Pages that link to "Q36847869"
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The following pages link to Inosine-5'-monophosphate dehydrogenase is a rate-determining factor for p53-dependent growth regulation (Q36847869):
Displaying 31 items.
- Ribavirin enhances interferon signaling via stimulation of mTOR and p53 activities (Q24316273) (← links)
- IMP dehydrogenase: structure, mechanism, and inhibition (Q24642299) (← links)
- Breaching the Kinetic Barrier to in Vitro Somatic Stem Cell Propagation (Q24803328) (← links)
- Cellular Senescence:Ex Vivop53-Dependent Asymmetric Cell Kinetics (Q24803348) (← links)
- Guanylic nucleotide starvation affects Saccharomyces cerevisiae mother-daughter separation and may be a signal for entry into quiescence (Q24811368) (← links)
- Saccharomyces cerevisiae transcription elongation mutants are defective in PUR5 induction in response to nucleotide depletion (Q27933874) (← links)
- Regulation of an IMP dehydrogenase gene and its overexpression in drug-sensitive transcription elongation mutants of yeast (Q27939514) (← links)
- Guanosine supplementation reduces apoptosis and protects renal function in the setting of ischemic injury (Q28363475) (← links)
- Inosine monophosphate dehydrogenase: A molecular switch integrating pleiotropic GTP-dependent beta-cell functions. (Q33694089) (← links)
- The cellular response to p53: the decision between life and death (Q33771774) (← links)
- CXCR6, a newly defined biomarker of tissue-specific stem cell asymmetric self-renewal, identifies more aggressive human melanoma cancer stem cells. (Q33784789) (← links)
- A resource for discovering specific and universal biomarkers for distributed stem cells (Q33983097) (← links)
- Reversal of TNP-470-induced endothelial cell growth arrest by guanine and guanine nucleosides (Q34128798) (← links)
- Ex vivo Expansion of Human Adult Pancreatic Cells with Properties of Distributed Stem Cells by Suppression of Asymmetric Cell Kinetics (Q34132207) (← links)
- P53-responsive genes and the potential for cancer diagnostics and therapeutics development (Q34423327) (← links)
- Asymmetric cell kinetics genes: the key to expansion of adult stem cells in culture (Q35011600) (← links)
- Sparse feature selection identifies H2A.Z as a novel, pattern-specific biomarker for asymmetrically self-renewing distributed stem cells (Q35186689) (← links)
- Culture environment-induced pluripotency of SACK-expanded tissue stem cells (Q35610468) (← links)
- Transcription initiation of the yeast IMD2 gene is abolished in response to nutrient limitation through a sequence in its coding region. (Q35661496) (← links)
- Biological principles for ex vivo adult stem cell expansion (Q36510510) (← links)
- Inosine monophosphate dehydrogenase as a target for antiviral, anticancer, antimicrobial and immunosuppressive therapeutics (Q37855856) (← links)
- Comparison of bax, waf1, and IMP dehydrogenase regulation in response to wild-type p53 expression under normal growth conditions (Q41003479) (← links)
- Ribavirin suppresses erythroid differentiation and proliferation in chronic hepatitis C patients (Q42223386) (← links)
- Transcriptional regulation of the yeast gmp synthesis pathway by its end products. (Q43508372) (← links)
- Guanine nucleosides and Jurkat cell death: roles of ATP depletion and accumulation of deoxyribonucleotides (Q43792064) (← links)
- Participation of yeast inosine 5'-monophosphate dehydrogenase in an in vitro complex with a fragment of the C-rich telomeric strand (Q44054735) (← links)
- Novel guanidine-based inhibitors of inosine monophosphate dehydrogenase. (Q44148575) (← links)
- Cytotoxicity and cellular differentiation activity of methylenebis(phosphonate) analogs of tiazofurin and mycophenolic acid adenine dinucleotide in human cancer cell lines (Q44215270) (← links)
- A phase I dose-ranging study of the pharmacokinetics, pharmacodynamics, safety, and tolerability of AVN944, an IMPDH inhibitor, in healthy male volunteers (Q46275875) (← links)
- Identification of genes responsive to brown planthopper Nilaparvata lugens Stal (Homoptera: Delphacidae) feeding in rice. (Q52085543) (← links)
- Bicyclol promotes toll-like 2 receptor recruiting inosine 5'-monophosphate dehydrogenase II to exert its anti-inflammatory effect. (Q53329383) (← links)