Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Tetrameric triosephosphate isomerase from hyperthermophilic Archaea

View through CrossRef
Triosephosphate isomerase (TIM) of the hyperthermophilic Archaea Pyrococcus woesei and Methanothermus fervidus have been purified to homogeneity. The enzymes from the two hyperthermophiles represent homo‐tetramers of 100 kDa, contrary to all known bacterial and eukaryotic TIMs, which are dimers of 48–60 kDa. Molecular size determination of the TIM from the mesophilic methanogen Methanobacterium bryantii yielded the usual molecular mass of only 57 kDa, indicating that the tetrameric aggregation state does not represent an archaeal feature but rather correlates with thermoadaptation. A similar preference for higher protein aggregates in hyperthermophilic Archaea has previously been demonstrated for 3‐phosphoglycerate kinases. The gene of the P. woesei TIM was cloned and sequenced. The archaeal TIM proved to be homologous to its bacterial and eukaryotic pendants. Most strikingly, the deduced protein sequence comprises only 224 residues and thus represents the shortest TIM sequence known as yet. Taking the three‐dimensional structure of the eucaryal TIM as a basis, from the shortenings of the chain considerable rearrangements at the bottom of the α/β barrel and at its functionally inactive flank are expected, which are interpreted in terms of the formation of new subunit contacts.
Title: Tetrameric triosephosphate isomerase from hyperthermophilic Archaea
Description:
Triosephosphate isomerase (TIM) of the hyperthermophilic Archaea Pyrococcus woesei and Methanothermus fervidus have been purified to homogeneity.
The enzymes from the two hyperthermophiles represent homo‐tetramers of 100 kDa, contrary to all known bacterial and eukaryotic TIMs, which are dimers of 48–60 kDa.
Molecular size determination of the TIM from the mesophilic methanogen Methanobacterium bryantii yielded the usual molecular mass of only 57 kDa, indicating that the tetrameric aggregation state does not represent an archaeal feature but rather correlates with thermoadaptation.
A similar preference for higher protein aggregates in hyperthermophilic Archaea has previously been demonstrated for 3‐phosphoglycerate kinases.
The gene of the P.
woesei TIM was cloned and sequenced.
The archaeal TIM proved to be homologous to its bacterial and eukaryotic pendants.
Most strikingly, the deduced protein sequence comprises only 224 residues and thus represents the shortest TIM sequence known as yet.
Taking the three‐dimensional structure of the eucaryal TIM as a basis, from the shortenings of the chain considerable rearrangements at the bottom of the α/β barrel and at its functionally inactive flank are expected, which are interpreted in terms of the formation of new subunit contacts.

Related Results

Triosephosphate isomerase and peroxiredoxin 6, two novel serum markers for human lung squamous cell carcinoma
Triosephosphate isomerase and peroxiredoxin 6, two novel serum markers for human lung squamous cell carcinoma
There is currently substantial interest in the identification of human tumor antigens for the diagnosis and immunotherapy of cancer. In our previous study, secretion character and ...
Archaea
Archaea
AbstractAnalysis of nucleotide sequences of ribosomalribonucleic acid(RNA) led in the 1970s to the recognition of the existence of three domains of life, named Eukarya (Eukaryotes)...
Production of glucose isomerase by genus Streptomyces
Production of glucose isomerase by genus Streptomyces
AbstractScreening for glucose isomerases was done using 46 species and 63 strains of Streptomyces type cultures. Glucose isomerase was found in a wide range of these species. The i...
Determination of Apparent Kinetic Parameters and Substrate Specificities of Glucose Isomerase from Streptomyces Roseiscleroticus
Determination of Apparent Kinetic Parameters and Substrate Specificities of Glucose Isomerase from Streptomyces Roseiscleroticus
Finding suitable sugar replacements, such as syrups, has become necessary due to the rising demand for refined sugar and its high manufacturing costs. Enzymatic technology has been...
Complex Formation Between Mushroom Tyrosinase and Manduca Dopachrome Isomerase
Complex Formation Between Mushroom Tyrosinase and Manduca Dopachrome Isomerase
Melanin biosynthesis in animals is initiated by the ubiquitously present tyrosinase and is aided by dopachrome isomerase. We have characterized a novel dopachrome isomerase (decarb...
Revisiting the Mechanism of the Triosephosphate Isomerase Reaction: The Role of the Fully Conserved Glutamic Acid 97 Residue
Revisiting the Mechanism of the Triosephosphate Isomerase Reaction: The Role of the Fully Conserved Glutamic Acid 97 Residue
AbstractAn analysis of 503 available triosephosphate isomerase sequences revealed nine fully conserved residues. Of these, four residues—K12, H95, E97 and E165—are capable of proto...
Immobilization of glucose isomerase
Immobilization of glucose isomerase
AbstractThe immobilization of glucose isomerase (D‐xylose ketol isomerase, EC 5.3.1.5) by covalently bonding to various carriers and by adsorption to ion exchange resins was attemp...

Back to Top