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Results: 1-24 |
Results: 24

Authors: TANAKA T AMES JB KAINOSHO M STRYER L IKURA M
Citation: T. Tanaka et al., DIFFERENTIAL ISOTOPE LABELING STRATEGY FOR DETERMINING THE STRUCTURE OF MYRISTOYLATED RECOVERIN BY NMR-SPECTROSCOPY, Journal of biomolecular NMR, 11(2), 1998, pp. 135-152

Authors: CAO YX OH BC STRYER L
Citation: Yx. Cao et al., CLONING AND LOCALIZATION OF 2 MULTIGENE RECEPTOR FAMILIES IN GOLDFISHOLFACTORY EPITHELIUM, Proceedings of the National Academy of Sciences of the United Statesof America, 95(20), 1998, pp. 11987-11992

Authors: ERICKSON MA LAGNADO L ZOZULYA S NEUBERT TA STRYER L BAYLOR DA
Citation: Ma. Erickson et al., THE EFFECT OF RECOMBINANT RECOVERIN ON THE PHOTORESPONSE OF TRUNCATEDROD PHOTORECEPTORS, Proceedings of the National Academy of Sciences of the United Statesof America, 95(11), 1998, pp. 6474-6479

Authors: IKURA M AMES J TANAKA T ISHIMA R STRYER L
Citation: M. Ikura et al., STRUCTURAL BASIS OF CALCIUM-MYRISTOYL SWITCH BY RECOVERIN, The FASEB journal, 11(9), 1997, pp. 12-12

Authors: AMES JB GORDON JI IKURA M STRYER L
Citation: Jb. Ames et al., NMR-STUDIES OF CALCIUM-BOUND RECOVERIN CONTAINING A POLAR MYRISTOYL ANALOG, The FASEB journal, 11(9), 1997, pp. 621-621

Authors: AMES JB ISHIMA R TANAKA T GORDON JI STRYER L IKURA M
Citation: Jb. Ames et al., MOLECULAR MECHANICS OF CALCIUM-MYRISTOYL SWITCHES, Nature, 389(6647), 1997, pp. 198-202

Authors: AMES JB TANAKA T GORDON JI IKURA M STRYER L
Citation: Jb. Ames et al., NMR-STUDIES OF CALCIUM-BOUND RECOVERIN CONTAINING A POLAR MYRISTOYL ANALOG, Biophysical journal, 72(2), 1997, p.

Authors: AMES JB TANAKA T STRYER L IKURA M
Citation: Jb. Ames et al., PORTRAIT OF A MYRISTOYL SWITCH PROTEIN, Current opinion in structural biology, 6(4), 1996, pp. 432-438

Authors: AMES JB TANAKA T IKURA M STRYER L
Citation: Jb. Ames et al., NMR EVIDENCE FOR CALCIUM-INDUCED EXTRUSION OF THE MYRISTOYL GROUP OF RECOVERIN, The FASEB journal, 10(6), 1996, pp. 2271-2271

Authors: ERICKSON MA LAGNADO L ZOZULYA S NEUBERT T STRYER L BAYLOR DA
Citation: Ma. Erickson et al., THE EFFECT OF RECOVERING UPON THE RECOVERY OF THE LIGHT RESPONSE OCCURS AT HIGH-LEVELS OF CALCIUM, Investigative ophthalmology & visual science, 37(3), 1996, pp. 985-985

Authors: STRYER L
Citation: L. Stryer, VISION - FROM PHOTON TO PERCEPTION, Proceedings of the National Academy of Sciences of the United Statesof America, 93(2), 1996, pp. 557-559

Authors: AMES JB TANAKA T IKURA M STRYER L
Citation: Jb. Ames et al., NMR EVIDENCE FOR CALCIUM-INDUCED EXTRUSION OF THE MYRISTOYL GROUP OF RECOVERIN, Biophysical journal, 70(2), 1996, p.

Authors: AMES JB TANAKA T STRYER L IKURA M
Citation: Jb. Ames et al., 3-DIMENSIONAL SOLUTION STRUCTURE OF MYRISTOYLATED RECOVERIN - IMPLICATIONS FOR THE MECHANISM OF THE CALCIUM-MYRISTOYL SWITCH, The FASEB journal, 9(6), 1995, pp. 1385-1385

Authors: TANAKA T AMES JB HARVEY TS STRYER L IKURA M
Citation: T. Tanaka et al., SEQUESTRATION OF THE MEMBRANE-TARGETING MYRISTOYL GROUP OF RECOVERIN IN THE CALCIUM-FREE STATE, Nature, 376(6539), 1995, pp. 444-447

Authors: AMES JB PORUMB T TANAKA T IKURA M STRYER L
Citation: Jb. Ames et al., AMINO-TERMINAL MYRISTOYLATION INDUCES COOPERATIVE CALCIUM-BINDING TO RECOVERIN, The Journal of biological chemistry, 270(9), 1995, pp. 4526-4533

Authors: AMES JB TANAKA T IKURA M STRYER L
Citation: Jb. Ames et al., NUCLEAR-MAGNETIC-RESONANCE EVIDENCE FOR CA2-INDUCED EXTRUSION OF THE MYRISTOYL GROUP OF RECOVERIN(), The Journal of biological chemistry, 270(52), 1995, pp. 30909-30913

Authors: HANSON PI MEYER T STRYER L SCHULMAN H
Citation: Pi. Hanson et al., DUAL ROLE OF CALMODULIN IN AUTOPHOSPHORYLATION OF MULTIFUNCTIONAL CAMKINASE MAY UNDERLIE DECODING OF CALCIUM SIGNALS, Neuron, 12(5), 1994, pp. 943-956

Authors: AMES J STRYER L IKURA M
Citation: J. Ames et al., TRIPLE-RESONANCE NMR-STUDIES OF RECOVERIN - SEQUENTIAL ASSIGNMENTS AND SECONDARY STRUCTURE, The FASEB journal, 8(7), 1994, pp. 10001384-10001384

Authors: AMES J STRYER L IKURA M
Citation: J. Ames et al., HETERONUCLEAR MULTIDIMENSIONAL NMR-STUDIES OF RECOVERIN - SEQUENTIAL ASSIGNMENTS AND SECONDARY STRUCTURE, Biophysical journal, 66(2), 1994, pp. 10000246-10000246

Authors: AMES JB TANAKA T STRYER L IKURA M
Citation: Jb. Ames et al., SECONDARY STRUCTURE OF MYRISTOYLATED RECOVERIN DETERMINED BY 3-DIMENSIONAL HETERONUCLEAR NMR - IMPLICATIONS FOR THE CALCIUM MYRISTOYL SWITCH, Biochemistry, 33(35), 1994, pp. 10743-10753

Authors: ZOZULYA S STRYER L
Citation: S. Zozulya et L. Stryer, CALCIUM-MYRISTOYL PROTEIN SWITCHES, The FASEB journal, 7(7), 1993, pp. 1051-1051

Authors: FLAHERTY KM ZOZULYA S STRYER L MCKAY DB
Citation: Km. Flaherty et al., 3-DIMENSIONAL STRUCTURE OF RECOVERIN, A CALCIUM SENSOR IN VISION, Cell, 75(4), 1993, pp. 709-716

Authors: HURLEY JB DIZHOOR AM RAY S STRYER L
Citation: Jb. Hurley et al., RECOVERINS ROLE - CONCLUSION WITHDRAWN, Science, 260(5109), 1993, pp. 740-740

Authors: BONIFACE JJ ALLBRITTON NL REAY PA KANTOR RM STRYER L DAVIS MM
Citation: Jj. Boniface et al., PH AFFECTS BOTH THE MECHANISM AND THE SPECIFICITY OF PEPTIDE BINDING TO A CLASS-II MAJOR HISTOCOMPATIBILITY COMPLEX MOLECULE, Biochemistry, 32(44), 1993, pp. 11761-11768
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