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Printable Handouts
Navigable Slide Index
- Introduction
- Complex protein interactions in local domains
- Cellular reactions in Ca2+- ‘nanodomains‘
- Analysis of protein nano-environments
- Experimental approach: mouse & rat brain
- Experimental approach: solubilization
- Experimental approach: affinity purification
- Experimental approach: MS analysis
- Quantification and evaluation (1)
- Quantification and evaluation (2)
- Nano-environments of Cav2 channels
- Details and ‘settings‘ of the proteomic approach
- Nano-environment: the channels‘ core
- Nano-environment: identified protein constituents
- Nano-environment circuitry
- Molecular model of Cav2 nano-environment (1)
- Molecular model of Cav2 nano-environment (2)
- Molecular model of Cav2 nano-environment (3)
- BKCa-Cav2 channels complexes (1)
- BKCa-Cav2 channels complexes (2)
- BKCa-Cav2.1 complexes in X. oocytes
- BKCa-Cav2.1: a prototypic ‘Ca2+ nano-domain‘
- Summary and conclusions
- Acknowledgements
Topics Covered
- Significance and molecular organization of local Ca2+ signalling
- Proteomic analysis of the nano-environment of voltage-gated Ca2+ (Cav) channels
- Structure and operation of the Cav2 channels from mammalian brain
- Operation of Cav-BK channel complexes
- Cav-BK complex as a prototypic Ca2+ nano-domain
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Talk Citation
Fakler, B. (2013, October 7). Protein networks of voltage-gated Ca2+ channels – proteomic & functional analysis of local Ca2+ signalling [Video file]. In The Biomedical & Life Sciences Collection, Henry Stewart Talks. Retrieved December 21, 2024, from https://doi.org/10.69645/DLAD1050.Export Citation (RIS)
Publication History
Financial Disclosures
- Prof. Bernd Fakler has not informed HSTalks of any commercial/financial relationship that it is appropriate to disclose.
Protein networks of voltage-gated Ca2+ channels – proteomic & functional analysis of local Ca2+ signalling
Published on October 7, 2013
34 min
A selection of talks on Neurology
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