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  2. Sulfur metabolism - Wikipedia

    en.wikipedia.org/wiki/Sulfur_metabolism

    From the sulfide they form the amino acids cysteine and methionine, sulfolipids, and other sulfur compounds. Animals obtain sulfur from cysteine and methionine in the protein that they consume. Sulfur is the third most abundant mineral element in the body. [21] The amino acids cysteine and methionine are used by the body to make glutathione.

  3. Sulfur-reducing bacteria - Wikipedia

    en.wikipedia.org/wiki/Sulfur-reducing_bacteria

    Desulfuromusa genus includes bacteria obligately anaerobic that use sulfur as an electron acceptor and short-chain fatty acids, dicarboxylic acids, and amino acids, as electron donors that are oxidized completely to CO 2. They are gram negative and complete oxidizer bacteria; their cells are motile and slightly curved or rod shaped.

  4. Adenylyl-sulfate reductase (thioredoxin) - Wikipedia

    en.wikipedia.org/wiki/Adenylyl-sulfate_reductase...

    These evidence-based speculations consider the evolution of other bacteria that may have reacted with this enzyme or another metabolite over time. In unicellular organisms such as mycobacteria, one use of this enzyme is in the production of certain proteins, primarily types that either involve or lead to the eventual amino acids cysteine and ...

  5. Biological roles of the elements - Wikipedia

    en.wikipedia.org/wiki/Biological_roles_of_the...

    Sulfur is essential and ubiquitous, partly because it is part of the amino acids cysteine and methionine. Many metals that appear as enzyme cofactors are bound by cysteine, and methionine is essential for protein synthesis. Toxic in some forms. tantalum: 73: 1c: Has no known biological role, but is biocompatible, used in medical implants, e.g ...

  6. Microbial metabolism - Wikipedia

    en.wikipedia.org/wiki/Microbial_metabolism

    Sulfur oxidation involves the oxidation of reduced sulfur compounds (such as sulfide H 2 S), inorganic sulfur (S), and thiosulfate (S 2 O 2− 3) to form sulfuric acid (H 2 SO 4). A classic example of a sulfur-oxidizing bacterium is Beggiatoa, a microbe originally described by Sergei Winogradsky, one of the founders of environmental microbiology.

  7. Ferredoxin - Wikipedia

    en.wikipedia.org/wiki/Ferredoxin

    Ferredoxins (from Latin ferrum: iron + redox, often abbreviated "fd") are iron–sulfur proteins that mediate electron transfer in a range of metabolic reactions. The term "ferredoxin" was coined by D.C. Wharton of the DuPont Co. and applied to the "iron protein" first purified in 1962 by Mortenson, Valentine, and Carnahan from the anaerobic bacterium Clostridium pasteurianum.

  8. CHNOPS - Wikipedia

    en.wikipedia.org/wiki/CHNOPS

    Sulfur is contained in the amino acids cysteine and methionine. [3] Phosphorus is contained in phospholipids , a class of lipids that are a major component of all cell membranes , as they can form lipid bilayers , which keep CO2 , proteins , and other molecules where they are needed for cell function, and prevent them from diffusing into areas ...

  9. S-Adenosyl methionine - Wikipedia

    en.wikipedia.org/wiki/S-Adenosyl_methionine

    In bacteria, SAM is bound by the SAM riboswitch, which regulates genes involved in methionine or cysteine biosynthesis. In eukaryotic cells, SAM serves as a regulator of a variety of processes including DNA, tRNA, and rRNA methylation; immune response; [2] amino acid metabolism; transsulfuration; and more.