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1. Loss of Human TGS1 Hypermethylase Promotes Increased Telomerase RNA and Telomere Elongation

2. TGS1 impacts snRNA 3′-end processing, ameliorates survival motor neuron-dependent neurological phenotypes in vivo and prevents neurodegeneration

3. AKTIP/Ft1, a New Shelterin-Interacting Factor Required for Telomere Maintenance.

4. The Analysis of Pendolino (peo) Mutants Reveals Differences in the Fusigenic Potential among Drosophila Telomeres.

5. Atomic Force Microscopy Reveals that the Drosophila Telomere-Capping Protein Verrocchio Is a Single-Stranded DNA-Binding Protein

6. Intimate functional interactions between TGS1 and the Smn complex revealed by an analysis of the Drosophila eye development

7. Loss of Human TGS1 Hypermethylase Promotes Increased Telomerase RNA and Telomere Elongation

8. TGS1 controls snRNA 3' end processing, prevents neurodegeneration and amelioratesSMN-dependent neurological phenotypes in vivo

9. Intimate functional interactions between TGS1 and the Smn complex revealed by an analysis of the Drosophila eye development

10. Silence at the End: How Drosophila Regulates Expression and Transposition of Telomeric Retroelements

11. WDR79/TCAB1 plays a conserved role in the control of locomotion and ameliorates phenotypic defects in SMA models

12. The Drosophila telomere-capping protein Verrocchio binds single-stranded DNA and protects telomeres from DNA damage response

13. The telomeric protein AKTIP interacts with A- and B-type lamins and is involved in regulation of cellular senescence

14. AKTIP/Ft1, a New Shelterin-Interacting Factor Required for Telomere Maintenance

15. SUMO-binding Motifs Mediate the Rad60-dependent Response to Replicative Stress and Self-association

16. Telomere

17. GOLPH3 Is Essential for Contractile Ring Formation and Rab11 Localization to the Cleavage Site during Cytokinesis in Drosophila melanogaster

18. Organization and Evolution of Drosophila Terminin: Similarities and Differences between Drosophila and Human Telomeres

19. Terminin: a protein complex that mediates epigenetic maintenance of Drosophila telomeres

20. Verrocchio, a Drosophila OB fold-containing protein, is a component of the terminin telomere-capping complex

21. The Drosophila modigliani (moi) gene encodes a HOAP-interacting protein required for telomere protection

22. Drosophila HP1c is regulated by an auto-regulatory feedback loop through its binding partner Woc

23. The putative Drosophila transcription factor Woc is required to prevent telomeric fusions

24. The Drosophila HOAP protein is required for telomere capping

25. GOLPH3 is essential for contractile ring formation and Rab11 localization to the cleavage site during cytokinesis in Drosophila melanogaster.

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