Manoel Arcisio-Miranda
Affiliations: | Physiology | University of Wisconsin, Madison, Madison, WI |
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"Manoel Arcisio-Miranda"Mean distance: 18.13 (cluster 32) | S | N | B | C | P |
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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 |