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Titlebook: Electrophysiology of Unconventional Channels and Pores; Anne H. Delcour Book 2015 Springer International Publishing Switzerland 2015 elect

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https://doi.org/10.1007/978-3-030-48145-2g by electrical field, medium pH, and membrane lipid composition. The second part of this review addresses the novel mechanism of VDAC regulation by dimeric tubulin, an abundant cytosolic protein, and the physiological implications of the uncovered VDAC-tubulin interaction. One of the intriguing con
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Doing Generation, Performing the Mission,the flow of ions and molecules in the resting state. Combined with structural data, electrophysiological studies have allowed the discovery of structure-function relationships that shed light on functional mechanisms. In some cases, the channel properties have been investigated in the presence of na
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Einleitung und Erkenntnisinteresse,f these non-enzymatic staphylococcal β-PFTs is the homoheptameric α-hemolysin (αHL) protein. Moreover, . has the ability to secrete up to four heteromeric, bi-component β-PFTs. Although the homomeric and heteromeric β-PFTs are related in sequence, homology, and structure, they demonstrate distinct b
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https://doi.org/10.1007/978-3-531-92601-8ials upon light activation and trigger downstream behavioral responses. However, the wild type properties of ChR2 limit the utility of this protein in biomedical applications. Therefore, understanding the underlying structural changes and mechanism of ion translocation for ChRs will be crucial for t
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Bacterial Porinss. Single channel current and reversal potential measurements obtained from planar bilayer electrophysiology are analyzed either using continuum electrodiffusion models or with the aid of simple statistical mechanics concepts.
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