Archaea synthesize membranes of isoprenoid lipids that are ether-linked to glycerol-1-phosphate (G1P), while Bacteria/Eukarya produce membranes consisting of fatty acids ester-bound to glycerol-3-phosphate (G3P). This dichotomy in membrane lipid composition (i.e., the ‘lipid divide’) is believed to have arisen after the Last Universal Common Ancestor (LUCA). A leading hypothesis is that LUCA possessed a heterochiral ‘mixed archaeal/bacterial membrane’. However, no natural microbial representatives supporting this scenario have been shown to exist today. Here, we demonstrate that bacteria of the Fibrobacteres–Chlorobi–Bacteroidetes (FCB) group superphylum encode a putative archaeal pathway for ether-bound isoprenoid membrane lipids in additi...
The thesis describes the reconstitution of the complete ether lipid biosynthetic pathway both in vit...
Archaeal glycerophospholipids are the main constituents of the cytoplasmic membrane in the archaeal ...
Archaeal glycerophospholipids are the main constituents of the cytoplasmic membrane in the archaeal ...
Archaea synthesize membranes of isoprenoid lipids that are ether-linked to glycerol-1-phosphate (G1P...
The lipid membrane is one of the most characteristic traits distinguishing the three domains of life...
A vital function of the cell membrane in all living organism is to maintain the membrane permeabilit...
# Abstract Bacterial membranes are composed of fatty acids (FAs) ester-linked to glycerol-3-phospha...
Bacterial membranes are composed of fatty acids (FAs) ester-linked to glycerol-3-phosphate, while ar...
Phospholipids are major components of the cellular membranes present in all living organisms. They t...
<p>Archaeal lipids (left) are typically composed of isoprenoid chains linked by ether bonds to an <i...
One of the main differences between bacteria and archaea concerns their membrane composition. Wherea...
One of the main differences between bacteria and archaea concerns their membrane composition. Wherea...
The 16S ribosomal DNA based distinction between the bacterial and archaeal domains of life is stron...
Isoprenoids are indispensable for all types of cellular life in the Archaea, Bacteria, and Eucarya. ...
The thesis describes the reconstitution of the complete ether lipid biosynthetic pathway both in vit...
Archaeal glycerophospholipids are the main constituents of the cytoplasmic membrane in the archaeal ...
Archaeal glycerophospholipids are the main constituents of the cytoplasmic membrane in the archaeal ...
Archaea synthesize membranes of isoprenoid lipids that are ether-linked to glycerol-1-phosphate (G1P...
The lipid membrane is one of the most characteristic traits distinguishing the three domains of life...
A vital function of the cell membrane in all living organism is to maintain the membrane permeabilit...
# Abstract Bacterial membranes are composed of fatty acids (FAs) ester-linked to glycerol-3-phospha...
Bacterial membranes are composed of fatty acids (FAs) ester-linked to glycerol-3-phosphate, while ar...
Phospholipids are major components of the cellular membranes present in all living organisms. They t...
<p>Archaeal lipids (left) are typically composed of isoprenoid chains linked by ether bonds to an <i...
One of the main differences between bacteria and archaea concerns their membrane composition. Wherea...
One of the main differences between bacteria and archaea concerns their membrane composition. Wherea...
The 16S ribosomal DNA based distinction between the bacterial and archaeal domains of life is stron...
Isoprenoids are indispensable for all types of cellular life in the Archaea, Bacteria, and Eucarya. ...
The thesis describes the reconstitution of the complete ether lipid biosynthetic pathway both in vit...
Archaeal glycerophospholipids are the main constituents of the cytoplasmic membrane in the archaeal ...
Archaeal glycerophospholipids are the main constituents of the cytoplasmic membrane in the archaeal ...