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Trent U. Steidinger Sunny R. Slone Huiping Ding David G. Standaert Talene A. Yacoubian 《PloS one》2013,8(2)
The angiogenic factor, angiogenin, has been recently linked to both Amyotrophic Lateral Sclerosis (ALS) and Parkinson Disease (PD). We have recently shown that endogenous angiogenin levels are dramatically reduced in an alpha-synuclein mouse model of PD and that exogenous angiogenin protects against cell loss in neurotoxin-based cellular models of PD. Here, we extend our studies to examine whether activation of the prosurvival Akt pathway is required for angiogenin''s neuroprotective effects against 1-methyl-4-phenylpyridinium (MPP+), as observed in ALS models, and to test the effect of virally-mediated overexpression of angiogenin in an in vivo PD model. Using a dominant negative Akt construct, we demonstrate that inhibition of the Akt pathway does not reduce the protective effect of angiogenin against MPP+ toxicity in the dopaminergic SH-SY5Y cell line. Furthermore, an ALS-associated mutant of angiogenin, K40I, which fails to induce Akt phosphorylation, was similar to wildtype angiogenin in protection against MPP+. These results confirm previous work showing neuroprotective effects of angiogenin against MPP+, and indicate that Akt is not required for this protective effect. We also investigated whether adeno-associated viral serotype 2 (AAV2)-mediated overexpression of angiogenin protects against dopaminergic neuron loss in the 1-methyl-4-phenyl-1,2,3,6-tetrahydropyridine (MPTP) mouse model. We found that angiogenin overexpression using this approach does not reduce the MPTP-induced degeneration of dopaminergic cells in the substantia nigra, nor limit the depletion of dopamine and its metabolites in the striatum. Together, these findings extend the evidence for protective effects of angiogenin in vitro, but also suggest that further study of in vivo models is required to translate these effects into meaningful therapies. 相似文献
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Matthew A. McBrian Iman Saramipoor Behbahan Roberto Ferrari Trent Su Ta-Wei Huang Kunwu Li Candice S. Hong Heather R. Christofk Maria Vogelauer David B. Seligson Siavash K. Kurdistani 《Molecular cell》2013,49(2):310-321
Highlights? Global levels of histone acetylation change in response to pHi alterations ? Histone deacetylation and acetate transport through H+-coupled MCTs regulates pHi ? Proliferation of T cells results in increases in pHi and global histone acetylation ? HDAC and MCT inhibitors decrease pHi 相似文献
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Yoni Gavish Hadar Kedem Irit Messika Carmit Cohen Evelyn Toh Daniel Munro Qunfeng Dong Clay Fuqua Keith Clay Hadas Hawlena 《PloS one》2014,9(10)
Relationships between host and microbial diversity have important ecological and applied implications. Theory predicts that these relationships will depend on the spatio-temporal scale of the analysis and the niche breadth of the organisms in question, but representative data on host-microbial community assemblage in nature is lacking. We employed a natural gradient of rodent species richness and quantified bacterial communities in rodent blood at several hierarchical spatial scales to test the hypothesis that associations between host and microbial species diversity will be positive in communities dominated by organisms with broad niches sampled at large scales. Following pyrosequencing of rodent blood samples, bacterial communities were found to be comprised primarily of broad niche lineages. These communities exhibited positive correlations between host diversity, microbial diversity and the likelihood for rare pathogens at the regional scale but not at finer scales. These findings demonstrate how microbial diversity is affected by host diversity at different spatial scales and suggest that the relationships between host diversity and overall disease risk are not always negative, as the dilution hypothesis predicts. 相似文献
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Ros Mickael Suggett David J. Edmondson John Haydon Trent Hughes David J. Kim Mikael Guagliardo Paul Bougoure Jeremy Pernice Mathieu Raina Jean-Baptiste Camp Emma F. 《Coral reefs (Online)》2021,40(2):595-607
Coral Reefs - Symbiosis between reef-building corals and unicellular algae (Symbiodiniaceae) fuels the growth and productivity of corals reefs. Capacity for Symbiodiniaceae to fix inorganic carbon... 相似文献
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