AbstractThe core light-harvesting complex (LH1) of Rhodospirillum rubrum is constituted of multiple heterodimeric subunits, each containing two transmembrane polypeptides, α and β. The detergent octylglucoside induces the stepwise dissociation of LH1 into B820 (an αβ dimer) and B777 (monomeric polypeptides), both of which still retain their bound bacteriochlorophyll molecules. We have investigated the absorption properties of B820 as a function of temperature, whereby a spectral population called ‘B851’ has been characterised. We show evidence that it is a dimer of the B820 complex. This may represent an intermediate oligomeric form in the process of the LH1 ring formation, as its existence was predicted from global analysis of the absorpti...
We present low-temperature Stark measurements on the core light-harvesting complex 1 (LH1) of purple...
AbstractWe have studied the equilibrium between the dissociated B777 form (absorbing at 777 nm) of t...
We attempted to predict through computer modeling the structure of the light-harvesting complex II (...
AbstractThe core light-harvesting complex (LH1) of Rhodospirillum rubrum is constituted of multiple ...
ABSTRACT: We investigated the oligomerization of the core light-harvesting complex (LH1) of Rhodospi...
We investigated the temperature-mediated reassociation of the B820 subunit of Rs. rubrum to form a l...
We investigated the oligomerization of the core light-harvesting complex (LH1) of Rhodospirillum rub...
Spectroscopic properties, including low-temperature absorbance, linear and circular dichroism and si...
We investigated the oligomerization of the core light-harvesting complex (LH1) of Rhodospirillum rub...
AbstractSpectroscopic properties, including low-temperature absorbance, linear and circular dichrois...
AbstractSpectroscopic properties, including low-temperature absorbance, linear and circular dichrois...
AbstractWe have studied the equilibrium between the dissociated B777 form (absorbing at 777 nm) of t...
The absorption spectrum of the high-light peripheral light-harvesting (LH) complex from the photosyn...
The absorption spectrum of the high-light peripheral light-harvesting (LH) complex from the photosyn...
ABSTRACT: The B820 subunit is an integral pigment-membrane protein complex and can be obtained by bo...
We present low-temperature Stark measurements on the core light-harvesting complex 1 (LH1) of purple...
AbstractWe have studied the equilibrium between the dissociated B777 form (absorbing at 777 nm) of t...
We attempted to predict through computer modeling the structure of the light-harvesting complex II (...
AbstractThe core light-harvesting complex (LH1) of Rhodospirillum rubrum is constituted of multiple ...
ABSTRACT: We investigated the oligomerization of the core light-harvesting complex (LH1) of Rhodospi...
We investigated the temperature-mediated reassociation of the B820 subunit of Rs. rubrum to form a l...
We investigated the oligomerization of the core light-harvesting complex (LH1) of Rhodospirillum rub...
Spectroscopic properties, including low-temperature absorbance, linear and circular dichroism and si...
We investigated the oligomerization of the core light-harvesting complex (LH1) of Rhodospirillum rub...
AbstractSpectroscopic properties, including low-temperature absorbance, linear and circular dichrois...
AbstractSpectroscopic properties, including low-temperature absorbance, linear and circular dichrois...
AbstractWe have studied the equilibrium between the dissociated B777 form (absorbing at 777 nm) of t...
The absorption spectrum of the high-light peripheral light-harvesting (LH) complex from the photosyn...
The absorption spectrum of the high-light peripheral light-harvesting (LH) complex from the photosyn...
ABSTRACT: The B820 subunit is an integral pigment-membrane protein complex and can be obtained by bo...
We present low-temperature Stark measurements on the core light-harvesting complex 1 (LH1) of purple...
AbstractWe have studied the equilibrium between the dissociated B777 form (absorbing at 777 nm) of t...
We attempted to predict through computer modeling the structure of the light-harvesting complex II (...