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35 results on '"Centromere localization"'

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1. Suv420 enrichment at the centromere limits Aurora B localization and function

2. Bub1 and CENP-U redundantly recruit Plk1 to stabilize kinetochore-microtubule attachments and ensure accurate chromosome segregation

3. CENP-A Ubiquitylation Is Indispensable to Cell Viability

4. Nuclear accumulation of annexin A2 contributes to chromosomal instability by coilin-mediated centromere damage

5. Inner centromere localization of the CPC maintains centromere cohesion and allows mitotic checkpoint silencing

6. Centromere targeting of the chromosomal passenger complex requires a ternary subcomplex of Borealin, Survivin, and the N-terminal domain of INCENP

7. Cdk Activity Couples Epigenetic Centromere Inheritance to Cell Cycle Progression

8. Regulation of borealin by phosphorylation at serine 219

9. Centromere-Specific Assembly of CENP-A Nucleosomes Is Mediated by HJURP

10. Priming of Centromere for CENP-A Recruitment by Human hMis18α, hMis18β, and M18BP1

11. Accelerated reproductive aging in females lacking a novel centromere protein SYCP2L

12. Comprehensive analysis of the ICEN (Interphase Centromere Complex) components enriched in the CENP-A chromatin of human cells

13. CENP-A Ubiquitylation Is Required for CENP-A Deposition at the Centromere

14. Human centromere chromatin protein hMis12, essential for equal segregation, is independent of CENP-A loading pathway

15. Chromatin Protein HP1α Interacts with the Mitotic Regulator Borealin Protein and Specifies the Centromere Localization of the Chromosomal Passenger Complex*

16. Heterochromatic deposition of centromeric histone H3-like proteins

17. Analysis of Primary Structural Determinants That Distinguish the Centromere-Specific Function of Histone Variant Cse4p from Histone H3

18. A mutation in CSE4, an essential gene encoding a novel chromatin-associated protein in yeast, causes chromosome nondisjunction and cell cycle arrest at mitosis

19. Mammalian Polo-like Kinase 1-dependent Regulation of the PBIP1-CENP-Q Complex at Kinetochores*

20. Detrimental incorporation of excess Cenp-A/Cid and Cenp-C into Drosophila centromeres is prevented by limiting amounts of the bridging factor Cal1

21. Identification of a subdomain of CENP-B that is necessary and sufficient for localization to the human centromere

22. Dietary flavonoid fisetin induces a forced exit from mitosis by targeting the mitotic spindle checkpoint

23. Mis16 and Mis18 are required for CENP-A loading and histone deacetylation at centromeres

24. CENP-B interacts with CENP-C domains containing Mif2 regions responsible for centromere localization

25. Mitosin/CENP-F is a conserved kinetochore protein subjected to cytoplasmic dynein-mediated poleward transport

26. Mutational analysis of the central centromere targeting domain of human centromere protein C, (CENP-C)

27. Chromosomal G-dark bands determine the spatial organization of centromeric heterochromatin in the nucleus

28. The centromere paradox: stable inheritance with rapidly evolving DNA

29. Autoepitopes on autoantigen centromere protein-A (CENP-A) are restricted to the N-terminal region, which has no homology with histone H3

30. Immunolocalization of CENP-A suggests a distinct nucleosome structure at the inner kinetochore plate of active centromeres

31. The case for epigenetic effects on centromere identity and function

32. CENP-C, an autoantigen in scleroderma, is a component of the human inner kinetochore plate

33. A 17-kD centromere protein (CENP-A) copurifies with nucleosome core particles and with histones

34. Identification of a family of human centromere proteins using autoimmune sera from patients with scleroderma

35. Control of Centromere Localization of the MEI-S332 Cohesion Protection Protein

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