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Cacao

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GO:0005971ribonucleoside-diphosphate reductase complexPMID:21336276IMP: Inferred from Mutant Phenotype C
This annotation made on page: HUMAN:RIR1
By: Adkinssm (group Team Syndicate) on 2016-05-05 23:06:03 CDT.



TeamPoints
Team Syndicate0




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Entry TypeChallenging User,GroupTime/DateChallenge ReasonPoints/Assessment
Private
Assessment
Suzialeksander2016-06-28 15:47:13 CDTYou need to be an instructor to view these notes.Updated by Instructor
Private
Assessment
Suzialeksander2016-06-01 12:02:44 CDTYou need to be an instructor to view these notes.Requires Changes
Protein
Publication
Qualifier
Go term
Evidence
With/From
Notes
Unique/Original
Public
Assessment
DanielRenfro2016-05-24 11:49:00 CDT

This annotation has been flagged because it has been edited since last assessment

Qualifier GO ID GO term name Reference Evidence Code with/from Aspect Notes Status
Contributes to GO:0061731 ribonucleoside-diphosphate reductase activity PMID:21336276 IMP: Inferred from Mutant Phenotype F Figure 3e shows the activity of wild-type ribonucleotide reductase relative to two mutant types which was determined using [3H]-CDP and [14C]-ADP reduction assays. ATP binds to the complex and activates it through an allosteric mechanism. This allows the ribonucleotide-diphosphate reductase complex to catalyze the formation of deoxyribonucleotides from ribonucleotides. The D16R mutant protein was not able to be activated by ATP at the allosteric site, and therefore had 45% reduced reductase activity (conversion of ADP to dADP). In the H2E mutant, the reductase activity relative to the wild-type was reduced by 44%. complete
CACAO 12018
on HUMAN:RIR1
Flagged
Private
Assessment
Suzialeksander2016-05-20 13:41:03 CDTYou need to be an instructor to view these notes.Requires Changes
Protein
Publication
Qualifier
Go term
Evidence
With/From
Notes
Unique/Original
Public
Assessment
DanielRenfro2016-05-17 09:19:17 CDT

This annotation has been flagged because it has been edited since last assessment

Qualifier GO ID GO term name Reference Evidence Code with/from Aspect Notes Status
Contributes to GO:0005971 ribonucleoside-diphosphate reductase complex PMID:21336276 IMP: Inferred from Mutant Phenotype C Figure 3e shows the activity of wild-type ribonucleotide reductase relative to two mutant types which was determined using [3H]-CDP and [14C]-ADP reduction assays. ATP binds to the complex and activates it through an allosteric mechanism. This allows the ribonucleotide-diphosphate reductase complex to catalyze the formation of deoxyribonucleotides from ribonucleotides. The D16R mutant protein was not able to be activated by ATP at the allosteric site, and therefore had 45% reduced reductase activity (conversion of ADP to dADP). In the H2E mutant, the reductase activity relative to the wild-type was reduced by 44%. complete
CACAO 12018
on HUMAN:RIR1
Flagged
Private
Assessment
AAJohnson2016-05-16 10:22:13 CDTYou need to be an instructor to view these notes.Acceptable
Protein
Publication
Qualifier
Go term
Evidence
With/From
Notes
Unique/Original