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Nna1 gene deficiency triggers Purkinje neuron death by tubulin hyperglutamylation and ER dysfunction
Jianxue Li, Evan Y. Snyder, Fenny H.F. Tang, Renata Pasqualini, Wadih Arap, Richard L. Sidman
Jianxue Li, Evan Y. Snyder, Fenny H.F. Tang, Renata Pasqualini, Wadih Arap, Richard L. Sidman
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Research Article Neuroscience

Nna1 gene deficiency triggers Purkinje neuron death by tubulin hyperglutamylation and ER dysfunction

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Abstract

Posttranslational glutamylation/deglutamylation balance in tubulins influences dendritic maturation and neuronal survival of cerebellar Purkinje neurons (PNs). PNs and some additional neuronal types degenerate in several spontaneous, independently occurring Purkinje cell degeneration (pcd) mice featuring mutant neuronal nuclear protein induced by axotomy (Nna1), a deglutamylase gene. This defective deglutamylase allows glutamylases to form hyperglutamylated tubulins. In pcd, all PNs die during postnatal “adolescence.” Neurons in some additional brain regions also die, mostly later than PNs. We show in laser capture microdissected single PNs, in cerebellar granule cell neuronal clusters, and in dissected hippocampus and substantia nigra that deglutamase mRNA and protein were virtually absent before pcd PNs degenerated, whereas glutaminase mRNA and protein remained normal. Hyperglutamylated microtubules and dimeric tubulins accumulated in pcd PNs and were involved in pcd PN death by glutamylase/deglutamylase imbalance. Importantly, treatment with a microtubule depolymerizer corrected the glutamylation/deglutamylation ratio, increasing PN survival. Further, before onset of neuronal death, pcd PNs displayed prominent basal polylisosomal masses rich in ER. We propose a “seesaw” metamorphic model summarizing mutant Nna1-induced tubulin hyperglutamylation, the pcd’s PN phenotype, and report that the neuronal disorder involved ER stress, unfolded protein response, and protein synthesis inhibition preceding PN death by apoptosis/necroptosis.

Authors

Jianxue Li, Evan Y. Snyder, Fenny H.F. Tang, Renata Pasqualini, Wadih Arap, Richard L. Sidman

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Figure 3

Tubulin hyperglutamylation and PN death.

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Tubulin hyperglutamylation and PN death.
(A) Glutamylated tubulins incre...
(A) Glutamylated tubulins increased in PN cultures given Nna1 shRNA (decreased deglutamylase), Ttll1 cDNA (increased glutamylase), Ttll3 shRNA (decreased glycylase), or combined Nna1 shRNA plus Ttll1 cDNA. Dot pots with mean ± SD, n = 4–6; 2-tailed Student’s t test, compared with control, **P < 0.01. (B) Free dimeric tubulin proteins (FT) were accumulated, whereas microtubules (MT) were decreased in Nna1 shRNA PN cultures. Dot pots with mean ± SD, n = 4–6; 2-tailed Student’s t test, compared with control, **P < 0.01. (C) H&E cerebellar cortices show total loss of PNs (arrows) in various alleles of P40 pcd mutants. Scale bar: 30 μm. (D and E) Images and quantification show decreases in PN survival in WT cerebellar cell cultures given demecolcine (microtubule depolymerizer), Nna1 shRNA, Ttll1 cDNA, Ttll3 shRNA, or combined Nna1 shRNA plus Ttll1 cDNA showed Calb (red) PNs PolyE-stained (green) tubulin hyperglutamylation. Dot pots with mean ± SD, n = 6; 1-way ANOVA, experimental (Nna1 shDNA, Ttll1 cDNA, Ttll3 shRNA, and Nna1 shRNA plus Ttll1 cDNA) groups compared with control group, **P < 0.01; no statistical difference among experimental groups or among control, Lv control, shRNA control, and Nna1 cDNA plus Ttll1 cDNA groups. Scale bar: 50 μm. PN, Purkinje neuron; Nna1, neuronal nuclear protein induced by axotomy; Ttll1, tubulin tyrosine ligase–like 1.

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