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内在膜兴奋性增加与1型脊髓小脑共济失调中的橄榄核肥大有关。

Increased intrinsic membrane excitability is associated with olivary hypertrophy in spinocerebellar ataxia type 1.

作者信息

Morrison Logan M, Huang Haoran, Handler Hillary P, Fu Min, Jones Deborah M, Bushart David D, Pappas Samuel S, Orr Harry T, Shakkottai Vikram G

机构信息

Neuroscience Graduate Program, University of Michigan, Ann Arbor, MI 48109, United States.

Peter O'Donnell Jr. Brain Institute, University of Texas Southwestern Medical Center, 6124 Harry Hines Blvd. Dallas, TX 75390, United States.

出版信息

Hum Mol Genet. 2024 Dec 6;33(24):2159-2176. doi: 10.1093/hmg/ddae146.

Abstract

One of the characteristic regions of brainstem degeneration across multiple spinocerebellar ataxias (SCAs) is the inferior olive (IO), a medullary nucleus that plays a key role in motor learning. The vulnerability of IO neurons remains a poorly-understood area of SCA pathology. In this work, we address this by evaluating IO disease in SCA1, a prototypic inherited olivopontocerebellar atrophy, using the genetically-precise SCA1 knock-in (SCA1-KI) mouse. We find that these mice exhibit olivary hypertrophy, a phenotype reminiscent of a degenerative disorder known as hypertrophic olivary degeneration (HOD). Similar to early stages of HOD, SCA1-KI IO neurons display early dendritic lengthening and later somatic expansion without frank cell loss. Though HOD is known to be caused by brainstem lesions that disrupt IO inhibitory innervation, we observe no loss of inhibitory terminals in the SCA1-KI IO. Additionally, we find that a separate mouse model of SCA1 in which mutant ATXN1 is expressed solely in cerebellar Purkinje cells shows no evidence of olivary hypertrophy. Patch-clamp recordings from brainstem slices indicate that SCA1-KI IO neurons are hyperexcitable, generating spike trains in response to membrane depolarization. Transcriptome analysis further reveals reduced medullary expression of ion channels responsible for IO neuron spike afterhyperpolarization (AHP)-a result that appears to have a functional consequence, as SCA1-KI IO neuron spikes exhibit a diminished AHP. These findings suggest that expression of mutant ATXN1 in IO neurons results in an HOD-like olivary hypertrophy, in association with increased intrinsic membrane excitability and ion channel transcriptional dysregulation.

摘要

在多种脊髓小脑共济失调(SCA)中,脑干变性的一个特征性区域是下橄榄核(IO),它是一个延髓核,在运动学习中起关键作用。IO神经元的易损性仍是SCA病理学中一个了解甚少的领域。在这项研究中,我们通过使用基因精确的SCA1基因敲入(SCA1-KI)小鼠来评估SCA1(一种典型的遗传性橄榄脑桥小脑萎缩)中的IO疾病,以解决这一问题。我们发现这些小鼠表现出橄榄核肥大,这一表型让人联想到一种称为肥大性橄榄核变性(HOD)的退行性疾病。与HOD的早期阶段相似,SCA1-KI IO神经元显示出早期树突延长,随后体细胞扩张,但没有明显的细胞丢失。尽管已知HOD是由破坏IO抑制性神经支配的脑干病变引起的,但我们在SCA1-KI IO中未观察到抑制性终末的丢失。此外,我们发现另一种SCA1小鼠模型,其中突变型ATXN1仅在小脑浦肯野细胞中表达,没有显示出橄榄核肥大的迹象倾向。脑干切片的膜片钳记录表明,SCA1-KI IO神经元兴奋性过高,在膜去极化时产生动作电位序列。转录组分析进一步揭示,负责IO神经元动作电位后超极化(AHP)的离子通道在延髓的表达降低,这一结果似乎具有功能后果,因为SCA1-KI IO神经元动作电位的AHP减弱。这些发现表明,IO神经元中突变型ATXN1的表达导致类似HOD的橄榄核肥大,同时伴有内在膜兴奋性增加和离子通道转录失调。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b391/11630738/bc6b6ca4219e/ddae146ga1.jpg

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