首页> 外文OA文献 >Mice haploinsufficient for Map2k7, a gene involved in neurodevelopment and risk for schizophrenia, show impaired attention, a vigilance decrement deficit and unstable cognitive processing in an attentional task : impact of minocycline
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Mice haploinsufficient for Map2k7, a gene involved in neurodevelopment and risk for schizophrenia, show impaired attention, a vigilance decrement deficit and unstable cognitive processing in an attentional task : impact of minocycline

机译:小鼠单倍体不足以参与神经发育和精神分裂症风险的基因Map2k7,在注意任务中注意力受损,警惕性下降缺陷和认知过程不稳定:米诺环素的影响

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摘要

Rationale Members of the c-Jun N-terminal kinase (JNK) family of mitogen-activated protein (MAP) kinases, and the upstream kinase MKK7, have all been strongly linked with synaptic plasticity and with the development of the neocortex. However, the impact of disruption of this pathway on cognitive function is unclear. Objective In the current study, we test the hypothesis that reduced MKK7 expression is sufficient to cause cognitive impairment. Methods Attentional function in mice haploinsufficient for Map2k7 (Map2k7+/- mice) was investigated using the five-choice serial reaction time task (5-CSRTT). Results Once stable performance had been achieved, Map2k7+/- mice showed a distinctive attentional deficit, in the form of an increased number of missed responses, accompanied by a more pronounced decrement in performance over time and elevated intra-individual reaction time variability. When performance was reassessed after administration of minocycline-a tetracycline antibiotic currently showing promise for the improvement of attentional deficits in patients with schizophrenia-signs of improvement in attentional performance were detected. Conclusions Overall, Map2k7 haploinsufficiency causes a distinctive pattern of cognitive impairment strongly suggestive of an inability to sustain attention, in accordance with those seen in psychiatric patients carrying out similar tasks. This may be important for understanding the mechanisms of cognitive dysfunction in clinical populations and highlights the possibility of treating some of these deficits with minocycline.
机译:基本原理丝裂原活化蛋白(MAP)激酶的c-Jun N末端激酶(JNK)家族成员和上游激酶MKK7,都与突触可塑性和新皮层的发展密切相关。但是,尚不清楚该途径的破坏对认知功能的影响。目的在本研究中,我们检验了MKK7表达降低足以引起认知障碍的假设。方法使用五选择序列反应时间任务(5-CSRTT),研究单倍于Map2k7不足的小鼠(Map2k7 +/-小鼠)的注意功能。结果一旦达到稳定的性能,Map2k7 +/-小鼠就会表现出明显的注意力缺陷,表现为错过的反应数量增加,并且随着时间的推移表现出更明显的下降和个体内部反应时间变异性的升高。当给予米诺环素(一种目前显示出改善精神分裂症患者的注意力缺陷的前景的四环素抗生素)后重新评估性能时,发现了注意力改善的迹象。结论总体而言,与在执行类似任务的精神病患者中所见的情况相比,Map2k7单倍体功能不足会导致一种独特的认知障碍模式,强烈暗示无法维持注意力。这对于理解临床人群认知功能障碍的机制可能很重要,并强调了用米诺环素治疗其中一些缺陷的可能性。

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