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48 results on '"RPL11"'

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1. SRBD1 Regulates the Cell Cycle, Apoptosis, and M2 Macrophage Polarization via the RPL11‐MDM2‐p53 Pathway in Glioma.

2. RPL11 promotes non-small cell lung cancer cell proliferation by regulating endoplasmic reticulum stress and cell autophagy

3. Nucleolar stress: Molecular mechanisms and related human diseases.

4. RPL11 promotes non-small cell lung cancer cell proliferation by regulating endoplasmic reticulum stress and cell autophagy.

5. Nucleolar Stress Response via Ribosomal Protein L11 Regulates Topoisomerase Inhibitor Sensitivity of P53-Intact Cancers.

6. Ophiopogonin D increase apoptosis by activating p53 via ribosomal protein L5 and L11 and inhibiting the expression of c-Myc via CNOT2.

7. Involvement of ribosomal protein L11 expression in sensitivity of gastric cancer against 5-FU.

8. Organellar transcriptome sequencing reveals mitochondrial localization of nuclear encoded transcripts.

9. Colocalization of MID1IP1 and c-Myc is Critically Involved in Liver Cancer Growth via Regulation of Ribosomal Protein L5 and L11 and CNOT2

10. Nucleolar Stress Response via Ribosomal Protein L11 Regulates Topoisomerase Inhibitor Sensitivity of P53-Intact Cancers

11. The role of the DNA damage response in zebrafish and cellular models of Diamond Blackfan anemia

12. Involvement of RPL11 in the enhancement of P53 stability by a podophyllum derivative, a topoisomerase II inhibitor.

13. Variable expressivity and incomplete penetrance in a large family with non-classical Diamond-Blackfan anemia associated with ribosomal protein L11 splicing variant.

14. GRWD1, a new player among oncogenesis-related ribosomal/nucleolar proteins.

15. Deneddylation of ribosomal proteins promotes synergy between MLN4924 and chemotherapy to elicit complete therapeutic responses.

16. p53 -Dependent and -Independent Nucleolar Stress Responses

17. MicroRNA-101-3p Suppresses Cancer Cell Growth by Inhibiting the USP47-Induced Deubiquitination of RPL11

18. Involvement of ribosomal protein L11 expression in sensitivity of gastric cancer against 5-FU

20. Ribosomal protein RPL11 haploinsufficiency causes anemia in mice via activation of the RP-MDM2-p53 pathway.

21. Activation of the tumor suppressor p53 upon impairment of ribosome biogenesis.

22. Colocalization of MID1IP1 and c-Myc is Critically Involved in Liver Cancer Growth via Regulation of Ribosomal Protein L5 and L11 and CNOT2

23. Subtractive screen of potential limb regeneration related genes from Pachytriton brevipes.

24. Assessment of hematopoietic failure due to Rpl11 deficiency in a zebrafish model of Diamond-Blackfan anemia by deep sequencing.

25. p53 -Dependent and -Independent Nucleolar Stress Responses.

26. p53-Dependent Apoptotic Effect of Puromycin via Binding of Ribosomal Protein L5 and L11 to MDM2 and Its Combination Effect with RITA or Doxorubicin

27. MicroRNA-101-3p Suppresses Cancer Cell Growth by Inhibiting the USP47-Induced Deubiquitination of RPL11.

28. Regulation of the RP-MDM2-P53 pathway by SUMO

29. Regulation of the RP-MDM2-P53 pathway by SUMO

30. The role of the DNA damage response in zebrafish and cellular models of Diamond Blackfan anemia

31. Nuclear PRAS40 couples the Akt/mTORC1 signaling axis to the RPL11-HDM2-p53 nucleolar stress response pathway

32. Colocalization of MID1IP1 and c-Myc is Critically Involved in Liver Cancer Growth via Regulation of Ribosomal Protein L5 and L11 and CNOT2.

34. Ribosomal Proteins L5 and L11 Cooperatively Inactivate c-Myc via RNA-induced Silencing Complex

35. The RP-Mdm2-p53 Pathway and Tumorigenesis

37. p53-Dependent Apoptotic Effect of Puromycin via Binding of Ribosomal Protein L5 and L11 to MDM2 and Its Combination Effect with RITA or Doxorubicin.

40. The role of the L5/L11-Mdm2-p53 signaling pathway in response to ribosomal and genotoxic stresses

41. The Role of Ribosomal Proteins L5 and L11 in Tumor Suppression

42. p53 -Dependent and -Independent Nucleolar Stress Responses

43. Implication of ribosomal proteins in transformation process induced by v-erbA oncogene

44. Cross talk between TP53 and c-Myc in the pathophysiology of Diamond-Blackfan anemia: Evidence from RPL11-deficient in vivo and in vitro models.

45. Primary hematopoietic cells from DBA patients with mutations in RPL11 and RPS19 genes exhibit distinct erythroid phenotype in vitro

46. Suprainduction of p53 by disruption of 40S and 60S ribosome biogenesis leads to the activation of a novel G2/M checkpoint.

47. Assembly factors Rpf2 and Rrs1 recruit 5S rRNA and ribosomal proteins rpL5 and rpL11 into nascent ribosomes.

48. Diamond-Blackfan Anemia

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