AbstractBackground: Formylmethanofuran: tetrahydromethanopterin formyltransferase (Ftr) from the methanogenic Archaeon Methanopyrus kandleri (optimum growth temperature 98°C) is a hyperthermophilic enzyme that is absolutely dependent on the presence of lyotropic salts for activity and thermostability. The enzyme is involved in the pathway of carbon dioxide reduction to methane and catalyzes the transfer of formyl from formylmethanofuran to tetrahydromethanopterin.Results: The crystal structure of Ftr, determined to a resolution of 1:73 Å, reveals a homotetramer composed essentially of two dimers. Each subunit is subdivided into two tightly associated lobes both consisting of a predominantly antiparallel β sheet flanked by α helices forming ...
Formyltransferase from Methanopyrus kandleri is composed of only one type of subunits of molecular m...
Methylotrophy, the ability of microorganisms to grow on reduced one-carbon substrates such as methan...
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...
Methanopyrus kandleri is a hyperthermophilic methanogenic archaeon, which grows on H2 and CO2 as its...
Methanopyrus kandleri is a methanogenic Archaeon that grows on H-2 and CO2 at a temperature optimum ...
AbstractBackground: The reduction of carbon dioxide to methane in methanogenic archaea involves the ...
Formyltransferase catalyzes the reversible formation of formylmethanofuran from N5-formyltetrahydrom...
Formyltransferase catalyzes the reversible formation of formylmethanofuran from N5-formyltetrahydrom...
AbstractBackground: The reduction of carbon dioxide to methane in methanogenic archaea involves the ...
Formyltransferase catalyzes the reversible formation of formylmethanofuran from N-5-formyltetrahydro...
Formyltransferase catalyzes the reversible formation of formylmethanofuran from N-5-formyltetrahydro...
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...
Formyltransferase from Methanopyrus kandleri is composed of only one type of subunits of molecular m...
Methylotrophy, the ability of microorganisms to grow on reduced one-carbon substrates such as methan...
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...
Methanopyrus kandleri is a hyperthermophilic methanogenic archaeon, which grows on H2 and CO2 as its...
Methanopyrus kandleri is a methanogenic Archaeon that grows on H-2 and CO2 at a temperature optimum ...
AbstractBackground: The reduction of carbon dioxide to methane in methanogenic archaea involves the ...
Formyltransferase catalyzes the reversible formation of formylmethanofuran from N5-formyltetrahydrom...
Formyltransferase catalyzes the reversible formation of formylmethanofuran from N5-formyltetrahydrom...
AbstractBackground: The reduction of carbon dioxide to methane in methanogenic archaea involves the ...
Formyltransferase catalyzes the reversible formation of formylmethanofuran from N-5-formyltetrahydro...
Formyltransferase catalyzes the reversible formation of formylmethanofuran from N-5-formyltetrahydro...
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...
Formyltransferase from Methanopyrus kandleri is composed of only one type of subunits of molecular m...
Methylotrophy, the ability of microorganisms to grow on reduced one-carbon substrates such as methan...
The reduction of carbon dioxide to methane in methanogenic archaea involves the tetrahydrofolate ana...