Michael Hügler

Publication List Details

Period

2001 - 2007

Number

13

Co-Authors

The Genome of Deep-Sea Vent Chemolithoautotroph Thiomicrospira crunogena XCL-2 (2006)

Kathleen M. Scott, Stefan M. Sievert, Fereniki N. Abril, Lois A. Ball, Chantell J. Barrett, Rodrigo A. Blake, ...

Presented here is the complete genome sequence of Thiomicrospira crunogena XCL-2, representative of ubiquitous chemolithoautotrophic sulfur-oxidizing bacteria isolated from deep-sea hydrothermal...

Autotrophe CO2-Fixierung in thermophilen Mikroorganismen (2004)

Hügler, Michael

Derzeit sind bei Mikroorganismen vier verschiedene Stoffwechselwege zur autotrophen CO2-Fixierung bekannt. Dies sind der Calvin-Zyklus, der reduktive Citrat-Zyklus, der reduktive Acetyl-CoA-Weg und...

Autotrophe CO2-Fixierung in thermophilen Mikroorganismen (2003)

Hügler, Michael

Derzeit sind bei Mikroorganismen vier verschiedene Stoffwechselwege zur autotrophen CO2-Fixierung bekannt. Dies sind der Calvin-Zyklus, der reduktive Citrat-Zyklus, der reduktive Acetyl-CoA-Weg und...

Malonyl-Coenzyme A Reductase from Chloroflexus aurantiacus, a Key Enzyme of the 3-Hydroxypropionate Cycle for (2001)

Autotrophic Co Fixation, Michael Hügler, Castor Menendez, Hermann Schägger, Georg Fuchs

The 3-hydroxypropionate cycle is a new autotrophic CO 2 fixation pathway in Chloroflexus aurantiacus and some archaebacteria. The initial step is acetyl-coenzyme A (CoA) carboxylation to malonyl-CoA...

Malonyl-Coenzyme A Reductase from Chloroflexus aurantiacus, a Key Enzyme of the 3-Hydroxypropionate Cycle for Autotrophic CO2 Fixation

Hügler, Michael, Menendez, Castor, Schägger, Hermann, Fuchs, Georg

The 3-hydroxypropionate cycle is a new autotrophic CO2 fixation pathway in Chloroflexus aurantiacus and some archaebacteria. The initial step is acetyl-coenzyme A (CoA) carboxylation to malonyl-CoA...

Evidence for Autotrophic CO2 Fixation via the Reductive Tricarboxylic Acid Cycle by Members of the ɛ Subdivision of Proteobacteria†

Hügler, Michael, Wirsen, Carl O., Fuchs, Georg, Taylor, Craig D., Sievert, Stefan M.

Based on 16S rRNA gene surveys, bacteria of the ɛ subdivision of proteobacteria have been identified to be important members of microbial communities in a variety of environments, and quite a few...

Malonyl-Coenzyme A Reductase from Chloroflexus aurantiacus, a Key Enzyme of the 3-Hydroxypropionate Cycle for Autotrophic CO2 Fixation

Hügler, Michael, Menendez, Castor, Schägger, Hermann, Fuchs, Georg

The 3-hydroxypropionate cycle is a new autotrophic CO2 fixation pathway in Chloroflexus aurantiacus and some archaebacteria. The initial step is acetyl-coenzyme A (CoA) carboxylation to malonyl-CoA...

Evidence for Autotrophic CO2 Fixation via the Reductive Tricarboxylic Acid Cycle by Members of the ɛ Subdivision of Proteobacteria†

Hügler, Michael, Wirsen, Carl O., Fuchs, Georg, Taylor, Craig D., Sievert, Stefan M.

Based on 16S rRNA gene surveys, bacteria of the ɛ subdivision of proteobacteria have been identified to be important members of microbial communities in a variety of environments, and quite a few...

The Genome of Deep-Sea Vent Chemolithoautotroph Thiomicrospira crunogena XCL-2

Scott, Kathleen M, Sievert, Stefan M, Abril, Fereniki N, Ball, Lois A, Barrett, Chantell J, Blake, Rodrigo A, ...

Presented here is the complete genome sequence of Thiomicrospira crunogena XCL-2, representative of ubiquitous chemolithoautotrophic sulfur-oxidizing bacteria isolated from deep-sea hydrothermal...

Malonyl-Coenzyme A Reductase in the Modified 3-Hydroxypropionate Cycle for Autotrophic Carbon Fixation in Archaeal Metallosphaera and Sulfolobus spp.▿

Alber, Birgit, Olinger, Marc, Rieder, Annika, Kockelkorn, Daniel, Jobst, Björn, Hügler, Michael, ...

Autotrophic members of the Sulfolobales (Crenarchaeota) contain acetyl-coenzyme A (CoA)/propionyl-CoA carboxylase as the CO2 fixation enzyme and use a modified 3-hydroxypropionate cycle to assimilate...

Insights into the Autotrophic CO2 Fixation Pathway of the Archaeon Ignicoccus hospitalis: Comprehensive Analysis of the Central Carbon Metabolism▿

Jahn, Ulrike, Huber, Harald, Eisenreich, Wolfgang, Hügler, Michael, Fuchs, Georg

Ignicoccus hospitalis is an autotrophic hyperthermophilic archaeon that serves as a host for another parasitic/symbiotic archaeon, Nanoarchaeum equitans. In this study, the biosynthetic pathways of...

Genome of the Epsilonproteobacterial Chemolithoautotroph Sulfurimonas denitrificans▿ †

Sievert, Stefan M., Scott, Kathleen M., Klotz, Martin G., Chain, Patrick S. G., Hauser, Loren J., Hemp, James, ...

Sulfur-oxidizing epsilonproteobacteria are common in a variety of sulfidogenic environments. These autotrophic and mixotrophic sulfur-oxidizing bacteria are believed to contribute substantially to...