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Ion channels are membrane proteins activated by sensing stimuli such as membrane voltage, ligand binding or temperature and transduce this information into conformational changes that open the channel pore. A key question that my laboratory is trying to answer is how do the protein domains involved in sensing stimuli (sensors) and opening the pore (gates) communicate. We are interested in two type of channels transient receptor potential (TRP) channels that confer thermosensation and Ca2+- and voltage-activate K+ channels because they are unique to the extent that they integrate a variety of physical and chemical stimuli.
Ion channels are membrane proteins activated by sensing stimuli such as membrane voltage, ligand binding or temperature and transduce this information into conformational changes that open the channel pore. A key question that my laboratory is trying to answer is how do the protein domains involved in sensing stimuli (sensors) and opening the pore (gates) communicate. We are interested in two type of channels transient receptor potential (TRP) channels that confer thermosensation and Ca2+- and voltage-activate K+ channels because they are unique to the extent that they integrate a variety of physical and chemical stimuli.
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INTERNATIONAL JOURNAL OF MOLECULAR SCIENCESno. 1 (2024)
International Journal of Molecular Sciencesno. 1 (2024): 426
Felipe Echeverria, Naileth Gonzalez-Sanabria, Rosangelina Alvarado-Sanchez, Miguel Fernandez, Karen Castillo,Ramon Latorre
Karen Castillo,Yorley Duarte,Ignacio A Segura, Rodrigo Meza, Carlos Ancaten, Karina Carvajal-Zamorano,Rosa Scala,Domenico Tricarico,Andres Chavez,Ramon Latorre
Proceedings of the National Academy of Sciences of the United States of Americano. 1 (2022)
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