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Summary Expression Phenotypes Gene Literature (12) GO Terms (4) Nucleotides (249) Proteins (50) Interactants (332) Wiki

Papers associated with serpine2

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2 paper(s) referencing morpholinos

Results 1 - 12 of 12 results

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Uncoupling sodium channel dimers restores the phenotype of a pain-linked Nav 1.7 channel mutation., Rühlmann AH, Körner J, Hausmann R, Bebrivenski N, Neuhof C, Detro-Dassen S, Hautvast P, Benasolo CA, Meents J, Machtens JP, Schmalzing G, Lampert A., Br J Pharmacol. October 1, 2020; 177 (19): 4481-4496.                          

Structure-Activity Studies of Cysteine-Rich α-Conotoxins that Inhibit High-Voltage-Activated Calcium Channels via GABA(B) Receptor Activation Reveal a Minimal Functional Motif., Carstens BB, Berecki G, Daniel JT, Lee HS, Jackson KA, Tae HS, Sadeghi M, Castro J, O'Donnell T, Deiteren A, Brierley SM, Craik DJ, Adams DJ, Clark RJ., Angew Chem Int Ed Engl. April 4, 2016; 55 (15): 4692-6.

The serpin PN1 is a feedback regulator of FGF signaling in germ layer and primary axis formation., Acosta H, Iliev D, Grahn TH, Gouignard N, Maccarana M, Griesbach J, Herzmann S, Sagha M, Climent M, Pera EM., Development. March 15, 2015; 142 (6): 1146-58.                                    

Structural insights into phenylethanolamines high-affinity binding site in NR2B from binding and molecular modeling studies., Ng FM, Geballe MT, Snyder JP, Traynelis SF, Low CM., Mol Brain. October 29, 2008; 1 16.            

Defining synphenotype groups in Xenopus tropicalis by use of antisense morpholino oligonucleotides., Rana AA, Collart C, Gilchrist MJ, Smith JC., PLoS Genet. November 17, 2006; 2 (11): e193.                                    

Inhibition of prostasin-induced ENaC activities by PN-1 and regulation of PN-1 expression by TGF-beta1 and aldosterone., Wakida N, Kitamura K, Tuyen DG, Maekawa A, Miyoshi T, Adachi M, Shiraishi N, Ko T, Ha V, Nonoguchi H, Tomita K., Kidney Int. October 1, 2006; 70 (8): 1432-8.

A Serpin family gene, protease nexin-1 has an activity distinct from protease inhibition in early Xenopus embryos., Onuma Y, Asashima M, Whitman M., Mech Dev. June 1, 2006; 123 (6): 463-71.        

Exploration of the extracellular space by a large-scale secretion screen in the early Xenopus embryo., Pera EM, Hou S, Strate I, Wessely O, De Robertis EM., Int J Dev Biol. January 1, 2005; 49 (7): 781-96.                                  

Distinction among neuronal subtypes of voltage-activated sodium channels by mu-conotoxin PIIIA., Safo P, Rosenbaum T, Shcherbatko A, Choi DY, Han E, Toledo-Aral JJ, Olivera BM, Brehm P, Mandel G., J Neurosci. January 1, 2000; 20 (1): 76-80.

Voltage-dependent sodium channel function is regulated through membrane mechanics., Shcherbatko A, Ono F, Mandel G, Brehm P., Biophys J. October 1, 1999; 77 (4): 1945-59.

Activation of shaker potassium channels. I. Characterization of voltage-dependent transitions., Schoppa NE, Sigworth FJ., J Gen Physiol. February 1, 1998; 111 (2): 271-94.                                  

A novel tetrodotoxin-sensitive, voltage-gated sodium channel expressed in rat and human dorsal root ganglia., Sangameswaran L, Fish LM, Koch BD, Rabert DK, Delgado SG, Ilnicka M, Jakeman LB, Novakovic S, Wong K, Sze P, Tzoumaka E, Stewart GR, Herman RC, Chan H, Eglen RM, Hunter JC., J Biol Chem. June 6, 1997; 272 (23): 14805-9.

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