AbstractThe glyoxylate cycle provides the means to convert C2-units to C4-precursors for biosynthesis, allowing growth on fatty acids and C2-compounds. The conventional view that the glyoxylate cycle is contained within peroxisomes in fungi and plants is no longer valid. Glyoxylate cycle enzymes are located both inside and outside the peroxisome. Thus, the operation of the glyoxylate cycle requires transport of several intermediates across the peroxisomal membrane. Glyoxylate cycle progression is also dependent upon mitochondrial metabolism. An understanding of the operation and regulation of the glyoxylate cycle, and its integration with cellular metabolism, will require further investigation of the participating metabolite transporters in...
Journal ArticleCopyright © 2014 Elsevier B.V. All rights reserved.Peroxisomes are ubiquitous organel...
AbstractPeroxisomes perform a range of metabolic functions which require the movement of substrates,...
Peroxisomes are arguably the most biochemically versatile of all eukaryotic organelles. Their metabo...
Glyoxysomes are specialized peroxisomes present in various plant organs such as germinating cotyledo...
Glyoxysomes are specialized peroxisomes present in various plant organs such as germinating cotyledo...
Glyoxysomes are specialized peroxisomes present in various plant organs such as germinating cotyledo...
Glyoxylate serves as intermediate in various metabolic pathways, although high concentrations of thi...
Although peroxisomes are difficult to identify in Saccharomyces cerevisiae under ordinary growth con...
Although peroxisomes are difficult to identify in Saccharomyces cerevisiae under ordinary growth con...
Although peroxisomes are difficult to identify in Saccharomyces cerevisiae under ordinary growth con...
Although peroxisomes are difficult to identify in Saccharomyces cerevisiae under ordinary growth con...
AbstractThe most prominent role of peroxisomes in photosynthetic plant tissues is their participatio...
Peroxisomes are arguably the most biochemically versatile of all eukaryotic organelles. Their metabo...
The peroxisome is a metabolic compartment serving for the rapid oxidation of substrates, a process t...
The peroxisome is a metabolic compartment serving for the rapid oxidation of substrates, a process t...
Journal ArticleCopyright © 2014 Elsevier B.V. All rights reserved.Peroxisomes are ubiquitous organel...
AbstractPeroxisomes perform a range of metabolic functions which require the movement of substrates,...
Peroxisomes are arguably the most biochemically versatile of all eukaryotic organelles. Their metabo...
Glyoxysomes are specialized peroxisomes present in various plant organs such as germinating cotyledo...
Glyoxysomes are specialized peroxisomes present in various plant organs such as germinating cotyledo...
Glyoxysomes are specialized peroxisomes present in various plant organs such as germinating cotyledo...
Glyoxylate serves as intermediate in various metabolic pathways, although high concentrations of thi...
Although peroxisomes are difficult to identify in Saccharomyces cerevisiae under ordinary growth con...
Although peroxisomes are difficult to identify in Saccharomyces cerevisiae under ordinary growth con...
Although peroxisomes are difficult to identify in Saccharomyces cerevisiae under ordinary growth con...
Although peroxisomes are difficult to identify in Saccharomyces cerevisiae under ordinary growth con...
AbstractThe most prominent role of peroxisomes in photosynthetic plant tissues is their participatio...
Peroxisomes are arguably the most biochemically versatile of all eukaryotic organelles. Their metabo...
The peroxisome is a metabolic compartment serving for the rapid oxidation of substrates, a process t...
The peroxisome is a metabolic compartment serving for the rapid oxidation of substrates, a process t...
Journal ArticleCopyright © 2014 Elsevier B.V. All rights reserved.Peroxisomes are ubiquitous organel...
AbstractPeroxisomes perform a range of metabolic functions which require the movement of substrates,...
Peroxisomes are arguably the most biochemically versatile of all eukaryotic organelles. Their metabo...