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- {{Short description|Class of enzymes}} ....131}}, ''dimethylsulfide monooxygenase'') is an [[enzyme]] with [[List of enzymes|systematic name]] ''dimethyl sulfide,NADH:oxygen oxidoreductase''.<ref> ...2 KB (260 words) - 03:02, 2 September 2024
- ...gical functions of ent- and syn-copalyl diphosphate synthases in rice: key enzymes for the branch point of gibberellin and phytoalexin biosynthesis | journal This enzyme requires a divalent metal ion, preferably Mg<sup>2+</sup>, for activity. ...2 KB (199 words) - 16:57, 26 August 2023
- ...EC number|2.5.1.97}}, ''PseI'', ''NeuB3'') is an [[enzyme]] with [[List of enzymes|systematic name]] ''phosphoenolpyruvate:2,4-bis(acetylamino)-2,4,6-trideoxy The enzyme requires a divalent metal ion, preferably Mn<sup>2+</sup> and Co<sup>2+</sup>. ...1 KB (149 words) - 16:36, 26 August 2023
- ...1.101}}, ''neuB (gene)'', ''legI (gene)'') is an [[enzyme]] with [[List of enzymes|systematic name]] ''phosphoenolpyruvate:2,4-diacetamido-2,4,6-trideoxy-alph This enzyme requires a divalent metal such as Mn<sup>2+</sup>. ...2 KB (170 words) - 16:06, 26 August 2023
- ...ide-assisted molybdenum insertion into molybdopterin. A novel route toward metal cofactor assembly | journal = The Journal of Biological Chemistry | volume {{enzymes}} ...2 KB (204 words) - 15:59, 26 August 2023
- ...xamples of convergent evolution in the superfamily of vitamin B6-dependent enzymes | journal = Biochimica et Biophysica Acta (BBA) - Proteins and Proteomics | This pyridoxal-phosphate protein is activated by divalent metal cations (e.g. Co<sup>2+</sup>, Ni<sup>2+</sup>, Mn<sup>2+</sup> or Mg<sup>2 ...4 KB (465 words) - 05:05, 15 April 2024
- ...formation on EC 3.5.4.41 - 5'-deoxyadenosine deaminase |website=www.brenda-enzymes.org |publisher=[[BRENDA]] |access-date=2019-10-26}}</ref> To a lesser exten ...enzyme catalyzed reaction, a single EC number could describe a variety of enzymes that catalyze the same reaction.<ref>{{Citation|chapter=ExPaSy (Expert Prot ...5 KB (710 words) - 00:08, 6 September 2023
- ...}}</ref><ref>{{cite journal | vauthors = Little C, Otnåss AB | title = The metal ion dependence of phospholipase C from ''Bacillus cereus'' | journal = Bioc {{Enzymes}} ...2 KB (237 words) - 15:44, 26 August 2023
- .../sup> or Mn<sup>2+</sup> but exhibits a lower specific activity with these metal ions. {{Enzymes}} ...2 KB (282 words) - 16:23, 26 August 2023
- ...| vauthors = Song MG, Li Y, Kiledjian M | title = Multiple mRNA decapping enzymes in mammalian cells | journal = Molecular Cell | volume = 40 | issue = 3 | p {{Enzymes}} ...3 KB (403 words) - 15:49, 26 August 2023
- {{Short description|Family of enzymes}} ...research.manchester.ac.uk/portal/en/publications/development-of-halogenase-enzymes-for-use-in-synthesis(41d27fa3-d6d3-49a9-92ea-405527679f4b).html}}</ref><ref ...6 KB (823 words) - 09:35, 3 December 2023
- ...lair DE, Schüttelkopf AW, MacRae JI, van Aalten DM | title = Structure and metal-dependent mechanism of peptidoglycan deacetylase, a streptococcal virulence {{Enzymes}} ...4 KB (404 words) - 16:19, 26 August 2023
- {{Short description|Class of enzymes}} ...umber|1.16.5.1}}, ''[[cytochrome b561]]'') is an [[enzyme]] with [[List of enzymes|systematic name]] ''Fe(III):ascorbate oxidorectuctase (electron-translocati ...7 KB (1,012 words) - 14:19, 29 November 2024
- {{Short description|Class of enzymes}} ...transferring aryl or alkyl groups other than methyl groups. The [[List of enzymes|systematic name]] of this enzyme class is phosphoenolpyruvate:D-erythrose-4 ...16 KB (2,060 words) - 23:26, 11 February 2025
- ...'''.<ref name="Handbook of enzymes">{{cite book|title=Springer handbook of enzymes|volume=30|pages=459–466}}</ref> ...A Synthase (ACS) and [[carbon monoxide dehydrogenase]] (CODH) are integral enzymes in this one pathway and can perform diverse reactions in the [[carbon cycle ...18 KB (2,567 words) - 00:48, 4 February 2025
- ...pmc = 148257 | doi = 10.1093/nar/27.3.854 }}</ref> Genetic deficiencies of enzymes such as MPT synthase, which are involved in MoCo [[biosynthesis]], lead to ...in Synthase Provides Evidence for the Mechanism of Dithiolene Formation in Metal-binding Pterins|journal=Journal of Biological Chemistry|volume=276|issue=39 ...11 KB (1,454 words) - 12:31, 2 November 2024
- ...ry.<ref>{{cite journal |doi=10.1021/acs.inorgchem.4c00920 |title=Inorganic Metal Thiocyanates |date=2024 |last1=Cliffe |first1=Matthew J. |journal=Inorganic ...d complexes (isothiocyanates), whereas [[Classes of metals|class B or soft metal cations]] tend to form ''S''-bonded thiocyanate complexes. For the isothioc ...16 KB (2,185 words) - 20:41, 12 February 2025
- ...ering transient dynamics of artificial cells by stochastic distribution of enzymes |url=https://www.nature.com/articles/s41467-021-27229-0 |journal=Nature Com ...f the radicals and anions is extended, so the implementation of the active metal nanoparticles has greatly improved photocatalytic efficiency. ...20 KB (2,721 words) - 16:41, 16 November 2024
- ...s581) of Domain 3 serves as the [[ligand]] for copper, contributing to the metal-containing active site of the enzyme.<ref name=handbook /> ...wo-electron oxidation is achieved by the double-redox site: the copper(II) metal center and the free radical, each capable of accepting one electron from th ...18 KB (2,510 words) - 07:24, 23 September 2024
- ...on in the active site does not change its [[oxidation state]] while the Ni metal ion participates in redox chemistry. There are two main groups of redox sta ...humb|750px|center|Figure 5. Different redox states of [NiFe] hydrogenase's metal active site. The redox states in the <span style="color:red">red</span> are ...20 KB (2,791 words) - 07:05, 23 December 2024