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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Spinalization and locomotor training differentially affect muscarinic acetylcholine receptor type 2 abutting on α‐motoneurons innervating the ankle extensor and flexor muscles
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Spinalization and locomotor training differentially affect muscarinic acetylcholine receptor type 2 abutting on α‐motoneurons innervating the ankle extensor and flexor muscles

机译:脊髓化和运动运动训练差异地影响肌肉素乙酰胆碱受体类型2邻接在α-肌肌核上的邻近踝关节伸肌和屈肌肌

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Abstract Complete thoracic spinal cord transection ( SCT ) impairs excitatory cholinergic inputs to ankle extensor (soleus; Sol) but not to flexor (tibialis anterior; TA ) α‐motoneurons ( MN s) modifiable by locomotor training applied post‐transection. The purpose of this study was to investigate whether Sol and TA MN s adapt to changes in cholinergic environment by differential regulation of their muscarinic receptors M2 (M2R). We examined Chrm2 (M2R gene) transcript level, high‐affinity 3‐quinuclidinyl benzilate‐ 3 H ([ 3 H] QNB ) ligand binding, distribution and density of M2R immunolabeling in lumbar (L) segments in intact and SCT rats, with or without inclusion of 5‐week treadmill locomotor training. We show that at the second week after SCT the levels of Chrm2 transcript are reduced in the L3–6 segments, with [ 3 H] QNB binding decreased selectively in the L5–6 segments, where ankle extensor MN s are predominantly located. At 5?weeks after SCT , [ 3 H] QNB binding differences between the L3–4 and L5–6 segments are maintained, accompanied by higher density of M2R immunolabeling in the plasma membrane and cytoplasm of TA than Sol MN s and by enriched synaptic versus extrasynaptic M2R pools (52% TA vs. 25% Sol MN s). Training normalized M2R in TA MN s, improved locomotion, and reduced frequency of clonic episodes. Our findings indicate higher sensitivity of TA than Sol MN s to cholinergic signaling after SCT , which might shorten flexor twitches duration and contribute to generation of clonic movements. Synaptic enrichment in M2R density may reflect a compensatory mechanism activated in TA and Sol MN s to different extent in response to reduced strength of cholinergic signaling to each MN pool. Open Practices Open Science: This manuscript was awarded with the Open Materials Badge. For more information see: https://cos.io/our-services/open-science-badges/
机译:摘要完整的胸脊髓横断(SCT)损害刺激性胆碱能输入踝关节伸肌(SOL),而不是弯曲(胫骨前部; TA)α-MOTONEURON(MNS)通过横向后的运动训练可改变。本研究的目的是研究溶胶和TA MNS是否通过群体调节调节其毒蕈碱受体M2(M2R)来适应胆碱能环境的变化。我们检查了CHRM2(M2R基因)转录物水平,高亲和力3-奎尼丁酰基苯甲酸-3h([3 h] qnb)配体,其在完整和SCT大鼠的腰部(L)段中的M2R免疫标记的M2R免疫标签的粘合剂和密度没有包含5周的跑步机机车训练。我们表明,在SCT在L3-6段中的SCT水平降低了SCT的第二周,在L3-6段中减少了QNB结合,在L5-6段中有选择性地降低,其中踝伸长型MNS主要位于位置。在SCT后5?周数,L3-4和L5-6区段之间的QNB QNB结合差异,伴随着较高密度的血浆膜中的M2R免疫标记和TA的细胞质而不是溶胶Mn S和富集的突触与extra anynaptic m2r池(52%ta与25%sol mn s)。 TA MN S中的训练标准化M2R,改进的机置和克隆发作的减少频率。我们的发现表明,SCT之后,TA对溶胶Mn S对胆碱能信号传导的敏感性较高,这可能会缩短屈肌抽搐持续时间,并有助于产生克隆运动。 M2R密度的突触富集可以反映在Ta和溶胶Mn S中激活的补偿机制,并响应于每个Mn池的胆碱能信号传导的强度降低。开放实践公开科学:此手稿是授予开放材料徽章的奖励。有关更多信息,请参阅:https://cos.io/our-services/open-science-badges/

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