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Methanethiol oxidase
Smith Bacterial SBP56 Identified As a Cu-Dependent Methanethiol
Protein Targets of Acetaminophen Covalent Binding in Rat and Mouse
Volatile Sulfur Compounds in Coastal Acid Sulfate Soils, Northern N.S.W
Dynamic Changes in the Urine Proteome in Two Ovarian Cancer Rat
Molecular Changes in Tissue Proteome During Prostate Cancer Development: Proof-Of-Principle Investigation
Metabolism of Organosulfur Compounds in Ruegeria Pomeroyi Dss-3
Transcriptomic Analysis of Early Stages of Intestinal Regeneration in Holothuria Glaberrima David J
1 Bacterial SBP56 Identified As a Cu-Dependent Methanethiol Oxidase Widely Distributed in the Biosphere Özge Eyicea,B1, Natalii
12) United States Patent (10
Comparative Proteomics Analysis for Identifying the Lipid Metabolism Related Pathways in Patients with Klippel-Feil Syndrome
Understanding Physiological Adaptations, Metabolic Potential And
Bacterial SBP56 Identified As a Cu-Dependent Methanethiol Oxidase Widely Distributed in the Biosphere Özge Eyice, Nataliia My
Als Common Pathogenic Biological Routes Between Amyotrophic Lateral Sclerosis (ALS) and Frontotemporal Dementia (FTD)
All Enzymes in BRENDA™ the Comprehensive Enzyme Information System
Proteomic Analysis Identifies Distinct Glomerular Extracellular Matrix In
(12) Patent Application Publication (10) Pub. No.: US 2015/0240226A1 Mathur Et Al
University of Southampton Research Repository
Supplementary Fig. 11.Pdf
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Springer Handbook of Enzymes
2018 Boden and Hutt DMS DMSO
Global Analysis of Lysine 2-Hydroxyisobutyrylation in Wheat Root
Selenium-Binding Protein 1 (SELENBP1) Supports Hydrogen Sulfide Biosynthesis and Adipogenesis
For Review Only
A REVIEW New Frontiers in Biological Halogenation
Lipoate-Binding Proteins and Specific Lipoate-Protein Ligases in Microbial
(12) Patent Application Publication (10) Pub. No.: US 2013/0244266A1 Reardon Et Al
Dimethylsulfoniopropion
Label-Free Quantitative Proteomics and Substrate Based Mass
Bacterial SBP56 Identified As a Cu-Dependent Methanethiol Oxidase Widely Distributed in the Biosphere
Characterization of Two Caenorhabditis Elegans Orthologs Of
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Das Heterodisulfidreduktase-Ähnliche System
Metabolically-Active Obligate Aerobes in Anoxic (Sulfidic) Marine
(3-MST)—Hydrogen Sulfide (H2S) Pathway in Cancer Cells
Todd Rex Miller, Doctor of Philosophy, 2004
Microbial Cycling of Methanethiol Hendrik Schäfer1* and Özge Eyice2
Identification of Proteins and Genes Expressed by Methylophaga
Ablation of Selenbp1 Alters Lipid Metabolism Via the Ppar Pathway In
Bacterial Catabolism of Dimethylsulfoniopropionate (DMSP)
Mutations in SELENBP1, Encoding a Novel Human Methanethiol Oxidase, Cause Extra-Oral Halitosis
Early Changes in the Urine Proteome in a Rat Liver Tumour Model