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施万细胞中乳酸转运蛋白 MCT1 而非 MCT4 的功能障碍会影响运动终板神经支配的维持。

Disrupted function of lactate transporter MCT1, but not MCT4, in Schwann cells affects the maintenance of motor end-plate innervation.

机构信息

Department of Neuroscience, Karolinska Institutet, Stockholm, Sweden.

Department of Clinical Neuroscience, Karolinska Institutet, Stockholm, Sweden.

出版信息

Glia. 2021 Jan;69(1):124-136. doi: 10.1002/glia.23889. Epub 2020 Jul 20.

Abstract

Recent studies in neuron-glial metabolic coupling have shown that, in the CNS, astrocytes and oligodendrocytes support neurons with energy-rich lactate/pyruvate via monocarboxylate transporters (MCTs). The presence of such transporters in the PNS, in both Schwann cells and neurons, has prompted us to question if a similar interaction may be present. Here we describe the generation and characterization of conditional knockout mouse models where MCT1 or MCT4 is specifically deleted in Schwann cells (named MCT1 and MCT4 cKO). We show that MCT1 cKO and MCT4 cKO mice develop normally and that myelin in the PNS is preserved. However, MCT1 expressed by Schwann cells is necessary for long-term maintenance of motor end-plate integrity as revealed by disrupted neuromuscular innervation in mutant mice, while MCT4 appears largely dispensable for the support of motor neurons. Concomitant to detected structural alterations, lumbar motor neurons from MCT1 cKO mice show transcriptional changes affecting cytoskeletal components, transcriptional regulators, and mitochondria related transcripts, among others. Together, our data indicate that MCT1 plays a role in Schwann cell-mediated maintenance of motor end-plate innervation thus providing further insight into the emerging picture of the biology of the axon-glia metabolic crosstalk.

摘要

最近关于神经元-神经胶质代谢偶联的研究表明,在中枢神经系统中,星形胶质细胞和少突胶质细胞通过单羧酸转运蛋白(MCTs)为神经元提供富含能量的乳酸/丙酮酸。这些转运蛋白存在于周围神经系统的雪旺细胞和神经元中,这促使我们质疑是否存在类似的相互作用。在这里,我们描述了条件敲除小鼠模型的产生和特征,其中 MCT1 或 MCT4 特异性地在雪旺细胞中缺失(分别命名为 MCT1 和 MCT4 cKO)。我们表明,MCT1 cKO 和 MCT4 cKO 小鼠正常发育,周围神经系统中的髓鞘得以保留。然而,雪旺细胞表达的 MCT1 对于运动终板完整性的长期维持是必需的,因为突变小鼠中出现了神经肌肉支配的破坏,而 MCT4 对于运动神经元的支持似乎在很大程度上是可有可无的。与检测到的结构改变同时发生的是,来自 MCT1 cKO 小鼠的腰运动神经元显示出影响细胞骨架成分、转录调节因子和与线粒体相关的转录物等的转录变化。总之,我们的数据表明 MCT1 在雪旺细胞介导的运动终板神经支配维持中发挥作用,从而为轴突-神经胶质代谢串扰的生物学的新兴图景提供了进一步的见解。

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