pathway Info Card

Sulfate Reduction

Information about Sulfate Reduction: characteristics, related genes and pathways, plus antibodies you can use for research. This page is being enriched constantly, if you see some information you would like this page to include please send your suggestions to us.

Overview of Sulfate Reduction

Most recent studies have shown that Sulfate Reduction shares some biological mechanisms with aerobic-respiration, anaerobic-respiration, carbon-fixation, demethylation, electron-transport, ethanol-oxidation, fermentation, lactate-oxidation, localization, methanogenesis, methylation, nitrogen-fixation, photosynthesis, regulation-of-sulfate-assimilation, sulfate-assimilation, sulfate-transport, sulfide-oxidation, sulfur-oxidation, transport.

Among the many pathways, these few ones have gauged particular interests from scientists studying Sulfate Reduction, and have been seen in publications frequently: aerobic-respiration, anaerobic-respiration, carbon-fixation, demethylation, electron-transport, ethanol-oxidation, fermentation, lactate-oxidation, localization, methanogenesis, methylation, nitrogen-fixation, photosynthesis, regulation-of-sulfate-assimilation, sulfate-assimilation, sulfate-transport, sulfide-oxidation, sulfur-oxidation, transport

Quite a number of genes have been found to play important roles in Sulfate Reduction, such as AMD1, C2, CALB2, CCT4, CD55, COL2A1, CR2, CTLA4, DHRS4, HLA-DQA1, KLK3, NOD2, PLXNA1, RPL10, SH2B2, Srr, TDGF1. See what Boster has to offer for the research of these genes by clicking the gene name links below and view a more detailed info card/product listing for that gene.

In a later update, we will include information such as current drugs and therapy solutions as well as on-going and past clinical trials for this pathway. Plesae stay updated.

Sulfate Reduction Related Genes

click to see detail information for each gene

AMD1 C2 CALB2
CCT4 CD55 COL2A1
CR2 CTLA4 DHRS4
HLA-DQA1 KLK3 NOD2
PLXNA1 RPL10 SH2B2
Srr TDGF1