The precise interpretation of environmental sulfur isotope records requires a quantitative understanding of the biochemical controls on sulfur isotope fractionation by the principle isotope-fractionating process within the S cycle, microbial sulfate reduction (MSR). Here we provide the only direct observation of the major (34S/32S) and minor (33S/32S, 36S/32S) sulfur isotope fractionations imparted by a central enzyme in the energy metabolism of sulfate reducers, dissimilatory sulfite reductase (DsrAB). Results from in vitro sulfite reduction experiments allow us to calculate the in vitro DsrAB isotope effect in 34S/32S (hereafter, 34εDsrAB) to be 15.3 ± 2‰, 2σ. The accompanying minor isotope effect in 33S, described as 33λDsrAB, is calcula...
Microbial sulfate reduction exhibits a normal isotope effect, leaving unreacted sulfate enriched in ...
Kinetic isotope effects related to the breaking of chemical bonds drive sulfur isotope fractionation...
Microbial sulfate reduction exhibits a normal isotope effect, leaving unreacted sulfate enriched in ...
Microbiological transformations of sulfur compounds discriminate to various degrees between the stab...
Several enzymatic steps in microbial sulfate reduction (MSR) fractionate the isotope ratios of 33S/3...
The stable isotopes of sulfate are often used as a tool to assess bacterial sulfate reduction on the...
Sulfur isotope fractionation resulting from microbial sulfate reduction (MSR) provides some of the e...
ABSTRACT. Multiple sulfur isotope measurements of sulfur compounds associated with dissimilatory sul...
Batch culture experiments were performed with 32 different sulfate-reducing prokaryotes to explore t...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Earth, Atmospheric, and Planetary S...
Batch culture experiments were performed with 32 different sulfate-reducing prokaryotes to explore t...
Microbial sulfate reduction (MSR) utilizes sulfate as an electron acceptor and produces sulfide that...
Microbial sulfate reduction exhibits a normal isotope effect, leaving unreacted sulfate enriched in ...
Kinetic isotope effects related to the breaking of chemical bonds drive sulfur isotope fractionation...
Kinetic isotope effects related to the breaking of chemical bonds drive sulfur isotope fractionation...
Microbial sulfate reduction exhibits a normal isotope effect, leaving unreacted sulfate enriched in ...
Kinetic isotope effects related to the breaking of chemical bonds drive sulfur isotope fractionation...
Microbial sulfate reduction exhibits a normal isotope effect, leaving unreacted sulfate enriched in ...
Microbiological transformations of sulfur compounds discriminate to various degrees between the stab...
Several enzymatic steps in microbial sulfate reduction (MSR) fractionate the isotope ratios of 33S/3...
The stable isotopes of sulfate are often used as a tool to assess bacterial sulfate reduction on the...
Sulfur isotope fractionation resulting from microbial sulfate reduction (MSR) provides some of the e...
ABSTRACT. Multiple sulfur isotope measurements of sulfur compounds associated with dissimilatory sul...
Batch culture experiments were performed with 32 different sulfate-reducing prokaryotes to explore t...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Earth, Atmospheric, and Planetary S...
Batch culture experiments were performed with 32 different sulfate-reducing prokaryotes to explore t...
Microbial sulfate reduction (MSR) utilizes sulfate as an electron acceptor and produces sulfide that...
Microbial sulfate reduction exhibits a normal isotope effect, leaving unreacted sulfate enriched in ...
Kinetic isotope effects related to the breaking of chemical bonds drive sulfur isotope fractionation...
Kinetic isotope effects related to the breaking of chemical bonds drive sulfur isotope fractionation...
Microbial sulfate reduction exhibits a normal isotope effect, leaving unreacted sulfate enriched in ...
Kinetic isotope effects related to the breaking of chemical bonds drive sulfur isotope fractionation...
Microbial sulfate reduction exhibits a normal isotope effect, leaving unreacted sulfate enriched in ...