Manoel Arcisio-Miranda

Affiliations: 
Physiology University of Wisconsin, Madison, Madison, WI 
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"Manoel Arcisio-Miranda"
Mean distance: 18.13 (cluster 32)
 
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Publications

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Orts DJB, Arcisio-Miranda M. (2021) Cell glycosaminoglycans content modulates human voltage-gated proton channel (H 1) gating. The Febs Journal
Ribeiro-Silva L, Arcisio-Miranda M. (2020) Molecular Basis of Voltage-Gated Proton Channel's Intracellular Trafficking Biophysical Journal. 118: 275a
Alves VS, Alves-Silva HS, Orts DJB, et al. (2019) Calcium Signaling in Neurons and Glial Cells: Role of Cav1 channels. Neuroscience. 421: 95-111
Bozelli JC, Salay LC, Arcisio-Miranda M, et al. (2019) A comparison of activity, toxicity, and conformation of tritrpticin and two TOAC-labeled analogues. Effects on the mechanism of action. Biochimica Et Biophysica Acta. Biomembranes. 183110
B Orts DJ, Peigneur S, Silva-Gonçalves LC, et al. (2018) AbeTx1 Is a Novel Sea Anemone Toxin with a Dual Mechanism of Action on Shaker-Type K⁺ Channels Activation. Marine Drugs. 16
Paninka RM, Carlos-Lima E, Lindsey SC, et al. (2017) Down-regulation of Kir2.6 channel by c-termini mutation D252N and its association with the susceptibility to thyrotoxic periodic paralysis. Neuroscience
Medeiros D, Silva-Gonçalves LD, da Silva AM, et al. (2017) Membrane-mediated action of the endocannabinoid anandamide on membrane proteins: implications for understanding the receptor-independent mechanism. Scientific Reports. 7: 41362
Ribeiro-Silva L, Queiroz FO, da Silva AM, et al. (2016) Voltage-gated proton channels in human glioblastoma multiforme cells. Acs Chemical Neuroscience
Paninka RM, Mazzotti DR, Kizys MM, et al. (2016) Whole genome and exome sequencing realignment supports the assignment of KCNJ12, KCNJ17, and KCNJ18 paralogous genes in thyrotoxic periodic paralysis locus: functional characterization of two polymorphic Kir2.6 isoforms. Molecular Genetics and Genomics : Mgg
Cabrera MP, Baldissera G, Silva-Gonçalves Lda C, et al. (2014) Combining experimental evidence and molecular dynamic simulations to understand the mechanism of action of the antimicrobial octapeptide jelleine-I. Biochemistry. 53: 4857-68
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