Effect of long-term phosphate starvation on the levels and metabolism of purine nucleotides in suspension-cultured Catharanthus roseus cells

Shimano, F.; Ashihara, H.; Phytochemistry 67, 132-141 (2006)

show all sequences of 3.2.2.7

Data extracted from this reference:

Organism
Organism Primary Accession No. (UniProt) Commentary Textmining
Catharanthus roseus
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-
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Source Tissue
Source Tissue Commentary Organism Textmining
cell suspension culture activity is maintained at a high level in long-term Pi starved cells Catharanthus roseus
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Source Tissue (protein specific)
Source Tissue Commentary Organism Textmining
cell suspension culture activity is maintained at a high level in long-term Pi starved cells Catharanthus roseus
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See also following references to EC number 3.2.2.7 (sorted by year of publication):
No.1st authorPub
Med
titleorganimsjournalvolumepagesyearActivating CompoundApplicationCloned(Commentary)Crystallization (Commentary)EngineeringGeneral StabilityInhibitorsKM Value [mM]LocalizationMetals/IonsMolecular Weight [Da]Natural Substrates/ Products (Substrates)Organic Solvent StabilityOrganismOxidation StabilityPosttranslational ModificationPurification (Commentary)ReactionRenatured (Commentary)Source TissueSpecific Activity [micromol/min/mg]Storage StabilitySubstrates and Products (Substrate)SubunitsTemperature Optimum [°C]Temperature Range [°C]Temperature Stability [°C]Turnover Number [1/s]pH OptimumpH RangepH StabilityCofactorKi Value [mM]pI ValueIC50 ValueActivating Compound (protein specific)Application (protein specific)Cloned(Commentary) (protein specific)Cofactor (protein specific)Crystallization (Commentary) (protein specific)Engineering (protein specific)General Stability (protein specific)IC50 Value (protein specific)Inhibitors (protein specific)Ki Value [mM] (protein specific)KM Value [mM] (protein specific)Localization (protein specific)Metals/Ions (protein specific)Molecular Weight [Da] (protein specific)Natural Substrates/ Products (Substrates) (protein specific)Organic Solvent Stability (protein specific)Oxidation Stability (protein specific)Posttranslational Modification (protein specific)Purification (Commentary) (protein specific)Renatured (Commentary) (protein specific)Source Tissue (protein specific)Specific Activity [micromol/min/mg] (protein specific)Storage Stability (protein specific)Substrates and Products (Substrate) (protein specific)Subunits (protein specific)Temperature Optimum [°C] (protein specific)Temperature Range [°C] (protein specific)Temperature Stability [°C] (protein specific)Turnover Number [1/s] (protein specific)pH Optimum (protein specific)pH Range (protein specific)pH Stability (protein specific)pI Value (protein specific)ExpressionGeneral InformationGeneral Information (protein specific)Expression (protein specific)KCat/KM [mM/s]KCat/KM [mM/s] (protein specific)
700741JungUridine-ribohydrolase is a key ...Arabidopsis thalianaPlant Cell21876-8912009--1-1--2-----1-----5--2--------------1--1----2---------5--2---------------
710272Mach-Uridine ribohydrolase and the ...Arabidopsis thalianaPlant Cell2100002009--------1----1-----5--1-----------------------1--------5--1---------------
681129YinInvolvement of rapid nucleotid ...Catharanthus roseusJ. Exp. Bot.581025-10332007-------------2-----1-----------------------------------1------------------
676653KatahiraRole of adenosine salvage in w ...Solanum tuberosumPlant Physiol. Biochem.44551-5552006-------------4-----1-----------------------------------1------------------
682289ShimanoEffect of long-term phosphate ...Catharanthus roseusPhytochemistry67132-1412006-------------2-----1-----------------------------------1------------------
670512CamposPurification and characterisat ...Coffea arabicaPhytochemistry66147-1512005-------1--1--3--1--11-11----1----------------1--1----1-11-11----1---------
657086Ashihara-Comparison of adenosine metabo ...Avicennia marina, Bruguiera gymnorhiza, Kandelia candel, Lumnitzera racemosa, Pemphis acidula, Rhizophora stylosa, Sonneratia albaPlant Physiol. Biochem.41133-1392003-----------7-7-----7--14--------------------------7-----7--14---------------
655545KoshiishiA new caffeine biosynthetic pa ...Camellia sinensisFEBS Lett.49950-542001--------1--1-3-----1--1-----------------------1--1-----1--1---------------
137099Abusamhadneh-Isolation and characterization ...Lupinus luteusPlant Sci.15325-322000-----1-1--1411--1--11-101---11------------1---1--141--1-11-101---11---------
137100Edwards-S-adenosyl-L-methionine metabo ...Medicago sativaPhytochemistry431163-11691996-----------2-1-----4--2--------------------------2-----4--2---------------
137101Negishi-N-methyl nucleosidase from tea ...Camellia sinensisAgric. Biol. Chem.52169-1751988-----------2-1--1--11-3--------------------------2---1-11-3---------------
137102Lee-Nucleic acid degrading enzymes ...Hordeum vulgareJ. Am. Soc. Brew. Chem.4486-901986-----141--13-1--1--1113-111-1------------1-4-1--13---1-1113-111-1---------
137103Burch-Purification and properties of ...Solanum lycopersicumJ. Plant Physiol.125267-2731986------43--13-1--1--2--3-----2--------------4-3--13---1-2--3-----2---------
137104Leszczynska-Comparative studies on adenosi ...Acacia dealbata, Fraxinus excelsior, Larix decidua, no activity in Ceratodon purpureus, no activity in Equisetum arvense, no activity in Populus alba, Tilia cordata, Ulmus carpinifoliaAnn. Bot.54847-8491984-----------5-8-----5--5--------------------------5-----5--5---------------
137051Le Floc'h-The purine nucleosidases of Je ...Helianthus tuberosusPhytochemistry202127-21291981-----1-1---1-1-----1--1------11----------1---1---1-----1--1------11-------
137106Schneider-Stabilization of enzymes in Se ...Hordeum vulgareJ. Appl. Biochem.3135-1461981-----------1-1--1--1111---1----------------------1---1-1111---1-----------
137107ChenMetabolism of cytokinin: Derib ...Triticum aestivumPlant Physiol.681020-10231981------52--12-3--1--2113-----1--------------5-2--12---1-2113-----1---------
137108NolanInhibition of growth and purin ...Crithidia fasciculata, no activity in Leishmania braziliensis, no activity in Leishmania donovani, no activity in Leishmania mexicana, no activity in Leishmania tarentolae, Trypanosoma cruziAntimicrob. Agents Chemother.17567-5711980------2----4-14-----2--4--------------------2-----4-----2--4---------------
137109Imagawa-Purification and properties of ...Camellia sinensisAgric. Biol. Chem.432337-23421979------1---14-1--11-1315-2-1-2-1------------1----14---1-1315-2-1-2-1-------
137110Guranowski-Adenosylhomocysteinase and ade ...Lupinus luteusPlanta139245-2471978-----------1-1-----12-1--------------------------1-----12-1---------------
137111GuranowskiPurification and characterizat ...Hordeum vulgareBiochim. Biophys. Acta482145-1581977-----252--12-3--11-111411---2---1--------2-512--12---1-111411---2---------
137112Clark-Purification and properties of ...Solanum tuberosumPhytochemistry113413-34191972------1---13-1--1--11-3-----2--------------1----13---1-11-3-----2---------
137113MazelisAn adenosine hydrolase from Br ...Brassica oleraceaJ. Biol. Chem.2383358-33611963-----111---3-2--1--2113---1-1------------1-1-1---3---1-2113---1-1---------