bioRxiv Science⌕ Search

Biology subjects

Cunningham, L. A.

Publications and source records attributed to Cunningham, L. A..

3 recordsLinked to original sources

Parkinson's disease-associated LRRK2 risk variant, G2385R, enhances Rab substrate phosphorylation and impairs neuronal integrity

Mutations in the LRRK2 gene are the most frequent cause of familial Parkinsons disease (PD) whereas common variants are associated with an increased risk for sporadic PD. LRRK2 encodes a multi-domain protein displaying two functional enzymatic activities: GTPase and kinase. Familial LRRK2 mutations have been linked to alterations in its GTPase and kinase activities, elevated substrate phosphorylation, as well as increased neurotoxicity in cell and animal models. In addition to familial mutations, several common LRRK2 coding variants have been associated with PD risk in different ethnic populations. Little is known about how these coding variants modulate the risk of developing PD. In this study, we aim to evaluate whether a collection of LRRK2 coding risk variants (A419V, N551K, R1398H, R1628P, M1646T, S1647T, G2385R) modify the biochemical properties of the LRRK2 protein and LRRK2-mediated neurotoxicity using cell-based assays. With the exception of G2385R, we find that coding risk variants have minimal impact on LRRK2 steady-state protein levels, GTP-binding, phosphorylation at Ser910, Ser935, and Ser1292, and subcellular localization in human cell lines and cultured primary neurons. G2385R reduces the steady-state levels of LRRK2 and exhibits reduced phosphorylation at Ser910/Ser935 and Ser1292, consistent with diminished kinase activity. Notably, however, LRRK2 variants associated with increased PD risk (A419V, R1628P, M1646T, and G2385R) significantly elevate the levels of LRRK2-mediated Rab10 phosphorylation by two-fold in cells. In contrast, LRRK2 variants associated with reduced PD risk (N551K, R1398H, and N551K-R1398H) do not alter normal LRRK2-mediated pRab10 levels. Intriguingly, we find that both PD-risk and PD-protective LRRK2 variants can respond normally to kinase activation by different lysosomal stressors (chloroquine, nigericin and monensin) to robustly induce pRab10 levels in cells. The PD risk variant, G2385R LRRK2, significantly inhibits neurite outgrowth in primary cortical neurons compared to wild-type LRRK2. Combining each coding risk variant with the familial G2019S mutation has minimal impact on the elevated kinase activity of G2019S LRRK2 or its capacity to inhibit neurite outgrowth. Our study indicates that LRRK2-dependent Rab phosphorylation represents a relevant readout of PD risk induced by LRRK2 coding variants and demonstrates that the PD risk variant, G2385R LRRK2, creates a hyperactive kinase that can impair neuronal integrity at comparable levels to the effects of G2019S LRRK2.

neuroscience↗

Fluoxetine for Prenatal Alcohol-Exposed Mice: Addressing Impaired Enrichment-Mediated Neurogenesis

BackgroundFetal alcohol spectrum disorder (FASD) encompasses a variety of disorders that occur after a fetus has been exposed to alcohol. Hippocampal related issues are a common neurological deficit found in FASD. The dentate gyrus within the hippocampus is a unique area of the brain that continues to generate new neurons into adulthood. This neurogenesis can be enhanced by an enriched environment (EE); however in prenatal alcohol exposed (PAE) mice this EE-mediated neurogenesis is impaired. In addition to EE, selective serotonin reuptake inhibitors (SSRIs), such as fluoxetine, also promote neurogenesis. Here we examine if fluoxetine restores the impaired EE-mediated neurogenesis of PAE mice. MethodPAE mice were generated using a voluntary limited access model where mice received a 10% ethanol (w/v) solution during gestation. To evaluate neurogenesis, we use a NestinCreT2:tdTomato transgenic mouse line in which newborn dentate granule cells (nDGCs) can be evaluated by tdTomato flourescence. PAE and saccharine control (SAC) mice were placed in either standard housing (SH) or enriched environment (EE). Subsequently, we administered fluoxetine (FLX) or vehicle (VEH) after which neurogenesis was evaluated. ResultsPAE resulted in impaired EE-mediated neurogenesis. This neurogenic impairment was not restored by FLX. Interestingly, FLX did increase neurogenesis in PAE mice while housed in SH. ConclusionThese results suggest that there is a neurogenic ceiling in PAE mice that cannot be increased by fluoxetine in EE. However, fluoxetine can increase neurogenesis while the environment is less complex.

neuroscience↗

Comparative Analysis of Test Tube and Volumetric Drinking Monitor Methods in Voluntary Ethanol Consumption in Female Mice for Prenatal Alcohol Exposure

ObjectiveFetal alcohol spectrum disorders affect approximately 1 in 20 school age children in the United States of America. To study fetal alcohol spectrum disorders, mouse models are commonly used. Of the many approaches of gestational exposure, voluntary drinking paradigms represent the most similar mechanism of drinking as human exposure. These exposures can be done through low-tech solutions such as test tubes (TT), or more high-tech methods such as a volumetric drinking monitor (VDM). Here were compare the TT method and the VDM directly, to evaluate their effect on female mouse drinking. MethodWe adapted a drinking in the dark, active cycle, limited access (4 hr.) voluntary drinking paradigm first described by Brady et al. (2012) to test tubes and the volumetric drinking monitor. 8 mice were placed in either drinking method and we evaluated their drinking volume and blood alcohol concentrations (BACs). We compared the values for each group using t-tests. ResultsAfter 2 weeks of drinking 10% ethanol with 0.4% saccharine, BACs were not significantly different [t(14)=0.2681, p=0.7935] between the VDM (81.56 {+/-} 21.16 mg/dL) vs.TT (73.14 {+/-} 23.20 mg/dL) groups. Calculated intake of ethanol (g/kg) on the day of blood draw for BAC analysis was also not significantly different [t(14)=0.4308, p=0.6732] between VDM (2.985 {+/-} 0.4127) vs.TT (3.260 {+/-} 0.4863; Fig 1B) groups. O_FIG O_LINKSMALLFIG WIDTH=139 HEIGHT=200 SRC="FIGDIR/small/658718v1_fig1.gif" ALT="Figure 1"> View larger version (15K): org.highwire.dtl.DTLVardef@5f3ad4org.highwire.dtl.DTLVardef@f45edorg.highwire.dtl.DTLVardef@b7d7f8org.highwire.dtl.DTLVardef@1c40c63_HPS_FORMAT_FIGEXP M_FIG O_FLOATNOFig 1.C_FLOATNO C_FIG ConclusionsTest tube or VDM resulted in similar average daily ethanol consumption and resultant BACs in female mice

neuroscience↗