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kelch encodes a component of intercellular bridges in Drosophila egg chambers., Xue F, Cooley L., Cell. March 12, 1993; 72 (5): 681-93.


K+ recirculation in A6 cells at increased Na+ transport rates., Granitzer M, Nagel W, Crabbé J., Pflugers Arch. March 1, 1993; 422 (6): 546-51.


Kinetic control of 5 S RNA gene transcription., Seidel CW, Peck LJ., J Mol Biol. October 20, 1992; 227 (4): 1009-18.


Kinetics of the functional loss of different muscarinic receptor isoforms in Xenopus oocytes., Matus-Leibovitch N, Mengod G, Oron Y., Biochem J. August 1, 1992; 285 ( Pt 3) 753-8.


Kinetic behavior of cloned mouse acetylcholine receptors. A semi-autonomous, stepwise model of gating., Auerbach A., Biophys J. April 1, 1992; 62 (1): 72-3.


Kinetic analysis of chloride conductance in frog skeletal muscle at pH 5., Vaughan P, Kootsey JM, Feezor MD., Pflugers Arch. November 1, 1991; 419 (5): 522-8.


Kelletinin I and kelletinin A from the marine mollusc Buccinulum corneum are inhibitors of eukaryotic DNA polymerase alpha., Orlando P, Carretta F, Grippo P, Cimino G, De Stefano S, Strazzullo G., Experientia. January 15, 1991; 47 (1): 64-6.


Kainate and quisqualate binding sites are co-purified from Xenopus central nervous system., Ambrosini A, Henley JH, Barnard EA., Biochem Soc Trans. June 1, 1990; 18 (3): 401-2.


K+ current diversity is produced by an extended gene family conserved in Drosophila and mouse., Wei A, Covarrubias M, Butler A, Baker K, Pak M, Salkoff L., Science. May 4, 1990; 248 (4955): 599-603.


K-ras oncogene expression in Xenopus laevis., Baum EZ, Bebernitz GA., Oncogene. May 1, 1990; 5 (5): 763-7.


KTF-1, a transcriptional activator of Xenopus embryonic keratin expression., Snape AM, Jonas EA, Sargent TD., Development. May 1, 1990; 109 (1): 157-65.


Kainate receptors in Xenopus central nervous system: solubilisation with n-octyl-beta-D-glucopyranoside., Henley JM, Barnard EA., J Neurochem. January 1, 1989; 52 (1): 31-7.


Kinetics of histone gene expression during early development of Xenopus laevis., Koster JG, Destrée OH, Westerhoff HV., J Theor Biol. November 21, 1988; 135 (2): 139-67.


Kinetic and electrophoretic analysis of transmethylation reactions in intact Xenopus laevis oocytes., O'Connor CM, Germain BJ., J Biol Chem. July 25, 1987; 262 (21): 10404-11.


Kinetic behavior of 30S rRNA intermediate labeled in developing embryonic cells of Xenopus laevis., Shiokawa K, Fu YC., Cell Struct Funct. June 1, 1987; 12 (3): 287-94.


Kinematics of gray crescent formation in Xenopus eggs: the displacement of subcortical cytoplasm relative to the egg surface., Vincent JP, Oster GF, Gerhart JC., Dev Biol. February 1, 1986; 113 (2): 484-500.


Karyophobic proteins. A category of abundant soluble proteins which accumulate in the cytoplasm., Dabauvalle MC, Franke WW., Exp Cell Res. August 1, 1984; 153 (2): 308-26.


Kinetics of beta-glucuronidase induction by androgen. Genetic variation in the first order rate constant., Pfister K, Watson G, Chapman V, Paigen K., J Biol Chem. May 10, 1984; 259 (9): 5816-20.


Kinetics of messenger accumulation coding for IFN gamma, related to modifications in the poly(A) RNA population of activated human lymphocytes., Vaquero C, Sanceau J, Sondermeyer P, Falcoff R., Nucleic Acids Res. March 26, 1984; 12 (6): 2629-40.


Karyoskeletal proteins and the organization of the amphibian oocyte nucleus., Benavente R, Krohne G, Schmidt-Zachmann MS, Hügle B, Franke WW., J Cell Sci Suppl. January 1, 1984; 1 161-86.                    

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