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All references automaticaly matched for Kv1.7


20. Pubmed Ye F. et al. The Scorpion Toxin Analogue BmKTX-D33H as a Potential Kv1.3 Channel-Selective Immunomodulator for Autoimmune Diseases. Toxins (Basel), 2016 , 8 ().
19. Pubmed Bartok A. et al. Margatoxin is a non-selective inhibitor of human Kv1.3 K(+) channels. Toxicon, 2014 Sep , 87 (6-16).
18. Pubmed Carrisoza-Gaytán R. et al. Differential expression of the Kv1 voltage-gated potassium channel family in the rat nephron. J. Mol. Histol., 2014 Oct , 45 (583-97).
17. Pubmed Qu Y. et al. Remodeling of ion channel expression may contribute to electrophysiological consequences caused by methamphetamine in vitro and in vivo. Biochem. Biophys. Res. Commun., 2014 Jan 10 , 443 (441-6).
16. Pubmed Firth A. et al. Functional ion channels in human pulmonary artery smooth muscle cells: Voltage-dependent cation channels. Pulm Circ, 2011 Jan 1 , 1 (48-71).
15. Pubmed Chen P. et al. Biochemical characterization of kappaM-RIIIJ, a Kv1.2 channel blocker: evaluation of cardioprotective effects of kappaM-conotoxins. J. Biol. Chem., 2010 May 14 , 285 (14882-9).
14. Pubmed Rangaraju S. et al. Potassium channel modulation by a toxin domain in matrix metalloprotease 23. J. Biol. Chem., 2010 Mar 19 , 285 (9124-36).
13. Pubmed Zhu J. et al. The Kv1.2 potassium channel: the position of an N-glycan on the extracellular linkers affects its protein expression and function. Brain Res., 2009 Jan 28 , 1251 (16-29).
12. Pubmed Shoudai K. et al. Effects of various K+ channel blockers on spontaneous glycine release at rat spinal neurons. Brain Res., 2007 Jul 9 , 1157 (11-22).
11. Pubmed Hoegg S. et al. Phylogenomic analyses of KCNA gene clusters in vertebrates: why do gene clusters stay intact? BMC Evol. Biol., 2007 , 7 (139).
10. Pubmed García-Villegas R. et al. Potassium channels lost during harvesting of epithelial cells are restored with a kinetics that depends on channel species. Cell. Physiol. Biochem., 2007 , 20 (405-16).
9. Pubmed Fantozzi I. et al. Bone morphogenetic protein-2 upregulates expression and function of voltage-gated K+ channels in human pulmonary artery smooth muscle cells. Am. J. Physiol. Lung Cell Mol. Physiol., 2006 Nov , 291 (L993-1004).
8. Pubmed Finol-Urdaneta R. et al. Molecular and Functional Differences between Heart mKv1.7 Channel Isoforms. J. Gen. Physiol., 2006 Jul , 128 (133-45).
7. Pubmed Ordög B. et al. Gene expression profiling of human cardiac potassium and sodium channels. Int. J. Cardiol., 2006 Aug 28 , 111 (386-93).
6. Pubmed Barfield J. et al. Characterization of potassium channels involved in volume regulation of human spermatozoa. Mol. Hum. Reprod., 2005 Dec , 11 (891-7).
5. Pubmed Vennekamp J. et al. Kv1.3-blocking 5-phenylalkoxypsoralens: a new class of immunomodulators. Mol. Pharmacol., 2004 Jun , 65 (1364-74).
4. Pubmed Bardien-Kruger S. et al. Characterisation of the human voltage-gated potassium channel gene, KCNA7, a candidate gene for inherited cardiac disorders, and its exclusion as cause of progressive familial heart block I (PFHBI). Eur. J. Hum. Genet., 2002 Jan , 10 (36-43).
3. Pubmed Kashuba V. et al. Initial isolation and analysis of the human Kv1.7 (KCNA7) gene, a member of the voltage-gated potassium channel gene family. Gene, 2001 May 2 , 268 (115-22).
2. Pubmed Davies A. et al. Kv channel subunit expression in rat pulmonary arteries. Lung, 2001 , 179 (147-61).
1. Pubmed Kálmán K. et al. Genomic organization, chromosomal localization, tissue distribution, and biophysical characterization of a novel mammalian Shaker-related voltage-gated potassium channel, Kv1.7. J. Biol. Chem., 1998 Mar 6 , 273 (5851-7).