scholarly article | Q13442814 |
P2093 | author name string | Hong Zhao | |
Stephen J Benkovic | |||
Ye Fang | |||
Jarrod B French | |||
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GPCRs regulate the assembly of a multienzyme complex for purine biosynthesis. | Q34054724 | ||
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Hsp70/Hsp90 chaperone machinery is involved in the assembly of the purinosome. | Q34325039 | ||
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Cancer's molecular sweet tooth and the Warburg effect. | Q34566915 | ||
The purine synthesis gene Prat2 is required for Drosophila metamorphosis, as revealed by inverted-repeat-mediated RNA interference | Q34588058 | ||
Reversible compartmentalization of de novo purine biosynthetic complexes in living cells | Q34767701 | ||
Structural biology of the purine biosynthetic pathway | Q34810454 | ||
Functional links between Aβ toxicity, endocytic trafficking, and Alzheimer's disease risk factors in yeast | Q35763361 | ||
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SAICAR stimulates pyruvate kinase isoform M2 and promotes cancer cell survival in glucose-limited conditions | Q36480143 | ||
Purine and pyrimidine metabolism in Leishmania | Q37118742 | ||
Folate and vitamin B12 metabolism: overview and interaction with riboflavin, vitamin B6, and polymorphisms | Q37246124 | ||
Zebrafish mutations in gart and paics identify crucial roles for de novo purine synthesis in vertebrate pigmentation and ocular development. | Q37257838 | ||
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Mutations of ATIC and ADSL affect purinosome assembly in cultured skin fibroblasts from patients with AICA-ribosiduria and ADSL deficiency | Q39425863 | ||
ADA and PNP deficiencies: how it all began | Q39850207 | ||
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Feedback inhibition of amidophosphoribosyltransferase regulates the rate of cell growth via purine nucleotide, DNA, and protein syntheses | Q40814444 | ||
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Characterization and chemical properties of phosphoribosylamine, an unstable intermediate in the de novo purine biosynthetic pathway | Q41769956 | ||
Genetic and metabolomic analysis of AdeD and AdeI mutants of de novo purine biosynthesis: cellular models of de novo purine biosynthesis deficiency disorders | Q41956655 | ||
De novo GMP synthesis is required for axon guidance in Drosophila | Q42712825 | ||
Folate-mediated one-carbon metabolism | Q46356485 | ||
Enzymic capacities of purine de Novo and salvage pathways for nucleotide synthesis in normal and neoplastic tissues | Q48665468 | ||
Synthesis de novo of purines in slices of rat brain and liver | Q48944264 | ||
Evidence for direct inhibition of de novo purine synthesis in human MCF-7 breast cells as a principal mode of metabolic inhibition by methotrexate | Q69005371 | ||
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Salvage capacity of hepatoma 3924A and action of dipyridamole | Q70520632 | ||
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Nucleic Acids, Purines, Pyrimidines (Nucleotide Synthesis) | Q78759814 | ||
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P433 | issue | 40 | |
P407 | language of work or name | English | Q1860 |
P304 | page(s) | 4444-4452 | |
P577 | publication date | 2013-04-11 | |
P1433 | published in | Chemical Communications | Q426303 |
P1476 | title | The purinosome, a multi-protein complex involved in the de novo biosynthesis of purines in humans | |
P478 | volume | 49 |
Q58777653 | Beyond the Warburg Effect: How Do Cancer Cells Regulate One-Carbon Metabolism? |
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Q90781379 | Combinatorial targeting of MTHFD2 and PAICS in purine synthesis as a novel therapeutic strategy |
Q93058477 | Cryo-EM structures demonstrate human IMPDH2 filament assembly tunes allosteric regulation |
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