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Biokhimiia (Moscow, Russia)
|
September 1, 1983
[Mode of proteoliposome association with the planar bilayer phospholipid membrane]
I I Severina
Uspekhi Sovremennoi Biologii
|
November 1, 1974
[Phospholipids and oxidative phosphorylation]
Kh Mikel'saar, I I Severina, V P Skulachev
The Journal of Cell Biology
|
August 1, 1988
Coupling membranes as energy-transmitting cables. II. Cyanobacterial trichomes
I I Severina, V P Skulachev, D B Zorov
IUBMB Life
|
March 16, 2002
Transfer of cationic antibacterial agents berberine, palmatine, and benzalkonium through bimolecular planar phospholipid film and Staphylococcus aureus membrane
I I Severina, M S Muntyan, K Lewis, et al.
Journal of Bioenergetics
|
August 1, 1972
A study on the mechanism of energy coupling in the redox chain. 2. ATP-supported generation of membrane potential in the respiratory chain-deficient submitochondrial particles
A A Jasaitis, I I Severina, V P Skulachev, et al.
FEBS Letters
|
September 17, 1990
Light-dependent delta mu Na-generation and utilization in the marine cyanobacterium Oscillatoria brevis
I I Brown, S I Fadeyev, I I Kirik, et al.
Biofizika
|
November 1, 1979
[Incorporation of proteoliposomes and chromatophores into membranes based on filters]
L A Drachev, A D Kaulen, V D Samuilov, et al.
Biofizika
|
November 1, 1979
[Filters as selective electrodes for synthetic penetrating ions]
L A Drachev, A D Kaulen, V D Samuilov, et al.
Biochemistry. Biokhimiia
|
November 20, 2012
Substitution of ether linkage for ester bond in phospholipids increases permeability of bilayer lipid membrane for SkQ1-type penetrating cations
T M Il'yasova, T I Rokitskaya, I I Severina, et al.
Journal of Bioenergetics
|
June 1, 1972
A study on the mechanism of energy coupling in the redox chain. I. Transhydrogenase: the fourth site of the redox chain energy coupling
A E Dontsov, L L Grinius, A A Jasaitis, et al.
Page
of 3
Search research articles
Search
Showing results (1-10 of 21) with videos related to
Sort By:
Page
of 3
Biokhimiia (Moscow, Russia)
|
September 1, 1983
[Mode of proteoliposome association with the planar bilayer phospholipid membrane]
I I Severina
Uspekhi Sovremennoi Biologii
|
November 1, 1974
[Phospholipids and oxidative phosphorylation]
Kh Mikel'saar, I I Severina, V P Skulachev
The Journal of Cell Biology
|
August 1, 1988
Coupling membranes as energy-transmitting cables. II. Cyanobacterial trichomes
I I Severina, V P Skulachev, D B Zorov
IUBMB Life
|
March 16, 2002
Transfer of cationic antibacterial agents berberine, palmatine, and benzalkonium through bimolecular planar phospholipid film and Staphylococcus aureus membrane
I I Severina, M S Muntyan, K Lewis, et al.
Journal of Bioenergetics
|
August 1, 1972
A study on the mechanism of energy coupling in the redox chain. 2. ATP-supported generation of membrane potential in the respiratory chain-deficient submitochondrial particles
A A Jasaitis, I I Severina, V P Skulachev, et al.
FEBS Letters
|
September 17, 1990
Light-dependent delta mu Na-generation and utilization in the marine cyanobacterium Oscillatoria brevis
I I Brown, S I Fadeyev, I I Kirik, et al.
Biofizika
|
November 1, 1979
[Incorporation of proteoliposomes and chromatophores into membranes based on filters]
L A Drachev, A D Kaulen, V D Samuilov, et al.
Biofizika
|
November 1, 1979
[Filters as selective electrodes for synthetic penetrating ions]
L A Drachev, A D Kaulen, V D Samuilov, et al.
Biochemistry. Biokhimiia
|
November 20, 2012
Substitution of ether linkage for ester bond in phospholipids increases permeability of bilayer lipid membrane for SkQ1-type penetrating cations
T M Il'yasova, T I Rokitskaya, I I Severina, et al.
Journal of Bioenergetics
|
June 1, 1972
A study on the mechanism of energy coupling in the redox chain. I. Transhydrogenase: the fourth site of the redox chain energy coupling
A E Dontsov, L L Grinius, A A Jasaitis, et al.
Page
of 3