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Your search keyword '"Pandita, Tej K."' showing total 22 results

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22 results on '"Pandita, Tej K."'

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1. Role of Transposable Elements in Genome Stability: Implications for Health and Disease.

2. Role of histone acetyltransferases MOF and Tip60 in genome stability.

3. EXO5-DNA structure and BLM interactions direct DNA resection critical for ATR-dependent replication restart.

4. Role of Histone Methylation in Maintenance of Genome Integrity.

5. Autism-Associated Vigilin Depletion Impairs DNA Damage Repair.

6. Ssb1 and Ssb2 cooperate to regulate mouse hematopoietic stem and progenitor cells by resolving replicative stress.

8. β2-spectrin depletion impairs DNA damage repair.

9. Role of the Exocyst Complex Component Sec6/8 in Genomic Stability.

10. T-cell-specific deletion of Mof blocks their differentiation and results in genomic instability in mice.

11. Human exonuclease 5 is a novel sliding exonuclease required for genome stability.

12. Alteration/deficiency in activation-3 (Ada3) plays a critical role in maintaining genomic stability.

13. Cell cycle checkpoint defects contribute to genomic instability in PTEN deficient cells independent of DNA DSB repair.

14. Role for proteasome activator PA200 and postglutamyl proteasome activity in genomic stability.

15. Single-stranded DNA-binding protein hSSB1 is critical for genomic stability.

16. Role of mammalian Rad9 in genomic stability and ionizing radiation response.

17. Impaired genomic stability and increased oxidative stress exacerbate different features of Ataxia-telangiectasia.

18. HSP70 and genomic stability.

19. Genomic instability and enhanced radiosensitivity in Hsp70.1- and Hsp70.3-deficient mice.

20. Implications of Translesion DNA Synthesis Polymerases on Genomic Stability and Human Health.

22. Cdt1 transgenic mice develop lymphoblastic lymphoma in the absence of p53.

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