首页> 美国卫生研究院文献>The Journal of Neuroscience >Increased Capacity and Density of Choline Transporters Situated in Synaptic Membranes of the Right Medial Prefrontal Cortex of Attentional Task-Performing Rats
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Increased Capacity and Density of Choline Transporters Situated in Synaptic Membranes of the Right Medial Prefrontal Cortex of Attentional Task-Performing Rats

机译:位于执行任务的大鼠右内侧前额叶皮层的突触膜中的胆碱转运蛋白的容量和密度增加。

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摘要

Cholinergic neurons innervating the cortex have been conceptualized as a major component of the attention system of the brain. Because of recent evidence indicating plastic mechanisms regulating choline transporter (CHT)-mediated high-affinity choline uptake, which is the rate-limiting step of acetylcholine synthesis, the present experiment determined the capacity of cholinergic terminals to transport choline, and the proportion of choline transporters localized in the membrane of synaptic terminals, in several brain regions of rats performing a cognitive vigilance task (CVT) and a simple reaction time task (SRTT) and nonperforming (NP) rats. Compared with evidence from NP rats, increased choline transporter capacity [as indicated by maximum transporter velocity (Vmax)] and an increased density of CHTs situated in synaptic plasma membrane, relative to intracellular locations, were observed in the medial prefrontal cortex of the right but not left hemisphere of CVT-performing animals. Furthermore, right medial prefrontal Vmax values of CVT-performing rats correlated positively and left medial Vmax values correlated negatively with the animals' performance in signal trials. Measures of CHT function in the brains of SRTT-performing animals did not differ significantly from those in NP rats. The present data support the hypothesis that an increased capacity of choline transporters in the right medial prefrontal cortex, primarily attributable to increased trafficking of transporters from intracellular compartments to the terminal membrane, represents a cellular mechanism contributing to the mediation of attentional performance.
机译:支配皮层的胆碱能神经元已被概念化为大脑注意系统的主要组成部分。由于最近的证据表明调节胆碱转运蛋白(CHT)介导的高亲和力胆碱摄取的塑性机制是乙酰胆碱合成的限速步骤,因此本实验确定了胆碱能末端转运胆碱的能力以及胆碱的比例转运蛋白位于突触终末膜中,在执行认知警戒任务(CVT)和简单反应时间任务(SRTT)和不良(NP)大鼠的几个大脑区域中。与NP大鼠的证据相比,相对于细胞内位置,在右前内侧内侧皮层中观察到胆碱转运蛋白容量增加(如最大转运蛋白速度(Vmax)所示),并且突触质膜中CHTs密度增加。左半球无CVT的动物。此外,在信号试验中,表现CVT的大鼠的右内侧前额Vmax值与动物的表现呈正相关,而左内侧Vmax值与动物的表现呈负相关。在执行SRTT的动物的大脑中,CHT功能的测量与NP大鼠中的测量无显着差异。本数据支持这样的假设,即右内侧前额叶皮层中胆碱转运蛋白的容量增加,主要归因于转运蛋白从细胞内区室到末端膜的转运增加,代表了介导注意力表现的细胞机制。

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