Membrane penetration depth is an important parameter in relation to membrane structure and organization. A methodology has been developed to analyze the membrane penetration depths of fluorescent molecules or groups utilizing differential fluorescence quenching caused by membrane embedded spin-label probes located at different depths. The method involves determination of the parallax in the apparent location of fluorophores, detected when quenching by phospholipids spin-labelled at two different depths is compared. By use of relatively simple algebraic expressions, the method allows calculation of depth in λ . This method has been used to determine the location of fluorophores in NBD-labelled lipids and anthroyloxy-labelled fatty acids...
Spin-labeled lipids are commonly used as fluorescence quenchers in studies of membrane penetration o...
The membrane penetration depths of tryptophan residues in the nicotinic acetylcholine receptor from ...
Fluorescence quenching technique has been used to determine the transverse location of the fluoresce...
AbstractDepth-dependent fluorescence quenching in membranes is playing an increasingly important rol...
This report describes a method suitable for determining the depth of a wide variety of fluorescent m...
AbstractThe location of commonly used charged fluorescent membrane probes in membranes was determine...
AbstractDepth-dependent fluorescence quenching by lipid-attached quenchers (e.g., bromine atoms and ...
AbstractThe location of a series of lipophilic and lipid-attached BODIPY (4,4-difluoro-4-bora-3a,4a-...
This report summarizes our efforts towards depth-dependent analysis of membranes by design Of Suitab...
This report summarizes our efforts towards depth-dependent analysis of membranes by design of suitab...
The main objective of depth-dependent fluorescent probes is to provide information at a distinct pos...
AbstractThe location of a series of lipophilic and lipid-attached BODIPY (4,4-difluoro-4-bora-3a,4a-...
In this report, parallax analysis of fluorescence quenching (see the preceding paper in this issue) ...
Membrane penetration depth represents an important parameter which can be used to define the conform...
Spin-labeled lipids are commonly used as fluorescence quenchers in studies of membrane penetration o...
Spin-labeled lipids are commonly used as fluorescence quenchers in studies of membrane penetration o...
The membrane penetration depths of tryptophan residues in the nicotinic acetylcholine receptor from ...
Fluorescence quenching technique has been used to determine the transverse location of the fluoresce...
AbstractDepth-dependent fluorescence quenching in membranes is playing an increasingly important rol...
This report describes a method suitable for determining the depth of a wide variety of fluorescent m...
AbstractThe location of commonly used charged fluorescent membrane probes in membranes was determine...
AbstractDepth-dependent fluorescence quenching by lipid-attached quenchers (e.g., bromine atoms and ...
AbstractThe location of a series of lipophilic and lipid-attached BODIPY (4,4-difluoro-4-bora-3a,4a-...
This report summarizes our efforts towards depth-dependent analysis of membranes by design Of Suitab...
This report summarizes our efforts towards depth-dependent analysis of membranes by design of suitab...
The main objective of depth-dependent fluorescent probes is to provide information at a distinct pos...
AbstractThe location of a series of lipophilic and lipid-attached BODIPY (4,4-difluoro-4-bora-3a,4a-...
In this report, parallax analysis of fluorescence quenching (see the preceding paper in this issue) ...
Membrane penetration depth represents an important parameter which can be used to define the conform...
Spin-labeled lipids are commonly used as fluorescence quenchers in studies of membrane penetration o...
Spin-labeled lipids are commonly used as fluorescence quenchers in studies of membrane penetration o...
The membrane penetration depths of tryptophan residues in the nicotinic acetylcholine receptor from ...
Fluorescence quenching technique has been used to determine the transverse location of the fluoresce...