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躯体感觉神经系统的正常发育和功能需要酮体分解。

Ketolysis is Required for the Proper Development and Function of the Somatosensory Nervous System.

作者信息

Enders Jonathan, Jack Jarrid, Thomas Sarah, Lynch Paige, Lasnier Sarah, Cao Xin, Swanson M Taylor, Ryals Janelle M, Thyfault John P, Puchalska Patrycja, Crawford Peter A, Wright Douglas E

机构信息

Departments of Anesthesiology, University of Kansas Medical Center, Kansas City, KS, 66160.

Departments of Cell Biology and Physiology, University of Kansas Medical Center, Kansas City, KS, 66160.

出版信息

bioRxiv. 2023 Mar 30:2023.01.11.523492. doi: 10.1101/2023.01.11.523492.

Abstract

Ketogenic diets are emerging as protective interventions in preclinical and clinical models of somatosensory nervous system disorders. Additionally, dysregulation of succinyl-CoA 3-oxoacid CoA-transferase 1 (SCOT, encoded by ), the fate-committing enzyme in mitochondrial ketolysis, has recently been described in Friedreich's ataxia and amyotrophic lateral sclerosis. However, the contribution of ketone metabolism in the normal development and function of the somatosensory nervous system remains poorly characterized. We generated sensory neuron-specific, Advillin-Cre knockout of SCOT (Adv-KO-SCOT) mice and characterized the structure and function of their somatosensory system. We used histological techniques to assess sensory neuronal populations, myelination, and skin and spinal dorsal horn innervation. We also examined cutaneous and proprioceptive sensory behaviors with the von Frey test, radiant heat assay, rotarod, and grid-walk tests. Adv-KO-SCOT mice exhibited myelination deficits, altered morphology of putative Aδ soma from the dorsal root ganglion, reduced cutaneous innervation, and abnormal innervation of the spinal dorsal horn compared to wildtype mice. Synapsin 1-Cre-driven knockout of confirmed deficits in epidermal innervation following a loss of ketone oxidation. Loss of peripheral axonal ketolysis was further associated with proprioceptive deficits, yet Adv-KO-SCOT mice did not exhibit drastically altered cutaneous mechanical and thermal thresholds. Knockout of in peripheral sensory neurons resulted in histological abnormalities and severe proprioceptive deficits in mice. We conclude that ketone metabolism is essential for the development of the somatosensory nervous system. These findings also suggest that decreased ketone oxidation in the somatosensory nervous system may explain the neurological symptoms of Friedreich's ataxia.

摘要

生酮饮食正在成为躯体感觉神经系统疾病临床前和临床模型中的保护性干预措施。此外,最近在弗里德赖希共济失调和肌萎缩侧索硬化症中发现了琥珀酰辅酶A 3-氧代酸辅酶A转移酶1(由 编码的SCOT)失调,它是线粒体酮体分解中的决定性酶。然而,酮代谢在躯体感觉神经系统正常发育和功能中的作用仍不清楚。我们构建了感觉神经元特异性的Advillin-Cre敲除SCOT(Adv-KO-SCOT)小鼠,并对其躯体感觉系统的结构和功能进行了表征。我们使用组织学技术评估感觉神经元群体、髓鞘形成以及皮肤和脊髓背角的神经支配。我们还通过von Frey试验、辐射热测定、转棒试验和网格行走试验检查了皮肤和本体感觉行为。与野生型小鼠相比,Adv-KO-SCOT小鼠表现出髓鞘形成缺陷、背根神经节中假定的Aδ神经元胞体形态改变、皮肤神经支配减少以及脊髓背角神经支配异常。Synapsin 1-Cre驱动的 敲除证实了酮氧化丧失后表皮神经支配的缺陷。外周轴突酮体分解的丧失还与本体感觉缺陷有关,但Adv-KO-SCOT小鼠的皮肤机械和热阈值没有明显改变。外周感觉神经元中 的敲除导致小鼠出现组织学异常和严重的本体感觉缺陷。我们得出结论,酮代谢对于躯体感觉神经系统的发育至关重要。这些发现还表明,躯体感觉神经系统中酮氧化的减少可能解释了弗里德赖希共济失调的神经症状。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/648a/10080631/7cb369be46ab/nihpp-2023.01.11.523492v2-f0001.jpg

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