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Robinson, E. S. J.

Publications and source records attributed to Robinson, E. S. J..

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Behavioural and molecular characterisation of the Dlg2 haploinsufficiency rat model of genetic risk for psychiatric disorder

Genetic studies implicate disruption to the DLG2 gene in copy number variants as increasing risk for schizophrenia, autism spectrum disorders and intellectual disability. To investigate psychiatric endophenotypes associated with DLG2 haploinsufficiency (and concomitant PSD-93 protein reduction) a novel clinically relevant Dlg2+/- rat was assessed for abnormalities in anxiety, sensorimotor gating, hedonic reactions, social behaviour, and locomotor response to the N-Methyl-D-aspartic acid receptor antagonist phencyclidine. Dlg gene and protein expression were also investigated to assess model validity. Reductions in PSD-93 messenger RNA and protein were observed in the absence of compensation by other related genes or proteins. Behaviourally Dlg2+/- rats show potentiated locomotor response to phencyclidine, as is typical of psychotic disorder models, in the absence of deficits in the other behavioural phenotypes assessed here. This shows that the behavioural effects of Dlg2 haploinsufficiency may specifically relate to psychosis vulnerability but are subtle, providing a contrast to the gross deficits in Dlg2 homozygous models (Winkler, et al., 2018; Yoo et al., 2020a) which do not so specifically model the single chromosome DLG2 deletion in carriers of risk-associated copy number variants.

genetics

Reduced expression of the psychiatric risk gene DLG2 (PSD93) impairs hippocampal synaptic integration and plasticity

Background: Genetic variations indicating loss of function in the DLG2 gene have been associated with markedly increased risk for schizophrenia, autism spectrum disorder, and intellectual disability. DLG2 encodes the postsynaptic scaffolding protein DLG2 (PSD93) that interacts with NMDA receptors, potassium channels, and cytoskeletal regulators but the net impact of these interactions on synaptic plasticity, likely underpinning cognitive impairments associated with these conditions, remains unclear. Methods: Hippocampal CA1 neuronal excitability and synaptic function were investigated in a novel clinically relevant heterozygous Dlg2+/- rat model using ex vivo patch-clamp electrophysiology, pharmacology, and computational modelling. Results: Dlg2+/- rats had increased NMDA receptor-mediated synaptic currents and, conversely, impaired associative long-term potentiation. This impairment resulted from an increase in potassium channel function leading to a decrease in input resistance and reduced supra-linear dendritic integration during induction of associative long-term potentiation. Enhancement of dendritic excitability by blockade of potassium channels or activation of muscarinic M1 receptors with selective allosteric agonist 77-LH-28-1 reduced the threshold for dendritic integration and 77-LH-28-1 rescued the associative long-term potentiation impairment in the Dlg2+/- rats. Conclusions: Despite increasing synaptic NMDA receptor currents, the combined impact of reduced DLG2 impairs synaptic integration in dendrites resulting in disrupted associative synaptic plasticity. This biological phenotype can be reversed by compound classes used clinically such as muscarinic M1 receptor agonists and is therefore a potential target for therapeutic intervention.

neuroscience

Investigation of reward learning and feedback sensitivity in non-clinical participants with a history of early life stress

Early life stress (ELS) is an important risk factor for the development of depression. Impairments in reward learning and feedback sensitivity are suggested to be an intermediate phenotype in depression aetiology therefore we hypothesised that similar impairments are present in healthy adults with a history of ELS. We recruited 64 adults with high levels of ELS and no diagnosis of a current mental health disorder and 65 controls. Participants completed the probabilistic reversal learning task and probabilistic reward task followed by depression, anhedonia, social status, and stress scales. Participants with high levels of ELS showed decreased positive feedback sensitivity in the probabilistic reversal learning task compared to controls. High ELS participants also trended towards possessing a decreased model-free learning rate. This was coupled with a decreased learning ability in the acquisition phase of block 1 following the practice session. Neither group showed a reward induced response bias in the probabilistic reward task however high ELS participants exhibited decreased stimuli discrimination. Due to the PRT not meeting its primary endpoint a separate cohort of control participants were tested in a modified PRT where they showed a response bias. This indicates the PRT can be successfully carried out online. Overall, these data suggest that healthy participants without a mental health diagnosis and high levels of ELS show deficits in positive feedback sensitivity and reward learning in the probabilistic reversal learning task that are distinct from depressed patients. These deficits may be relevant to increased depression vulnerability.

neuroscience

Evidence for an apathy phenotype in aged mice

Apathy is widely reported in patients with neurological disorders or post viral infection but is also seen in otherwise-healthy aged individuals. This study investigated whether aged mice express behavioural and physiological changes indicative of an apathy phenotype. Using measures of motivation to work for reward, we found deficits in the progressive ratio task related to rate of responding. In an effort for reward task, aged mice were less willing to exert effort for high value reward. Aged mice exhibited reduced reward sensitivity and expressed lower measures of anxiety in the novelty supressed feeding test. In a test of cognition (novel object recognition) aged mice showed no impairments but activity was lower in a measure of exploration in a novel environment. Aged mice also showed an attenuated response to restraint stress with lower corticosterone and reduced paraventricular nucleus c-fos activation. Together, these data suggest aged mice show reduced goal-directed behaviour and reduced reward sensitivity and stress reactivity, reflective of emotional blunting and may be a suitable model for pre-clinical apathy research.Competing Interest StatementThe authors have declared no competing interest.AbbreviationsBLAbasolateral amygdalaCeAcentral amygdalaCORTcorticosteroneEBDMeffort-based decision makingEfReffort for rewardESElectrosprayHLPChigh performance liquid chromatographyMSmass spectrometryNORTnovel object recognition testNSFTnovelty supressed feeding testPRprogressive ratioPVNparaventricular nucleus of the hypothalamusSPTsucrose preference testView Full Text

animal behavior and cognition