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Role for regulated phosphatase activity in generating mitotic oscillations in Xenopus cell-free extracts., Zhang T, Tyson JJ, Novák B., Proc Natl Acad Sci U S A. December 17, 2013; 110 (51): 20539-44.


Regulation of NKCC2 activity by inhibitory SPAK isoforms: KS-SPAK is a more potent inhibitor than SPAK2., Park HJ, Curry JN, McCormick JA., Am J Physiol Renal Physiol. December 15, 2013; 305 (12): F1687-96.


Role of connexin 32 hemichannels in the release of ATP from peripheral nerves., Nualart-Marti A, del Molino EM, Grandes X, Bahima L, Martin-Satué M, Puchal R, Fasciani I, González-Nieto D, Ziganshin B, Llobet A, Barrio LC, Solsona C., Glia. December 1, 2013; 61 (12): 1976-89.


Relative CO₂/NH₃ permeabilities of human RhAG, RhBG and RhCG., Geyer RR, Parker MD, Toye AM, Boron WF, Musa-Aziz R., J Membr Biol. December 1, 2013; 246 (12): 915-26.


Role of Sp5 as an essential early regulator of neural crest specification in xenopus., Park DS, Seo JH, Hong M, Bang W, Han JK, Choi SC., Dev Dyn. December 1, 2013; 242 (12): 1382-94.                


Repeating pattern of non-RVD variations in DNA-binding modules enhances TALEN activity., Sakuma T, Ochiai H, Kaneko T, Mashimo T, Tokumasu D, Sakane Y, Suzuki K, Miyamoto T, Sakamoto N, Matsuura S, Yamamoto T., Sci Rep. November 29, 2013; 3 3379.                    


Rilpivirine inhibits drug transporters ABCB1, SLC22A1, and SLC22A2 in vitro., Moss DM, Liptrott NJ, Curley P, Siccardi M, Back DJ, Owen A., Antimicrob Agents Chemother. November 1, 2013; 57 (11): 5612-8.


Regulation of the delta and alpha epithelial sodium channel (ENaC) by ubiquitination and Nedd8., L Y K, McIntosh CJ, Biasio W, Liu Y, Ke Y, Olson DR, Miller JH, Page R, Snyder PM, McDonald FJ., J Cell Physiol. November 1, 2013; 228 (11): 2190-201.


Reversible inhibition of the glycine transporter GlyT2 circumvents acute toxicity while preserving efficacy in the treatment of pain., Mingorance-Le Meur A, Ghisdal P, Mullier B, De Ron P, Downey P, Van Der Perren C, Declercq V, Cornelis S, Famelart M, Van Asperen J, Jnoff E, Courade JP., Br J Pharmacol. November 1, 2013; 170 (5): 1053-63.


Role of the hypoxia response pathway in lens formation during embryonic development of Xenopus laevis., Baba K, Muraguchi T, Imaoka S., FEBS Open Bio. October 23, 2013; 3 490-5.        


Regulation of neurogenesis by Fgf8a requires Cdc42 signaling and a novel Cdc42 effector protein., Hulstrand AM, Houston DW., Dev Biol. October 15, 2013; 382 (2): 385-99.                              


RNAi-based demonstration of direct link between specific odorant receptors and mosquito oviposition behavior., Zhu F, Xu P, Barbosa RM, Choo YM, Leal WS., Insect Biochem Mol Biol. October 1, 2013; 43 (10): 916-23.


RAB8B is required for activity and caveolar endocytosis of LRP6., Demir K, Kirsch N, Beretta CA, Erdmann G, Ingelfinger D, Moro E, Argenton F, Carl M, Niehrs C, Boutros M., Cell Rep. September 26, 2013; 4 (6): 1224-34.                    


Rapid stimulation of human renal ENaC by cAMP in Xenopus laevis oocytes., Robins GG, MacLennan KA, Boot-Handford RP, Sandle GI., J Physiol Biochem. September 1, 2013; 69 (3): 419-27.


Repulsive guidance molecules (RGMs) and neogenin in bone morphogenetic protein (BMP) signaling., Tian C, Liu J., Mol Reprod Dev. September 1, 2013; 80 (9): 700-17.


Ratiometric imaging of the T-cell actin cytoskeleton reveals the nature of receptor-induced cytoskeletal enrichment., Smoligovets AA, Smith AW, Groves JT., Biophys J. August 6, 2013; 105 (3): L11-3.


Riluzole attenuates excitatory amino acid transporter type 3 activity in Xenopus oocytes via protein kinase C inhibition., Choi JS, Ryu JH, Zuo Z, Yang SM, Chang HW, Do SH., Eur J Pharmacol. August 5, 2013; 713 (1-3): 39-43.


Reactive oxygen species and anti-oxidant defenses in tail of tadpoles, Xenopus laevis., Johnson J, Manzo W, Gardner E, Menon J., Comp Biochem Physiol C Toxicol Pharmacol. August 1, 2013; 158 (2): 101-8.


Repressive translational control in germ cells., Lai F, King ML., Mol Reprod Dev. August 1, 2013; 80 (8): 665-76.


RNA localization in Xenopus oocytes uses a core group of trans-acting factors irrespective of destination., Snedden DD, Bertke MM, Vernon D, Huber PW., RNA. July 1, 2013; 19 (7): 889-95.

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