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Protein Science

Zhu L, Sage J T and Champion P M 1994 Observation of coherent reaction dynamics in heme proteins Science 266 629-32... [Pg.1998]

Hans Prauenfelder, Sthephen G. Sligar, and Peter G. Wolynes. The energy landscape and motions of proteins. Science., 254 1598-1603, 1991. [Pg.96]

E. M. Boczko and C. L. Brooks III. First principles calculation of the folding free energy of a three helix bundle protein. Science, 269 393-396, 1995. [Pg.174]

AR Fersht. Structure and Mechanism in Protein Science A Guide to Enzyme Catalysis and Protein Folding. New York WFl Freeman, 1999. [Pg.234]

J Skolmck, A Kolinski. Simulations of the folding of a globular protein. Science 250 1121-1125, 1990. [Pg.308]

A Kuki, PG Wolynes. Electron tunneling paths in proteins. Science 236 1647-1652, 1987. T Ziegler. Approximate density functional theory as a practical tool m molecular energetics and dynamics. Chem Rev 91 651-667, 1991. [Pg.411]

Reece, R.J., Ptashne, M. Determinants of binding-site specificity among yeast Ce zinc cluster proteins. Science 261 909-911, 1993. [Pg.203]

Cowan, S.W., Rosenbusch, J.R Folding pattern diversity of integral membrane proteins. Science 264 914-916, 1994. [Pg.248]

Rees, D.C., DeAntonio, L., Eisenberg, D. Hydrophobic organization of membrane proteins. Science 245 510-513, 1989. [Pg.249]

Jumak, F. Structure of the GDP domain of EF-Tu and location of the amino acids homologous to ras oncogene proteins. Science 230 32-36, 1985. [Pg.280]

Leahy, D.J., Hendrickson, W.A., Aukhil, A., Erickson, H.P. 5tructure of a fibronectin type II domain from tenascin phased by MAD analysis of the selenome-thionyl protein. Science 258 987-991, 1992. [Pg.322]

John.son, L. N., and Barford, D., 1994. Electro.static effects in die control of glycogen pho.sphoryla.se by pho.sphorylation. Protein Science 3 1726-1730. Di.scn.s.sion of die pho.sphate group s ability to deliver two negative charges to a protein, a property that no amino acid side chain can provide. [Pg.494]

Ormo, M., et al. (1996). Crystal structure of the Aequorea victoria green fluorescent protein. Science 273 1392-1395. [Pg.426]

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Munich Center for Integrated Protein Science CiPSM and... [Pg.1513]

Wu, C., Wilson, S., Walker, B., Dawid, L, Paisy, T., Zimarino, V. Ueda, H. (1987). Purification and properties of Drosophila heat shock activator protein. Science, 238, 1247-53. [Pg.180]

Nagapudi K., Brinkman W.T., Leisen, J., Thomas B.S., Wright E.R., HaUer C., Wu X., Apkarian R.P., ConticeUo V.P., and Chaikof EU. Protein-based thermoplastic elastomers. Macromolecules, 38, 345, 2005. Petka W.A., Hardin J.L., McGrath K.P., Wirtz D., and TirreU, D.A. Reversible hydrogels from self-assembUng artificial proteins. Science, 281, 389, 1998. [Pg.158]

Sussman, J.L., Harel, M., and Frolow, F. et al. (1991). Atomic structure of acetylcholinesterase from Torpedo califomica a prototypic acetylcholine-binding protein. Science 253, 872-879. [Pg.369]

Presta LG, Rose GD (1988) Helix signals in proteins. Science 240 1632-1641... [Pg.163]

Landschulz WH, Johnson PE, McKnight SL (1988) The leucine zipper - a hypothetical structure common to a new class of DNA-binding proteins. Science 240 1759-1764... [Pg.163]

Petka WA, Harden JL, McGrath KP et al (1998) Reversible hydrogels from self- assembling artificial proteins. Science 281 389-392... [Pg.163]

Eersht A. Structure and mechanism in protein science a guide to enzyme catalysis and protein folding. New York W.H. Ereeman, 1999. [Pg.349]

Darnell JE Jr, Kerr IM, Stark GR Jak-STAT pathways and transcriptional activation in response to IFNs and other extracellular signaling proteins. Science 1994 264 l4l5. [Pg.473]

Tashiro K, Tada H, Heilker R, Shirozu M, Nakano T, Honjo T. Signal sequence trap a cloning strategy for secreted proteins and type I membrane proteins. Science 1993 261 600-603. [Pg.85]

Pawson T, Scott JD. Signaling through scaffold, anchoring, and adaptor proteins. Science 1997 278(5346) 2075-2080. [Pg.330]

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Van Nostrand W. E Schmaier A. H., Farrow J. S., Cunningham D. D. Protease nexin-0 (amyloid (3-protein precursor) A platelet a granule protein. Science 1990 248,745-8. [Pg.164]

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See other pages where Protein Science is mentioned: [Pg.651]    [Pg.284]    [Pg.208]    [Pg.34]    [Pg.346]    [Pg.416]    [Pg.452]    [Pg.266]    [Pg.298]    [Pg.343]    [Pg.158]    [Pg.47]    [Pg.177]   
See also in sourсe #XX -- [ Pg.28 , Pg.29 , Pg.30 , Pg.31 , Pg.32 , Pg.33 ]




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