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dimkas electrostatics [15 articles]

Senaste hänvisningarna i dimkas bibliotek insorterade under taggen electrostatics. You can also see everyone's electrostatics.
  • Electrostatic Complementarity at Ligand Binding Sites: Application to Chorismate Mutase
    J. Phys. Chem. B, Vol. 105, No. 4. (1 February 2001), pp. 880-888.
    by E Kangas, B Tidor
    posted to electrostatics by dimka on 2008-06-04 00:53:51 as **
  • The "Electrostatic-Switch" Mechanism: Monte Carlo Study of MARCKS-Membrane Interaction
    Biophys. J. (23 May 2008), biophysj.108.132522.
    by Shelly Tzlil, Diana Murray, Avinoam Ben-Shaul
    posted to electrostatics marcks pip2 by dimka on 2008-05-27 23:00:21 as ** along with 1 person paulschlesinger
  • Microscopic theory of the dielectric properties of proteins.
    Biophysical journal, Vol. 59, No. 3. (March 1991), pp. 670-690.
    posted to dielectric electrostatics by dimka on 2008-05-12 18:21:33 as **
  • Dielectric relaxation in proteins: the computational perspective.
    Photosynthesis research (29 April 2008), pp. 0166-8595.
    by Thomas Simonson
  • Tanford-Kirkwood electrostatics for protein modeling.
    Proc Natl Acad Sci U S A, Vol. 96, No. 20. (28 September 1999), pp. 11145-11150.
    by JJ Havranek, PB Harbury
    posted to electrostatics by dimka on 2008-05-12 18:14:42 as ** along with 1 person onufriev
  • A computational model for the electrostatic sequestration of PI(4,5)P2 by membrane-adsorbed basic peptides.
    Biophys J, Vol. 86, No. 4. (April 2004), pp. 1969-1986.
    posted to electrostatics membrane pip2 by dimka on 2006-07-11 05:32:00 as **
  • Plasma membrane phosphoinositide organization by protein electrostatics
    Nature, Vol. 438, No. 7068. (30 November 2005), pp. 605-611.
    by Stuart Mclaughlin, Diana Murray
    posted to electrostatics pip2 by dimka on 2005-12-12 21:25:07 as **
  • Lateral sequestration of phosphatidylinositol 4,5-bisphosphate by the basic effector domain of myristoylated alanine-rich C kinase substrate is due to nonspecific electrostatic interactions
    Journal of Biological Chemistry, Vol. 277, No. 37. (2002), pp. 34401-34412.
    by J Wang, A Gambhir, Hangyas G Mihalyne, D Murray, U Golebiewska, S Mclaughlin
  • Control of ion selectivity in potassium channels by electrostatic and dynamic properties of carbonyl ligands
    Nature, Vol. 431, No. 7010. (2004), pp. 830-834.
    by SY Noskov, S Berneche, B Roux
  • Electrostatic properties of membranes containing acidic lipids and adsorbed basic peptides: theory and experiment
    Biophysical journal, Vol. 77, No. 6. (1999), pp. 3176-3188.
    by D Murray, A Arbuzova, Hangyas G Mihalyne, A Gambhir, Ben N Tal, B Honig, S Mclaughlin
  • X-ray structure of a voltage-dependent K+ channel
    Nature, Vol. 423, No. 6935. (2003), pp. 33-41.
    by Y Jiang, A Lee, J Chen, V Ruta, M Cadene, BT Chait, R Mackinnon
  • Contribution of cytosolic cysteine residues to the gating properties of the Kir2.1 inward rectifier
    Biophysical journal, Vol. 84, No. 6. (2003), pp. 3717-3729.
    by L Garneau, H Klein, L Parent, R Sauve
  • Brownian dynamics simulation of protein-protein diffusional encounter
    Methods (San Diego, Calif.), Vol. 14, No. 3. (1998), pp. 329-341.
    by RR Gabdoulline, RC Wade
  • Binding of basic peptides to membranes produces lateral domains enriched in the acidic lipids phosphatidylserine and phosphatidylinositol 4,5-bisphosphate: an electrostatic model and experimental results
    Biophysical journal, Vol. 74, No. 2 Pt 1. (1998), pp. 731-744.
  • Brownian dynamics simulations of interaction between scorpion toxin Lq2 and potassium ion channel
    Biophysical journal, Vol. 80, No. 4. (2001), pp. 1659-1669.
    by M Cui, J Shen, JM Briggs, X Luo, X Tan, H Jiang, K Chen, R Ji
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