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Impact of genetic variation on synaptic protein levels in genetically diverse mice.

Proteomics. 2016; 
Loos M,, Li KW, van der Schors R, Gouwenberg Y, van der Loo R, Williams RW, Smit AB, Spijker S.
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Catalog Antibody After blocking and incubation of the first antibody in PBS-Tween 5% milk powder ON at 4⬚C with either GluN2B (NR2B) 1:1000 (Neuromab, Davis, CA, USA), GluA1 1:1000 (GenScript, Piscataway, NJ, USA), Calnexin 1:1000 (ENZO Life Sciences BVA, Raamsdonkveer, The Netherlands) the blot was washed and incubated for 1 h at RT with HRP or alkaline phosphatase (AP)-conjugated secondary antibody (1:10 000; GE Healthcare, Diegem, Belgium). Get A Quote

摘要

The relative abundance of synaptic proteins shapes protein complex formation and is essential for synapse function and behavioral fitness. Here, we have used a panel of highly diverse inbred strains of mice-NOD/LtJ, A/J, 129S1/SvImJ, FVB/NJ, C57BL/6J, WSB/EiJ, PWK/PhJ, and CAST/EiJ-to quantify the effects of genetic variation on the synaptic proteome between strains. Using iTRAQ-based quantitative proteome analyses, we detected significant differences in ∼20% of 400 core synaptic proteins. Surprisingly, the differentially abundant proteins showed a modest range of variation across strains, averaging about 1.3-fold. Analysis of protein abundance covariation across the eight strains identified known protein-pro... More

关键词

Animal proteomics; Brain; Genetic reference panel; Heritability; Inbred strain; Synapse