Methanopyrus kandleri is a hyperthermophilic methanogenic archaeon, which grows on H2 and CO2 as its sole energy source. Its growth temperature optimum is 98 degrees C. One of the interesting characteristics of this archaeon is its high intracellular salt content. The organism has been reported to contain the trianionic cDPG (cyclic 2,3-diphosphoglycerate) and K+ at concentrations of 1.1 and 3 M, respectively. Reflecting the high cellular salt concentration, the enzymes in this organism are adapted not only to high temperature but also to high salt concentrations. The formyltransferase from M. kandleri was characterized extensively with respect to thermo- and halophilicity. The crystal structure of the formyltransferase at 1.73 A shows the ...
BACKGROUND:The reduction of carbon dioxide to methane in methanogenic archaea involves the tetrahydr...
BACKGROUND:The reduction of carbon dioxide to methane in methanogenic archaea involves the tetrahydr...
The reduction of carbon dioxide to methane in methanogenic archaea involves the tetrahydrofolate ana...
Background: Formylmethanofuran: tetrahydromethanopterin formyltransferase (Ftr) from the methanogeni...
AbstractBackground: Formylmethanofuran: tetrahydromethanopterin formyltransferase (Ftr) from the met...
Formyltransferase catalyzes the reversible formation of formylmethanofuran from N5-formyltetrahydrom...
Formyltransferase catalyzes the reversible formation of formylmethanofuran from N-5-formyltetrahydro...
Formyltransferase catalyzes the reversible formation of formylmethanofuran from N5-formyltetrahydrom...
Formyltransferase catalyzes the reversible formation of formylmethanofuran from N-5-formyltetrahydro...
AbstractBackground: Formylmethanofuran: tetrahydromethanopterin formyltransferase (Ftr) from the met...
Methanopyrus kandleri is a methanogenic Archaeon that grows on H-2 and CO2 at a temperature optimum ...
Enzymes involved in methane formation from carbon dioxide and dihydrogen in Methanopyrus kandleri re...
Formyltransferase from Methanopyrus kandleri is composed of only one type of subunits of molecular m...
Formyltransferase from Methanopyrus kandleri is composed of only one type of subunit of molecular ma...
AbstractBackground: The reduction of carbon dioxide to methane in methanogenic archaea involves the ...
BACKGROUND:The reduction of carbon dioxide to methane in methanogenic archaea involves the tetrahydr...
BACKGROUND:The reduction of carbon dioxide to methane in methanogenic archaea involves the tetrahydr...
The reduction of carbon dioxide to methane in methanogenic archaea involves the tetrahydrofolate ana...
Background: Formylmethanofuran: tetrahydromethanopterin formyltransferase (Ftr) from the methanogeni...
AbstractBackground: Formylmethanofuran: tetrahydromethanopterin formyltransferase (Ftr) from the met...
Formyltransferase catalyzes the reversible formation of formylmethanofuran from N5-formyltetrahydrom...
Formyltransferase catalyzes the reversible formation of formylmethanofuran from N-5-formyltetrahydro...
Formyltransferase catalyzes the reversible formation of formylmethanofuran from N5-formyltetrahydrom...
Formyltransferase catalyzes the reversible formation of formylmethanofuran from N-5-formyltetrahydro...
AbstractBackground: Formylmethanofuran: tetrahydromethanopterin formyltransferase (Ftr) from the met...
Methanopyrus kandleri is a methanogenic Archaeon that grows on H-2 and CO2 at a temperature optimum ...
Enzymes involved in methane formation from carbon dioxide and dihydrogen in Methanopyrus kandleri re...
Formyltransferase from Methanopyrus kandleri is composed of only one type of subunits of molecular m...
Formyltransferase from Methanopyrus kandleri is composed of only one type of subunit of molecular ma...
AbstractBackground: The reduction of carbon dioxide to methane in methanogenic archaea involves the ...
BACKGROUND:The reduction of carbon dioxide to methane in methanogenic archaea involves the tetrahydr...
BACKGROUND:The reduction of carbon dioxide to methane in methanogenic archaea involves the tetrahydr...
The reduction of carbon dioxide to methane in methanogenic archaea involves the tetrahydrofolate ana...