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Loss of protohaem IX farnesyltransferase in mature dentate granule cells impairs short-term facilitation at mossy fibre to CA3 pyramidal cell synapses

机译:成熟牙齿颗粒细胞中Protohaem Ix Farneryl转移酶的丧失损失在苔藓纤维中的短期促进到Ca3金字塔孔细胞突触

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摘要

Neurodegenerative disorders are characterized by peripheral and central symptoms including cognitive impairments which have been associated with reduced mitochondrial function, in particular mitochondrial respiratory chain complex IV or cytochrome c oxidase activity. In the present study we conditionally removed a key component of complex IV, protohaem IX farnesyltransferase encoded by the COX10 gene, in granule cells of the adult dentate gyrus. Utilizing whole-cell patch-clamp recordings from morphologically identified CA3 pyramidal cells from control and complex IV-deficientmice, we found that reduced mitochondrial function did not result in overt deficits in basal glutamatergic synaptic transmission at the mossy-fibre synapse because the amplitude, input-output relationship and 50 ms paired-pulse facilitation were unchanged following COX10 removal from dentate granule cells. However, trains of stimuli given at high frequency (> 20 Hz) resulted in dramatic reductions in short-term facilitation and, at the highest frequencies (> 50 Hz), also reduced paired-pulse facilitation, suggesting a requirement for adequate mitochondrial function to maintain glutamate release during physiologically relevant activity patterns. Interestingly, local inhibition was reduced, suggesting the effect observed was not restricted to synapses with CA3 pyramidal cells via large mossy-fibre boutons, but rather to all synapses formed by dentate granule cells. Therefore, presynaptic mitochondrial function is critical for the short-term dynamics of synapse function, which may contribute to the cognitive deficits observed in pathological mitochondrial dysfunction.
机译:神经变性疾病是由外周和中枢症状包括已经具有降低的线粒体功能相关联,尤其是线粒体呼吸链复合物IV或细胞色素C氧化酶活性认知障碍为特征。在本研究中,我们有条件地去除了COX10基因编码的复杂IV,Protohaem Ix法呢基转移酶的关键组分,在成人齿状回波的颗粒细胞中。利用来自形态学鉴定的CA3金字塔细胞从对照和复杂的IV缺陷型录制进行全细胞贴片夹具,我们发现减少的线粒体功能未导致在Mossy-Fiber Synapse处的基底谷氨酸突触突触传递中的明显缺陷,因为振幅输入在从牙齿颗粒细胞中除去COX10后,输出关系和50ms配对脉冲促进不变。然而,在高频(> 20Hz)上给出的刺激列表导致短期促进的显着减少,并且在最高频率(> 50Hz),也减少了对脉冲促进的速度,这表明需要足够的线粒体功能在生理相关的活动模式期间维持谷氨酸释放。有趣的是,降低了局部抑制,表明观察到的效果不限于通过大型苔藓纤维Boutons与Ca 3金字塔细胞的突触,而是由牙齿颗粒细胞形成的所有突触。因此,突触前线粒体功能对于突触功能的短期动态至关重要,这可能有助于在病理线粒体功能障碍中观察到的认知缺陷。

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  • 来源
    《The Journal of Physiology》 |2017年第6期|共14页
  • 作者单位

    Univ Edinburgh Ctr Integrat Physiol Hugh Robson Bldg George Sq Edinburgh EH8 9XD Midlothian;

    Univ Edinburgh Ctr Clin Brain Sci Chancellors Bldg 49 Little France Crescent Edinburgh EH16 4SB;

    Univ Edinburgh Ctr Neuroregenerat Chancellors Bldg 49 Little France Crescent Edinburgh EH16 4SB;

    Univ Edinburgh Ctr Neuroregenerat Chancellors Bldg 49 Little France Crescent Edinburgh EH16 4SB;

    Univ Edinburgh Ctr Integrat Physiol Hugh Robson Bldg George Sq Edinburgh EH8 9XD Midlothian;

    Univ Edinburgh Ctr Clin Brain Sci Chancellors Bldg 49 Little France Crescent Edinburgh EH16 4SB;

    Univ Edinburgh Ctr Integrat Physiol Hugh Robson Bldg George Sq Edinburgh EH8 9XD Midlothian;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 人体生理学;
  • 关键词

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