| Literature DB >> 32276655 |
Clévio Nóbrega1,2,3,4, André Conceição5, Rafael G Costa6,5, Rebekah Koppenol6,5, Raquel L Sequeira6,5, Ricardo Nunes6,5, Sara Carmo-Silva7, Adriana Marcelo6,5,8,7, Carlos A Matos6,5,8,7, Sandrine Betuing9, Jocelyne Caboche9, Nathalie Cartier10, Sandro Alves11.
Abstract
OBJECTIVE: Compromised brain cholesterol turnover and altered regulation of brain cholesterol metabolism have been allied with some neurodegenerative diseases, including Huntington's disease (HD). Following our previous studies in HD, in this study we aim to investigate in vitro in a neuroblastoma cellular model of HD, the effect of CYP46A1 overexpression, an essential enzyme in cholesterol metabolism, on huntingtin aggregation and levels.Entities:
Keywords: Autophagy; CYP46A1; Cholesterol; Huntingtin; Neuroblastoma cells
Mesh:
Substances:
Year: 2020 PMID: 32276655 PMCID: PMC7149904 DOI: 10.1186/s13104-020-05053-x
Source DB: PubMed Journal: BMC Res Notes ISSN: 1756-0500
Fig. 1CYP46A1 overexpression decreases the number of aggregates and the levels of soluble mutant HTT. a N2a cells were transfected with pEGFP-HttQ74, co-transfected with pEGFP-HttQ74 and pAAV-HA-CYP46A1, and co-transfected with pEGFP-HttQ74 and LacZ, highlighting the fusion protein with GFP, the nuclei labeled with DAPI and the expression of CYP46A1 by the labeling with HA tag. For each condition, 100 cells were randomly counted. b The number of cells with aggregates (white arrows) upon CYP46A1 overexpression was significantly reduced compared to control conditions (note the yellow arrows with expression of HTT-MUT without aggregates). c The size of HTT-MUT aggregates was smaller upon CYP46A1 overexpression relatively to both control conditions. d Western blot analysis probed with mouse anti-GFP depicting the soluble HTT-MUT (66 kDa) and tubulin as loading control. Densitometric analysis showed that CYP46A1 expression leads to a significant reduction of the soluble HTT-MUT (e). Values are expressed as mean ± SEM. (a–c, n = 5 independent experiments; d–e, n = 4 independent experiments; One-way ANOVA with Bonferroni’s multiple comparisons test, *P < 0.05; **P < 0.001; ****P < 0.00001)
Fig. 2CYP46A1 overexpression significantly increases the number of LC3 puncta upon autophagy inhibition. a N2a cells were transfected with ptfLC3-RFP-GFP, co-transfected with ptfLC3-RFP-GFP and CYP46A1, and co-transfected with ptfLC3-RFP-GFP and lacZ. An additional condition was used, promoting starvation, as a positive control for autophagy activation. The visualization of LC3-puncta is possible upon autophagy inhibition with chloroquine in all the experimental conditions. The presence of LC3-RFP-GFP puncta (co-localized) refers to the presence of mature autophagosomes, whereas LC3-RFP puncta (without GFP) refers to autolysosomes. Representative microscopy images. b For each condition 100 cells were randomly counted in different microscopy fields. The number LC3-puncta per cell upon CYP46A1 overexpression was significantly increased compared to both control conditions. c The total fluorescence intensity (GFP) was significantly reduced upon CYP46A1 overexpression, compared to control conditions, thus suggesting an increase in the autophagic clearance. Values expressed as mean ± SEM. (a, b, n = 5 independent experiments, two-way ANOVA with Bonferroni’s multiple comparisons test, *P < 0.05; ***P < 0.0001;P < 0.0001 comparing to LC3 + lacZ; c, n = 3 independent experiments Unpaired Student’s t test, ****P < 0.00001)
Fig. 3CYP46A1 overexpression promotes the activation of autophagy, independently of the UPS system. a N2a cells were transfected with pEGFP-HTTQ74, co-transfected with pEGFP-HTTQ74 and CYP46A1. Western blots were probed with rabbit anti-LC3B, rabbit anti-p62/SQSTM1, and mouse anti-actin. b The densitometric analysis showed that CYP46A1 expression leads to a significant increase in the LC3B-II levels and c to a significant reduction in the SQSTM1/p62 levels, both compared to the experimental control. The results with chloroquine inhibition of autophagy follow the same trend, suggesting a robust autophagy activation upon CYP46A1 overexpression. d This activation is also supported by a significant increase in the autophagic net flux. e Representative western blot probed for GFP of protein lysates from N2a cells of the different experimental conditions, with and without the proteasome inhibitor MG132 (5 M). The western blot was also probed for tubulin, and poly-ubiquitin to highlight the UPS inhibition. f The densitometric analysis showed that CYP46A1 expression decreases GFP levels (HTT-MUT), with and without ubiquitin–proteasome system inhibition. (n = 4 independent experiments, Unpaired Student’s t-test; one-way ANOVA with Bonferroni’s multiple comparisons test, *P < 0.05; **P < 0.001; ***P < 0.0001)