Methodological improvements for fluorescence recordings in Xenopus laevis oocytes
Author:
Affiliation:
1. Committee on Neurobiology, Department of Biochemistry and Molecular Biology, University of Chicago, Chicago, IL
2. Centro Interdisciplinario de Neurociencia de Valparaiso, Facultad de Ciencias, Universidad de Valparaiso, Valparaiso, Chile
Abstract
Funder
National Institutes of Health
Publisher
Rockefeller University Press
Subject
Physiology
Link
http://rupress.org/jgp/article-pdf/151/2/264/1236427/jgp_201812189.pdf
Reference19 articles.
1. Characterizing voltage-dependent conformational changes in the Shaker K+ channel with fluorescence;Cha;Neuron.,1997
2. Structural implications of fluorescence quenching in the Shaker K+ channel;Cha;J. Gen. Physiol.,1998
3. Human skin pigmentation: melanocytes modulate skin color in response to stress;Costin;FASEB J.,2007
4. The polarization of the G-protein activated potassium channel GIRK5 to the vegetal pole of Xenopus laevis oocytes is driven by a di-leucine motif;Díaz-Bello;PLoS One.,2013
5. Use of frog eggs and oocytes for the study of messenger RNA and its translation in living cells;Gurdon;Nature.,1971
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