Serine acetyltransferase (SAT) catalyzes the first step of cysteine synthesis in microorganisms and higher plants. Here we present the 2.2 Angstrom crystal structure of SAT from Escherichia coli, which is a dimer of trimers, in complex with cysteine. The SAT monomer consists of an amino-terminal alpha-helical domain and a carboxyl- terminal left-handed beta-helix. We identify His(158) and Asp(143) as essential residues that form a catalytic triad with the substrate for acetyl transfer. This structure shows the mechanism by which cysteine inhibits SAT activity and thus controls its own synthesis. Cysteine is found to bind at the serine substrate site and not the acetyl-CoA site that had been reported previously. On the basis of the geometry ...
A cDNA clone, Sat-52, encoding a novel isoform of serine acetyltransferase (EC 2.3.1.30) was isolate...
SummaryPlants and bacteria assimilate sulfur into cysteine. Cysteine biosynthesis involves a bienzym...
The formation of multienzymatic complexes allows for the fine tuning of many aspects of enzymatic fu...
The biosynthesis of cysteine in bacteria and plants is carried out by a two-step pathway, catalyzed ...
Recombinant serine acetyltransferase was overexpressed in Escherichia coli and purified 13-fold to h...
International audienceThe last steps of cysteine synthesis in plants involve two consecutive enzymes...
AbstractAn expression vector has been constructed which increases the expression of serine acetyltra...
In bacteria and plants, serine acetyltransferase (CysE) and O-acetylserine sulfhydrylase-A sulfhydry...
In Ï'-proteobacteria and Actinomycetales, cysteine biosynthetic enzymes are indispensable during per...
In Upsilon-proteobacteria and Actinomycetales, cysteine biosynthetic enzymes are indispensable durin...
In bacteria, cysteine can be synthesized from serine by two steps involving an L-serine O-acetyltran...
Serine acetyltransferase is a key enzyme in the sulfur assimilation pathway of bacteria and plants, ...
The cysE gene encoding serine acetyltransferase from Escherichia coli, has been introduced into the ...
The cysteine biosynthetic pathway is essential for survival of the protist pathogen Entamoeba histol...
<div><p>The cysteine biosynthetic pathway is essential for survival of the protist pathogen <i>Entam...
A cDNA clone, Sat-52, encoding a novel isoform of serine acetyltransferase (EC 2.3.1.30) was isolate...
SummaryPlants and bacteria assimilate sulfur into cysteine. Cysteine biosynthesis involves a bienzym...
The formation of multienzymatic complexes allows for the fine tuning of many aspects of enzymatic fu...
The biosynthesis of cysteine in bacteria and plants is carried out by a two-step pathway, catalyzed ...
Recombinant serine acetyltransferase was overexpressed in Escherichia coli and purified 13-fold to h...
International audienceThe last steps of cysteine synthesis in plants involve two consecutive enzymes...
AbstractAn expression vector has been constructed which increases the expression of serine acetyltra...
In bacteria and plants, serine acetyltransferase (CysE) and O-acetylserine sulfhydrylase-A sulfhydry...
In Ï'-proteobacteria and Actinomycetales, cysteine biosynthetic enzymes are indispensable during per...
In Upsilon-proteobacteria and Actinomycetales, cysteine biosynthetic enzymes are indispensable durin...
In bacteria, cysteine can be synthesized from serine by two steps involving an L-serine O-acetyltran...
Serine acetyltransferase is a key enzyme in the sulfur assimilation pathway of bacteria and plants, ...
The cysE gene encoding serine acetyltransferase from Escherichia coli, has been introduced into the ...
The cysteine biosynthetic pathway is essential for survival of the protist pathogen Entamoeba histol...
<div><p>The cysteine biosynthetic pathway is essential for survival of the protist pathogen <i>Entam...
A cDNA clone, Sat-52, encoding a novel isoform of serine acetyltransferase (EC 2.3.1.30) was isolate...
SummaryPlants and bacteria assimilate sulfur into cysteine. Cysteine biosynthesis involves a bienzym...
The formation of multienzymatic complexes allows for the fine tuning of many aspects of enzymatic fu...