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Refinado por: Nome da Publicação: Biochemistry remover
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1
Lipid-protein interactions in reconstituted membranes containing acetylcholine receptor
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Lipid-protein interactions in reconstituted membranes containing acetylcholine receptor

Ellena, Jeffrey F ; Blazing, Michael A ; McNamee, Mark G

Biochemistry (Easton), 1983-11, Vol.22 (24), p.5523-5535 [Periódico revisado por pares]

Washington, DC: American Chemical Society

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2
Determination of the molecular dynamics of alamethicin using 13C NMR : implications for the mechanism of gating of a voltage-dependent channel
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Determination of the molecular dynamics of alamethicin using 13C NMR : implications for the mechanism of gating of a voltage-dependent channel

KELSH, L. P ; ELLENA, J. F ; CAFISO, D. S

Biochemistry (Easton), 1992-06, Vol.31 (22), p.5136-5144 [Periódico revisado por pares]

Washington, DC: American Chemical Society

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3
Localization of hydrophobic ions in phospholipid bilayers using 1H nuclear Overhauser effect spectroscopy
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Localization of hydrophobic ions in phospholipid bilayers using 1H nuclear Overhauser effect spectroscopy

ELLENA, J. F ; DOMINEY, R. N ; ARCHER, S. J ; ZHEN-CHEN XU ; CAFISO, D. S

Biochemistry (Easton), 1987-07, Vol.26 (14), p.4584-4592 [Periódico revisado por pares]

Washington, DC: American Chemical Society

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4
Distribution of General Anesthetics in Phospholipid Bilayers Determined Using 2H NMR and 1H-1H NOE Spectroscopy
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Distribution of General Anesthetics in Phospholipid Bilayers Determined Using 2H NMR and 1H-1H NOE Spectroscopy

Baber, James ; Ellena, Jeffrey F ; Cafiso, David S

Biochemistry (Easton), 1995-05, Vol.34 (19), p.6533-6539 [Periódico revisado por pares]

United States: American Chemical Society

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5
Structure of Micelle-Associated Alamethicin from 1H NMR. Evidence for Conformational Heterogeneity in a Voltage-Gated Peptide
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Structure of Micelle-Associated Alamethicin from 1H NMR. Evidence for Conformational Heterogeneity in a Voltage-Gated Peptide

Franklin, J. Craig ; Ellena, Jeffrey F ; Jayasinghe, Sajith ; Kelsh, Laurie P ; Cafiso, David S

Biochemistry (Easton), 1994-04, Vol.33 (13), p.4036-4045 [Periódico revisado por pares]

United States: American Chemical Society

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6
Determination of the molecular dynamics of alamethicin using super(13)C NMR: Implications for the mechanism of gating of a voltage-dependent channel
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Determination of the molecular dynamics of alamethicin using super(13)C NMR: Implications for the mechanism of gating of a voltage-dependent channel

Kelsh, L P ; Ellena, J F ; Cafiso, D S

Biochemistry (Easton), 1992-01, Vol.31 (22), p.5136-5144 [Periódico revisado por pares]

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7
Structure of micelle-associated alamethicin from 1H NMR. Evidence for conformatinal heterogeneity in a voltage-gated peptide
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Structure of micelle-associated alamethicin from 1H NMR. Evidence for conformatinal heterogeneity in a voltage-gated peptide

FRANKLIN, J. C ; ELLENA, J. E ; SAJITH JAYASINGHE ; KELSH, L. P ; CAFISO, D. S

Biochemistry (Easton), 1994, Vol.33 (13), p.4036-4045 [Periódico revisado por pares]

Washington, DC: American Chemical Society

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8
Structure of micelle-associated alamethicin from super(1)H NMR. Evidence for conformational heterogeneity in a voltage-gated peptide
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Structure of micelle-associated alamethicin from super(1)H NMR. Evidence for conformational heterogeneity in a voltage-gated peptide

Franklin, J C ; Ellena, J F ; Jayasinghe, S ; Kelsh, L P ; Cafiso, D S

Biochemistry (Easton), 1994-01, Vol.33 (13), p.4036-4045 [Periódico revisado por pares]

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9
DETERMINATION OF THE MOLECULAR-DYNAMICS OF ALAMETHICIN USING C-13 NMR - IMPLICATIONS FOR THE MECHANISM OF GATING OF A VOLTAGE-DEPENDENT CHANNEL
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DETERMINATION OF THE MOLECULAR-DYNAMICS OF ALAMETHICIN USING C-13 NMR - IMPLICATIONS FOR THE MECHANISM OF GATING OF A VOLTAGE-DEPENDENT CHANNEL

KELSH, LP ; ELLENA, JF ; CAFISO, DS

Biochemistry (Easton), 1992-06, Vol.31 (22), p.5136-5144 [Periódico revisado por pares]

WASHINGTON: Amer Chemical Soc

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10
31P NMR spectra of rod outer segment and sarcoplasmic reticulum membranes show no evidence of immobilized components due to lipid-protein interactions
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31P NMR spectra of rod outer segment and sarcoplasmic reticulum membranes show no evidence of immobilized components due to lipid-protein interactions

Ellena, J F ; Pates, R D ; Brown, M F

Biochemistry (Easton), 1986-07, Vol.25 (13), p.3742-3748 [Periódico revisado por pares]

United States

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