因座损伤(LI)小鼠中进行了前额叶皮层和纹状体的电路记录,这两个大脑区域先前与 PPI 有关。我们证明了皮质纹状体投射调节 WT 小鼠在 PPI 测试中的神经生理反应,而这些电路反应在 Disc1-LI 小鼠中受到破坏。由于我们的生化分析显示 Disc1-LI 小鼠中皮质纹状体回路中的脑源性神经营养因子(BDNF)转运减弱,我们研究了 BDNF 在调节 PPI 的这种电路中的潜在作用。病毒介导的 BDNF 递送至纹状体可挽救 Disc1-LI 小鼠的 PPI 缺陷。慢性锂处理通过磷酸化 Huntingtin(Htt)丝氨酸-421 及其整合到运动机制来增加 BDNF 转运,从而恢复纹状体 BDNF 水平并挽救 Disc1-LI 小鼠的 PPI 缺陷。此外,降低皮质 BDNF 表达否定了锂的这种挽救作用,证实了 BDNF 在锂介导的 PPI 挽救中的关键作用。总之,这些数据表明,纹状体 BDNF 供应,由 Htt 和 Disc1 沿皮质纹状体回路共同调节,参与感觉运动门控,突出了维度方法在研究神经精神疾病中病理生理机制的效用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9ec3/9272458/6b449a287a8c/nihms-1753991-f0001.jpg

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