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Иш: Polymeric Nonelectrolytes to Probe Pore Geometry: Application to the α-Toxin Transmembrane Channel

  1. METHODS FOR THE FORMATION OF SINGLE BIMOLECULAR LIPID MEMBRANES IN AQUEOUS SOLUTION

    Paul Müeller, Donald O. Rudin, H. Ti Tien +1

    Мақола196314 иқтибос
    ABI
  2. Structure of Staphylococcal α-Hemolysin, a Heptameric Transmembrane Pore

    Langzhou Song, Michael R. Hobaugh, C. Shustak +3

    Мақола19967 иқтибос
    ABI
  3. Primary sequence of the alpha-toxin gene from Staphylococcus aureus wood 46

    G S Gray, Michael Kehoe

    Мақола19846 иқтибос
    ABI
  4. Mechanism of polyethylene glycol interaction with proteins

    Tsutomu Arakawa, Serge N. Timasheff

    Мақола19855 иқтибос
    ABI
  5. Low conductance states of a single ion channel are not ?closed?

    Yuri E. Korchev, C.L. Bashford, G.M. Alder +2

    Мақола19954 иқтибос
    ABI
  6. Statistical Physics of Macromolecules

    Alexander Y. Grosberg, Alexei R. Khokhlov, H. Eugene Stanley +2

    Мақола19954 иқтибос
    ABI
  7. Dynamics and Free Energy of Polymers Partitioning into a Nanoscale Pore

    Sergey M. Bezrukov, Igor Vodyanoy, Rafik A. Brutyan +1

    Мақола19963 иқтибос
    ABI
  8. Сарлавҳасиз

    Бошқа3 иқтибос
    ABI
  9. Preferential solvent interactions between proteins and polyethylene glycols.

    Jae‐Chul Lee, L. L. Lee

    Мақола19812 иқтибос
    ABI
  10. Polyethylene glycol in aqueous solution: Solvent perturbation and gel filtration studies

    Kenneth C. Ingham

    Мақола19772 иқтибос
    ABI
  11. Sizing of an ion pore by access resistance measurements

    Igor Vodyanoy, Sergey M. Bezrukov

    Мақола19922 иқтибос
    ABI