Metabolic Modeling Tutorial
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Metabolic Modeling Tutorial
discounted EARLY registration ends Dec 31, 2014
Metabolic Modeling Tutorial
discounted EARLY registration ends Dec 31, 2014
Metabolic Modeling Tutorial
discounted EARLY registration ends Dec 31, 2014
Metabolic Modeling Tutorial
discounted EARLY registration ends Dec 31, 2014
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Escherichia coli K-12 substr. MG1655 Reaction: 6.5.1.4

Superclasses: Reactions Classified By Conversion Type Simple Reactions Chemical Reactions
Reactions Classified By Substrate Macromolecule Reactions Polynucleotide-Reactions RNA-Reactions

EC Number: 6.5.1.4

Enzymes and Genes:
RNA 3'-terminal phosphate cyclase Inferred from experiment : rtcA

The reaction direction shown, that is, A + B ↔ C + D versus C + D ↔ A + B, is in accordance with the Enzyme Commission system.

Mass balance status: Undetermined; a substrate lacks a chemical formula

Enzyme Commission Primary Name: RNA 3′-terminal-phosphate cyclase (ATP)

Enzyme Commission Synonyms: RNA cyclase (ambiguous), RNA-3'-phosphate cyclase (ambiguous)

Summary:
ADENOSINE 5'-(γ-THIO)TRIPHOSPHATE CAN ACT INSTEAD OF ATP.

Enzyme Commission Summary:
Adenosine 5′-(γ-thio)triphosphate can act instead of ATP. cf. EC 6.5.1.5, RNA 3′-terminal-phosphate cyclase (GTP).

Citations: [Reinberg85, Filipowicz83]

Gene-Reaction Schematic: ?

Relationship Links: BRENDA:EC:6.5.1.4 , ENZYME:EC:6.5.1.4 , IUBMB-ExplorEnz:EC:6.5.1.4


References

Filipowicz83: Filipowicz W, Konarska M, Gross HJ, Shatkin AJ (1983). "RNA 3'-terminal phosphate cyclase activity and RNA ligation in HeLa cell extract." Nucleic Acids Res 11(5);1405-18. PMID: 6828385

Reinberg85: Reinberg D, Arenas J, Hurwitz J (1985). "The enzymatic conversion of 3'-phosphate terminated RNA chains to 2',3'-cyclic phosphate derivatives." J Biol Chem 260(10);6088-97. PMID: 2581947


Report Errors or Provide Feedback
Please cite the following article in publications resulting from the use of EcoCyc: Nucleic Acids Research 41:D605-12 2013
Page generated by SRI International Pathway Tools version 18.5 on Sun Nov 23, 2014, BIOCYC14B.