Crystal structure of phosphotransacetylase from the methanogenic archaeon Methanosarcina thermophila. 2004

Prabha P Iyer, and Sarah H Lawrence, and Kelvin B Luther, and Kanagalaghatta R Rajashankar, and Hemant P Yennawar, and James G Ferry, and Hermann Schindelin
Department of Biochemistry and Molecular Biology, The Pennsylvania State University, University Park, PA 16802, USA.

Phosphotransacetylase (Pta) [EC 2.3.1.8] is ubiquitous in the carbon assimilation and energy-yielding pathways in anaerobic prokaryotes where it catalyzes the reversible transfer of the acetyl group from acetyl phosphate to CoA forming acetyl CoA and inorganic phosphate. The crystal structure of Pta from the methane-producing archaeon Methanosarcina thermophila, representing the first crystal structure of any Pta, was determined by multiwavelength anomalous diffraction at 2.7 A resolution. In solution and in the crystal, the enzyme forms a homodimer. Each monomer consists of two alpha/beta domains with a cleft along the domain boundary, which presumably contains the substrate binding sites. Comparison of the four monomers present in the asymmetric unit indicates substantial variations in the relative orientation of the two domains and the structure of the putative active site cleft. A search for structural homologs revealed the NADP(+)-dependent isocitrate and isopropylmalate dehydrogenases as the only homologs with a similar two-domain architecture.

UI MeSH Term Description Entries
D007521 Isocitrate Dehydrogenase An enzyme of the oxidoreductase class that catalyzes the conversion of isocitrate and NAD+ to yield 2-ketoglutarate, carbon dioxide, and NADH. It occurs in cell mitochondria. The enzyme requires Mg2+, Mn2+; it is activated by ADP, citrate, and Ca2+, and inhibited by NADH, NADPH, and ATP. The reaction is the key rate-limiting step of the citric acid (tricarboxylic) cycle. (From Dorland, 27th ed) (The NADP+ enzyme is EC 1.1.1.42.) EC 1.1.1.41. NAD Isocitrate Dehydrogenase,Isocitrate Dehydrogenase (NAD+),Isocitrate Dehydrogenase-I,Dehydrogenase, Isocitrate,Dehydrogenase, NAD Isocitrate,Isocitrate Dehydrogenase I,Isocitrate Dehydrogenase, NAD
D010709 Phosphate Acetyltransferase An enzyme that catalyzes the synthesis of acetylphosphate from acetyl-CoA and inorganic phosphate. Acetylphosphate serves as a high-energy phosphate compound. EC 2.3.1.8. Phosphoacylase,Phosphotransacetylase,Phosphotransacylase,Phosphotransbutyrylase,Acetyltransferase, Phosphate
D017020 Methanosarcina A genus of anaerobic, irregular spheroid-shaped METHANOSARCINALES whose organisms are nonmotile. Endospores are not formed. These archaea derive energy via formation of methane from acetate, methanol, mono-, di-, and trimethylamine, and possibly, carbon monoxide. Organisms are isolated from freshwater and marine environments.
D017434 Protein Structure, Tertiary The level of protein structure in which combinations of secondary protein structures (ALPHA HELICES; BETA SHEETS; loop regions, and AMINO ACID MOTIFS) pack together to form folded shapes. Disulfide bridges between cysteines in two different parts of the polypeptide chain along with other interactions between the chains play a role in the formation and stabilization of tertiary structure. Tertiary Protein Structure,Protein Structures, Tertiary,Tertiary Protein Structures
D019843 Archaeal Proteins Proteins found in any species of archaeon. Archaeal Gene Products,Archaeal Gene Proteins,Archaeal Peptides,Gene Products, Archaeal,Gene Proteins, Archaeal

Related Publications

Prabha P Iyer, and Sarah H Lawrence, and Kelvin B Luther, and Kanagalaghatta R Rajashankar, and Hemant P Yennawar, and James G Ferry, and Hermann Schindelin
December 1995, The Journal of biological chemistry,
Prabha P Iyer, and Sarah H Lawrence, and Kelvin B Luther, and Kanagalaghatta R Rajashankar, and Hemant P Yennawar, and James G Ferry, and Hermann Schindelin
February 2006, Journal of bacteriology,
Prabha P Iyer, and Sarah H Lawrence, and Kelvin B Luther, and Kanagalaghatta R Rajashankar, and Hemant P Yennawar, and James G Ferry, and Hermann Schindelin
July 1994, Proceedings of the National Academy of Sciences of the United States of America,
Prabha P Iyer, and Sarah H Lawrence, and Kelvin B Luther, and Kanagalaghatta R Rajashankar, and Hemant P Yennawar, and James G Ferry, and Hermann Schindelin
May 1996, The EMBO journal,
Prabha P Iyer, and Sarah H Lawrence, and Kelvin B Luther, and Kanagalaghatta R Rajashankar, and Hemant P Yennawar, and James G Ferry, and Hermann Schindelin
December 1997, Journal of bacteriology,
Prabha P Iyer, and Sarah H Lawrence, and Kelvin B Luther, and Kanagalaghatta R Rajashankar, and Hemant P Yennawar, and James G Ferry, and Hermann Schindelin
November 1989, The Journal of biological chemistry,
Prabha P Iyer, and Sarah H Lawrence, and Kelvin B Luther, and Kanagalaghatta R Rajashankar, and Hemant P Yennawar, and James G Ferry, and Hermann Schindelin
August 1997, Journal of bacteriology,
Prabha P Iyer, and Sarah H Lawrence, and Kelvin B Luther, and Kanagalaghatta R Rajashankar, and Hemant P Yennawar, and James G Ferry, and Hermann Schindelin
February 2006, Journal of bacteriology,
Prabha P Iyer, and Sarah H Lawrence, and Kelvin B Luther, and Kanagalaghatta R Rajashankar, and Hemant P Yennawar, and James G Ferry, and Hermann Schindelin
July 2001, Journal of bacteriology,
Prabha P Iyer, and Sarah H Lawrence, and Kelvin B Luther, and Kanagalaghatta R Rajashankar, and Hemant P Yennawar, and James G Ferry, and Hermann Schindelin
June 1997, Applied and environmental microbiology,
Copied contents to your clipboard!