98%
921
2 minutes
20
The spontaneous autosomal recessive mouse mutation, Purkinje cell degeneration (pcd), was first identified through its ataxic behavior. Since its discovery in the 1970s, the strain has undergone extensive investigation, although another quarter century elapsed until the mutant gene (agtpbp1 a.k.a. Nna1) underlying the pcd phenotype was identified. As Nna1 was initially discovered as a gene induced in motor neurons following axotomy the finding that its loss leads to selective neuronal degeneration points to a novel and unexpected common molecular mechanism contributing to the apparently opposing processes of degeneration and regeneration. The elucidation of this mechanism may of course have significant implications for an array of neurological disorders. Here we will first review the principle features of the pcd phenotype and then discuss the functional implications of more recent findings emanating from the characterization of Nna1, the protein that is lost in pcd. We also provide new data on the genetic dissection of the cell death pathways operative in pcd(3J) mice, proving that granule cell death and Purkinje cell death in these mice have distinct molecular bases. We also provide new information on the structure of mouse Nna1 as well as Nna1 protein levels in pcd(3J) mice.
Download full-text PDF |
Source |
---|---|
http://dx.doi.org/10.1016/j.brainres.2006.07.065 | DOI Listing |
JCI Insight
September 2025
Department of Pharmacology, University of Michigan Medical School, Ann Arbor, Michigan, USA.
Patients with Dravet syndrome (DS) present with severe, spontaneous seizures and ataxia. While most patients with DS have variants in the sodium channel Nav1.1 α subunit gene, SCN1A, variants in the sodium channel β1 subunit gene, SCN1B, are also linked to DS.
View Article and Find Full Text PDFPLoS One
September 2025
Department of Biology, Providence College, Providence, Rhode Island, United States of America.
In Npc1 deficient mice, postnatal developmental alterations in cerebellar microglia and Purkinje cells (PCs) are followed by early-onset neurodegeneration. Even in the absence of PC loss, microglia in Npc1nmf164 mice display hallmark features of activation during early postnatal development, including increased proliferation, enhanced phagocytic activity, and morphological changes indicative of an activated state. In this study, we investigated whether mammalian target of rapamycin complex 1 (mTORC1) drives postnatal activation of cerebellar microglia in Npc1nmf164 mice.
View Article and Find Full Text PDFHeterozygous loss-of-function mutations are one established cause of isolated dystonia and hyposmia. Homozygous mutations have been reported in siblings with generalized dystonia and intellectual disability. encodes major [NM_001369387.
View Article and Find Full Text PDFElife
September 2025
Department of Physiology, Seoul National University College of Medicine, Seoul, Republic of Korea.
Climbing fiber (CF) transmission from the inferior olive (IO) triggers complex spikes (Cs) in Purkinje cells (PCs) driven by a burst of calcium spikes. In the context of motor learning, especially the compensatory optic response, CF transmission serves as an instructive signal selectively conveyed to PCs. While the significance of CF input in motor memory formation is widely acknowledged, a comprehensive understanding of its distinct contribution across different temporal windows, spanning from the initial learning phase to the retrieval period, remains incomplete.
View Article and Find Full Text PDFSKOR2 is a transcriptional repressor expressed in central nervous system tissues, mainly in the Purkinje cells (PCs). This is essential for the proper migration, development, and differentiation of PCs at embryonic stages, and its disruption can affect cerebellar function. SKOR2 protein has two DHD and SAND domains, which play an important role in the TGF-β signaling pathway by binding to Smad transcriptional regulators.
View Article and Find Full Text PDF