Florey Department of Neuroscience and Mental Health - Research Publications

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    Diacetylbis(N(4)-methylthiosemicarbazonato) Copper(II) (CuII(atsm)) Protects against Peroxynitrite-induced Nitrosative Damage and Prolongs Survival in Amyotrophic Lateral Sclerosis Mouse Model
    Soon, CPW ; Donnelly, PS ; Turner, BJ ; Hung, LW ; Crouch, PJ ; Sherratt, NA ; Tan, J-L ; Lim, NK-H ; Lam, L ; Bica, L ; Lim, S ; Hickey, JL ; Morizzi, J ; Powell, A ; Finkelstein, DI ; Culvenor, JG ; Masters, CL ; Duce, J ; White, AR ; Barnham, KJ ; Li, Q-X (AMER SOC BIOCHEMISTRY MOLECULAR BIOLOGY INC, 2011-12-23)
    Amyotrophic lateral sclerosis (ALS) is a progressive paralyzing disease characterized by tissue oxidative damage and motor neuron degeneration. This study investigated the in vivo effect of diacetylbis(N(4)-methylthiosemicarbazonato) copper(II) (CuII(atsm)), which is an orally bioavailable, blood-brain barrier-permeable complex. In vitro the compound inhibits the action of peroxynitrite on Cu,Zn-superoxide dismutase (SOD1) and subsequent nitration of cellular proteins. Oral treatment of transgenic SOD1G93A mice with CuII(atsm) at presymptomatic and symptomatic ages was performed. The mice were examined for improvement in lifespan and motor function, as well as histological and biochemical changes to key disease markers. Systemic treatment of SOD1G93A mice significantly delayed onset of paralysis and prolonged lifespan, even when administered to symptomatic animals. Consistent with the properties of this compound, treated mice had reduced protein nitration and carbonylation, as well as increased antioxidant activity in spinal cord. Treatment also significantly preserved motor neurons and attenuated astrocyte and microglial activation in mice. Furthermore, CuII(atsm) prevented the accumulation of abnormally phosphorylated and fragmented TAR DNA-binding protein-43 (TDP-43) in spinal cord, a protein pivotal to the development of ALS. CuII(atsm) therefore represents a potential new class of neuroprotective agents targeting multiple major disease pathways of motor neurons with therapeutic potential for ALS.
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    Conservation of a Glycine-rich Region in the Prion Protein Is Required for Uptake of Prion Infectivity
    Harrison, CF ; Lawson, VA ; Coleman, BM ; Kim, Y-S ; Masters, CL ; Cappai, R ; Barnham, KJ ; Hill, AF (AMER SOC BIOCHEMISTRY MOLECULAR BIOLOGY INC, 2010-06-25)
    Prion diseases are associated with the misfolding of the endogenously expressed prion protein (designated PrP(C)) into an abnormal isoform (PrP(Sc)) that has infectious properties. The hydrophobic domain of PrP(C) is highly conserved and contains a series of glycine residues that show perfect conservation among all species, strongly suggesting it has functional and evolutionary significance. These glycine residues appear to form repeats of the GXXXG protein-protein interaction motif (two glycines separated by any three residues); the retention of these residues is significant and presumably relates to the functionality of PrP(C). Mutagenesis studies demonstrate that minor alterations to this highly conserved region of PrP(C) drastically affect the ability of cells to uptake and replicate prion infection in both cell and animal bioassay. The localization and processing of mutant PrP(C) are not affected, although in vitro and in vivo studies demonstrate that this region is not essential for interaction with PrP(Sc), suggesting these residues provide conformational flexibility. These data suggest that this region of PrP(C) is critical in the misfolding process and could serve as a novel, species-independent target for prion disease therapeutics.
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    Anionic Phospholipid Interactions of the Prion Protein N Terminus Are Minimally Perturbing and Not Driven Solely by the Octapeptide Repeat Domain
    Boland, MP ; Hatty, CR ; Separovic, F ; Hill, AF ; Tew, DJ ; Barnham, KJ ; Haigh, CL ; James, M ; Masters, CL ; Collins, SJ (AMER SOC BIOCHEMISTRY MOLECULAR BIOLOGY INC, 2010-10-15)
    Although the N terminus of the prion protein (PrP(C)) has been shown to directly associate with lipid membranes, the precise determinants, biophysical basis, and functional implications of such binding, particularly in relation to endogenously occurring fragments, are unresolved. To better understand these issues, we studied a range of synthetic peptides: specifically those equating to the N1 (residues 23-110) and N2 (23-89) fragments derived from constitutive processing of PrP(C) and including those representing arbitrarily defined component domains of the N terminus of mouse prion protein. Utilizing more physiologically relevant large unilamellar vesicles, fluorescence studies at synaptosomal pH (7.4) showed absent binding of all peptides to lipids containing the zwitterionic headgroup phosphatidylcholine and mixtures containing the anionic headgroups phosphatidylglycerol or phosphatidylserine. At pH 5, typical of early endosomes, quartz crystal microbalance with dissipation showed the highest affinity binding occurred with N1 and N2, selective for anionic lipid species. Of particular note, the absence of binding by individual peptides representing component domains underscored the importance of the combination of the octapeptide repeat and the N-terminal polybasic regions for effective membrane interaction. In addition, using quartz crystal microbalance with dissipation and solid-state NMR, we characterized for the first time that both N1 and N2 deeply insert into the lipid bilayer with minimal disruption. Potential functional implications related to cellular stress responses are discussed.
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    Trajectories of depressive and anxiety symptoms in older adults: a 6-year prospective cohort study
    Holmes, SE ; Esterlis, I ; Mazure, CM ; Lim, YY ; Ames, D ; Rainey-Smith, S ; Fowler, C ; Ellis, K ; Martins, RN ; Salvado, O ; Dore, V ; Villemagne, VL ; Rowe, CC ; Laws, SM ; Masters, CL ; Pietrzak, RH ; Maruff, P (WILEY, 2018-02)
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    Cerebrovascular disease, Alzheimer's disease biomarkers and longitudinal cognitive decline
    Yates, PA ; Villemagne, VL ; Ames, D ; Masters, CL ; Martins, RN ; Desmond, P ; Burnham, S ; Maruff, P ; Ellis, KA ; Rowe, CC (WILEY-BLACKWELL, 2016-06)
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    White Matter Hyperintensities Are a Core Feature of Alzheimer's Disease: Evidence from the Dominantly Inherited Alzheimer Network
    Lee, S ; Viqar, F ; Zimmerman, ME ; Narkhede, A ; Tosto, G ; Benzinger, TLS ; Marcus, DS ; Fagan, AM ; Goate, A ; Fox, NC ; Cairns, NJ ; Holtzman, DM ; Buckles, V ; Ghetti, B ; McDade, E ; Martins, RN ; Saykin, AJ ; Masters, CL ; Ringman, JM ; Ryan, NS ; Forster, S ; Laske, C ; Schofield, PR ; Sperling, RA ; Salloway, S ; Correia, S ; Jack, C ; Weiner, M ; Bateman, RJ ; Morris, JC ; Mayeux, R ; Brickman, AM (WILEY, 2016-06)
    OBJECTIVE: White matter hyperintensities (WMHs) are areas of increased signal on T2-weighted magnetic resonance imaging (MRI) scans that most commonly reflect small vessel cerebrovascular disease. Increased WMH volume is associated with risk and progression of Alzheimer's disease (AD). These observations are typically interpreted as evidence that vascular abnormalities play an additive, independent role contributing to symptom presentation, but not core features of AD. We examined the severity and distribution of WMH in presymptomatic PSEN1, PSEN2, and APP mutation carriers to determine the extent to which WMH manifest in individuals genetically determined to develop AD. METHODS: The study comprised participants (n = 299; age = 39.03 ± 10.13) from the Dominantly Inherited Alzheimer Network, including 184 (61.5%) with a mutation that results in AD and 115 (38.5%) first-degree relatives who were noncarrier controls. We calculated the estimated years from expected symptom onset (EYO) by subtracting the affected parent's symptom onset age from the participant's age. Baseline MRI data were analyzed for total and regional WMH. Mixed-effects piece-wise linear regression was used to examine WMH differences between carriers and noncarriers with respect to EYO. RESULTS: Mutation carriers had greater total WMH volumes, which appeared to increase approximately 6 years before expected symptom onset. Effects were most prominent for the parietal and occipital lobe, which showed divergent effects as early as 22 years before estimated onset. INTERPRETATION: Autosomal-dominant AD is associated with increased WMH well before expected symptom onset. The findings suggest the possibility that WMHs are a core feature of AD, a potential therapeutic target, and a factor that should be integrated into pathogenic models of the disease. Ann Neurol 2016;79:929-939.
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    Amyloid burden and incident depressive symptoms in cognitively normal older adults
    Harrington, KD ; Gould, E ; Lim, YY ; Ames, D ; Pietrzak, RH ; Rembach, A ; Rainey-Smith, S ; Martins, RN ; Salvado, O ; Villemagne, VL ; Rowe, CC ; Masters, CL ; Maruff, P (WILEY, 2017-04)
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    Effect of BDNFVal66Met on disease markers in dominantly inherited Alzheimer's disease
    Lim, YY ; Hassenstab, J ; Goate, A ; Fagan, AM ; Benzinger, TLS ; Cruchaga, C ; McDade, E ; Chhatwal, J ; Levin, J ; Farlow, MR ; Graff-Radford, NR ; Laske, C ; Masters, CL ; Salloway, S ; Schofield, P ; Morris, JC ; Maruff, P ; Bateman, RJ (WILEY, 2018-09)
    OBJECTIVE: Previous studies suggest that the brain-derived neurotrophic factor (BDNF) Val66Met (rs6265) polymorphism may influence symptom onset in Alzheimer's disease (AD). Our recent cross-sectional findings suggest that Met66 may influence clinical expression in dominantly inherited AD (DIAD) through its effects on tau. However, it remains unclear whether carriage of Met66 in DIAD results in faster increases in cerebrospinal fluid (CSF) tau and ptau181 , and whether these increases are associated with accelerated brain volume loss and memory decline. METHODS: A total of 211 subjects (101 mutation noncarriers, 110 mutation carriers), who were cognitively normal, as defined by a Clinical Dementia Rating global score of 0, completed assessments of cognitive function, neuroimaging, and CSF sampling over 3.5 years as part of the Dominantly Inherited Alzheimer's Network. RESULTS: In mutation carriers, Met66 carriers showed faster memory decline (4×), hippocampal volume loss (16×), and CSF tau and ptau181 increases (6×) than Val66 homozygotes. BDNF did not influence rates of cortical β-amyloid accumulation or change in CSF Aβ42 levels in mutation carriers. In mutation noncarriers, BDNF genotype had no effect on change in cognition, brain volume, cortical β-amyloid accumulation, or change in any CSF measures of tau, ptau181 , and CSF Aβ42 . INTERPRETATION: As in sporadic AD, the deleterious effects of β-amyloid on cognitive function, brain volume loss, and CSF tau in DIAD mutation carriers are less in Val66 homozygotes. The BDNF Val66Met polymorphism should be considered as a potential moderator of clinical trial outcomes in current treatment and prevention trials in DIAD and sporadic AD. Ann Neurol 2018;84:424-435.
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    Quantitative Amyloid Imaging in Autosomal Dominant Alzheimer's Disease: Results from the DIAN Study Group (vol 11, e0152082, 2016)
    Su, Y ; Blazey, TM ; Owen, CJ ; Christensen, JJ ; Friedrichsen, K ; Joseph-Mathurin, N ; Wang, Q ; Hornbeck, RC ; Ances, BM ; Snyder, AZ ; Cash, LA ; Koeppe, RA ; Klunk, WE ; Galasko, D ; Brickman, AM ; McDade, E ; Ringman, JM ; Thompson, PM ; Saykin, AJ ; Ghetti, B ; Sperling, RA ; Johnson, KA ; Salloway, SP ; Schofield, PR ; Masters, CL ; Villemagne, VL ; Fox, NC ; Forster, S ; Chen, K ; Reiman, EM ; Xiong, C ; Marcus, DS ; Weiner, MW ; Morris, JC ; Bateman, RJ ; Benzinger, TLS (PUBLIC LIBRARY SCIENCE, 2016-09-20)
    [This corrects the article DOI: 10.1371/journal.pone.0152082.].
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    White matter diffusion alterations precede symptom onset in autosomal dominant Alzheimer's disease
    Caballero, MAA ; Suarez-Calvet, M ; Duering, M ; Franzmeier, N ; Benzinger, T ; Fagan, AM ; Bateman, RJ ; Jack, CR ; Levin, J ; Dichgans, M ; Jucker, M ; Karch, C ; Masters, CL ; Morris, JC ; Weiner, M ; Rossor, M ; Fox, NC ; Lee, J-H ; Salloway, S ; Danek, A ; Goate, A ; Yakushev, I ; Hassenstab, J ; Schofield, PR ; Haass, C ; Ewers, M (OXFORD UNIV PRESS, 2018-10)
    White matter alterations are present in the majority of patients with Alzheimer's disease type dementia. However, the spatiotemporal pattern of white matter changes preceding dementia symptoms in Alzheimer's disease remains unclear, largely due to the inherent diagnostic uncertainty in the preclinical phase and increased risk of confounding age-related vascular disease and stroke in late-onset Alzheimer's disease. In early-onset autosomal-dominantly inherited Alzheimer's disease, participants are destined to develop dementia, which provides the opportunity to assess brain changes years before the onset of symptoms, and in the absence of ageing-related vascular disease. Here, we assessed mean diffusivity alterations in the white matter in 64 mutation carriers compared to 45 non-carrier family non-carriers. Using tract-based spatial statistics, we mapped the interaction of mutation status by estimated years from symptom onset on mean diffusivity. For major atlas-derived fibre tracts, we determined the earliest time point at which abnormal mean diffusivity changes in the mutation carriers were detectable. Lastly, we assessed the association between mean diffusivity and cerebrospinal fluid biomarkers of amyloid, tau, phosphorylated-tau, and soluble TREM2, i.e. a marker of microglia activity. Results showed a significant interaction of mutations status by estimated years from symptom onset, i.e. a stronger increase of mean diffusivity, within the posterior parietal and medial frontal white matter in mutation carriers compared with non-carriers. The earliest increase of mean diffusivity was observed in the forceps major, forceps minor and long projecting fibres-many connecting default mode network regions-between 5 to 10 years before estimated symptom onset. Higher mean diffusivity in fibre tracts was associated with lower grey matter volume in the tracts' projection zones. Global mean diffusivity was correlated with lower cerebrospinal fluid levels of amyloid-β1-42 but higher levels of tau, phosphorylated-tau and soluble TREM2. Together, these results suggest that regionally selective white matter degeneration occurs years before the estimated symptom onset. Such white matter alterations are associated with primary Alzheimer's disease pathology and microglia activity in the brain.