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Beyond affect: A role for genetic variation of the serotonin transporter in neural activation during a cognitive attention task

机译:超越影响:认知注意任务中5-羟色胺转运蛋白遗传变异在神经激活中的作用

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Prior work has highlighted the role of genetic variation within the repetitive sequence in the transcriptional control region of the serotonin (5-HT) transporter gene (5-HTT, SLC6A4) in modulating amygdala and prefrontal activation to negative emotional stimuli. However, these studies have not explicitly tested the assumption that the control condition (neutral baseline) does not itself produce changes in activation as a function of 5-HTT genotype. Using a fixation baseline condition, we show that variation in 5-HTT genotype is associated with differential activation to negative, positive, and neutral stimuli in limbic, striatal, and cortical regions. We replicate earlier reports of increased amygdala activation to negative, relative to neutral, stimuli, but then show that these differences are driven by decreased activation to neutral stimuli, rather than increased activation to negative stimuli, in carriers of the 5-HTT short allele. Using high-resolution structural images and automated processes to test for brain volume and gray matter density, we further report significant differences, as a function of 5-HTT genotype, in frontal cortical regions, anterior cingulate, and cerebellum. These functional and structural differences suggest a much broader role for 5-HT transport efficiency in brain processes than previously thought. 5-HTT genotype affects neural systems controlling affective, cognitive, and motor processes.
机译:先前的工作强调了5-羟色胺(5-HT)转运蛋白基因(5-HTT,SLC6A4)的转录控制区域的重复序列内的遗传变异在调节杏仁核和前额叶激活对负面情绪刺激中的作用。但是,这些研究尚未明确检验以下假设:控制条件(中性基线)本身不会产生5-HTT基因型的激活改变。使用固定基线条件,我们显示5-HTT基因型的变异与边缘,纹状体和皮质区域中对负,正和中性刺激的差异激活相关。我们复制了早期报道,杏仁核激活增加到相对于中性,负刺激,但5-HTT短等位基因携带者,这些差异是由减少激活到中性刺激,而不是增加激活到负面刺激。使用高分辨率的结构图像和自动化过程测试大脑的体积和灰质密度,我们进一步报告了额叶皮层区域,前扣带回和小脑中5-HTT基因型的显着差异。这些功能和结构上的差异表明,5-HT转运效率在脑过程中的作用比以前认为的要广泛得多。 5-HTT基因型影响控制情感,认知和运动过程的神经系统。

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