| Literature DB >> 32276639 |
Saranya Canchi1,2, Mary K Swinton3, Robert A Rissman1,2, Jerel Adam Fields4.
Abstract
BACKGROUND:Entities:
Keywords: Astroglia; Brain; C/EBPβ; HIV; Neuroinflammation; Neuron
Year: 2020 PMID: 32276639 PMCID: PMC7149918 DOI: 10.1186/s12974-020-01781-w
Source DB: PubMed Journal: J Neuroinflammation ISSN: 1742-2094 Impact factor: 8.322
Clinical characteristics of a cohort of 33 brain specimens from people with HIV
| Cognitive normal ( | Asymptomatic neurocognitive impairment ( | Minor neurocognitive dysfunction ( | HIV-associated dementia ( | |
|---|---|---|---|---|
| 41.7 ± 8.1 | 41.7 ± 10.8 | 43.1 ± 6.7 | 40.7 ± 2.1 | |
| 0:10 | 1:09 | 1:09 | 1:02 | |
| 33.3 ± 67.5 | 21.4 ± 28.4 | 15.5 ± 14.4 | 9.3 ± 3.01 | |
| 13.0 ± 2.3 | 12.22 ± 3.4 | 12.0 ± 3.46 | 16.0 ± 3.5 | |
| 151.6 ± 151.2 | 68.7 ± 73.9 | 35.3 ± 55.4 | 98.0 ± 155.1 | |
| 3.3 ± 1.6 | 3.9 ± 1.3 | 5.0 ± 0.8 | 4.4 ± 2.4 | |
| Duration on ART (months) | 53.3 ± 28.2 | 56.3 ± 86.5 | 35.7 ± 19.6 | 16.0 ± 0.0 |
Fig. 1C/EBPβ levels are increased in the astroglia and decreased in neurons in HAND cases. a Vibratome sections of frontal cortex tissues from HIV CN and HAND cases immunolabeled for C/EBPβ. b Vibratome sections from the frontal cortex from HIV CN and HAND cases double immunolabeled for GFAP (green) and C/EBPβ (red). c The percent of C/EBPβ colocalizing with GFAP for CN versus HAND cases. d Double immunolabeling was for MAP2 (green) and C/EBPβ. e Percent colocalization comparing CN and HAND cases. f RNA expression of C/EBPβ normalized to GAPDH plotted by neurocognitive status. g Western blot for C/EBPβ and ACTB using lysates of frontal cortex tissues. h Band intensities for C/EBPβ plotted by neurocognitive status after normalization to ACTB. Statistical significance was determined by an unpaired t test when comparing two groups and by one-way ANOVA when comparing more than two groups (*p < 0.05, **p < 0.01)
Fig. 2Global transcriptomic changes in HIV-associated minor neurocognitive disorder (MND) relative to controls. a Volcano plot of entire set of detected genes where each point represents the difference in expression (fold change) between MND and CN HIV+ subjects plotted against the levels of statistical significance. Upregulated genes are represented in red, downregulated genes in blue, and top genes in each spectrum are highlighted. b–d Gene ontology enrichment corresponding to cellular components (b) and biological process (c) across the differential genes in MND. Biological pathway analysis of differentially regulated C/EBPβ targets based on REACTOME database (d). The terms are arranged by a number of differentially expressed genes associated to an enriched term and q values where FDR < 0.05 was considered significant. For full list of gene ontology terms and pathways, see Supplementary Tables S2, S3, S6
Fig. 3C/EBPβ targets in astrocytes are enriched for immune, metabolic, and signal transduction pathways. Chord diagram showing the enriched REACTOME pathways for differentially regulated C/EBPβ targets that are also astrocyte marker genes. For chord diagrams, individual pathways are shown in the right, and the enriched genes within the pathways are shown on the left. Squares following gene symbols represent the difference in expression between MND and CNHIV+ subjects. Complete list of the astrocyte marker genes that are also C/EBPβ targets is in Supplementary Table S7, and for enriched pathways corresponding to astrocyte marker genes, see Supplementary Table S8
Fig. 4Gene expression is altered in astroglia that overexpress C/EBPβ. a Relative expression of mRNA for C/EBPβ in astrocytes transfected with a control plasmid or a plasmid encoding the C/EBPβ gene. b Immunoblot for C/EBPβ using whole lysates from control astrocytes and astrocytes overexpressing the C/EBPβ gene. c Quantification of densitometry of the ~ 42 kDa band corresponding to C/EBPβ protein. d Relative expression of mRNA for DNM1L in astrocytes transfected with a control plasmid or a plasmid encoding the C/EBPβ gene. e Immunoblot for DNM1L using whole lysates from control astrocytes and astrocytes overexpressing C/EBPβ gene. f Quantification of densitometry of the ~ 90 kDa band corresponding to DNM1L protein. g–i Relative mRNA expression levels for IRAK1, BCL11B, and PINK1 in astroglia transfected with control plasmid of pC/EBPβ. Statistical significance was determined by an unpaired t test (*p < 0.05, **p < 0.01, ****p < 0.0001)
Fig. 5HIV Tat reduces neuronal and increases astroglial C/EBPβ mRNA and protein in vitro. Neuronal and astroglial cells were treated with recombinant HIV proteins (gp120, nef or Tat) for one or four days. a Relative expression of mRNA for C/EBPβ in neurons exposed to recombinant HIV proteins compared to vehicle-treated neurons. b Immunoblot for C/EBPβ using nuclear-enriched lysates from neurons exposed to vehicle or recombinant HIV proteins. c Quantification of densitometry of the the ~ 42 kDa band corresponding to C/EBPβ protein. d Relative expression of mRNA for C/EBPβ in astrocytes exposed recombinant HIV proteins compared to vehicle-treated astrocytes. e Immunoblot for C/EBPβ using nuclear-enriched lysates from astrocytes exposed to vehicle or recombinant HIV proteins. f Quantification of densitometry of the ~ 42 kDa band corresponding to C/EBPβ protein. Statistical analyses were performed by two-way ANOVA followed by Bonferonni’s post-hoc test