scholarly article | Q13442814 |
P50 | author | Ajit P Joglekar | Q56256933 |
P2093 | author name string | Pavithra Aravamudhan | |
Isabella Felzer-Kim | |||
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Structure of a central component of the yeast kinetochore: the Spc24p/Spc25p globular domain | Q41792142 | ||
Cell-cycle-coupled structural oscillation of centromeric nucleosomes in yeast | Q41811815 | ||
Mediator promotes CENP-a incorporation at fission yeast centromeres. | Q42046608 | ||
Centromeric nucleosomes induce positive DNA supercoils | Q42113262 | ||
Quantitative single-molecule microscopy reveals that CENP-A(Cnp1) deposition occurs during G2 in fission yeast. | Q42260386 | ||
"Point" centromeres of Saccharomyces harbor single centromere-specific nucleosomes | Q42561272 | ||
The CENP-A chaperone Scm3 becomes enriched at kinetochores in anaphase independently of CENP-A incorporation. | Q50511868 | ||
Nonhistone Scm3 binds to AT-rich DNA to organize atypical centromeric nucleosome of budding yeast. | Q53227972 | ||
A heterochromatin barrier partitions the fission yeast centromere into discrete chromatin domains. | Q53639483 | ||
Recognition of the centromere-specific histone Cse4 by the chaperone Scm3 | Q27667962 | ||
Structural determinants for generating centromeric chromatin | Q28274742 | ||
Plasticity of fission yeast CENP-A chromatin driven by relative levels of histone H3 and H4. | Q33293168 | ||
Bimolecular fluorescence complementation (BiFC) analysis as a probe of protein interactions in living cells | Q33345889 | ||
Molecular architecture of a kinetochore-microtubule attachment site | Q33839309 | ||
Epigenetic centromere propagation and the nature of CENP-a nucleosomes. | Q34700376 | ||
Tripartite organization of centromeric chromatin in budding yeast | Q35657537 | ||
Point centromeres contain more than a single centromere-specific Cse4 (CENP-A) nucleosome. | Q35670611 | ||
CENP-A exceeds microtubule attachment sites in centromere clusters of both budding and fission yeast | Q35670633 | ||
Centromere identity is specified by a single centromeric nucleosome in budding yeast | Q35990276 | ||
P433 | issue | 9 | |
P407 | language of work or name | English | Q1860 |
P921 | main subject | Centromeric DNA-binding histone H3-like protein CSE4 YKL049C | Q27548091 |
P304 | page(s) | 770-774 | |
P577 | publication date | 2013-04-25 | |
P1433 | published in | Current Biology | Q1144851 |
P1476 | title | The budding yeast point centromere associates with two Cse4 molecules during mitosis | |
P478 | volume | 23 |
Q28075699 | A Cell Biological Perspective on Past, Present and Future Investigations of the Spindle Assembly Checkpoint |
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Q30583151 | Accurate phosphoregulation of kinetochore-microtubule affinity requires unconstrained molecular interactions |
Q56529576 | An assay for de novo kinetochore assembly reveals a key role for the CENP-T pathway in budding yeast |
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Q27693184 | Bending the rules: widefield microscopy and the Abbe limit of resolution |
Q35562951 | Bimolecular Fluorescence Complementation (BiFC) Analysis: Advances and Recent Applications for Genome-Wide Interaction Studies |
Q37621249 | CENP-A arrays are more condensed than canonical arrays at low ionic strength |
Q63384253 | Centromere Structure and Function |
Q56866577 | Chromosome Components Important for Genome Stability in Candida albicans and Related Species |
Q42976505 | Determining absolute protein numbers by quantitative fluorescence microscopy |
Q27937041 | Dual mechanisms regulate the recruitment of spindle assembly checkpoint proteins to the budding yeast kinetochore |
Q33604352 | Every laboratory with a fluorescence microscope should consider counting molecules |
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Q37414764 | Highly Transient Molecular Interactions Underlie the Stability of Kinetochore-Microtubule Attachment During Cell Division |
Q47921014 | How Kinetochore Architecture Shapes the Mechanisms of Its Function |
Q43065540 | How two become one: HJURP dimerization drives CENP-A assembly. |
Q38284379 | Imaging methodologies for systems biology |
Q33795322 | Imaging the fate of histone Cse4 reveals de novo replacement in S phase and subsequent stable residence at centromeres |
Q37308262 | Measuring affinities of fission yeast spindle pole body proteins in live cells across the cell cycle |
Q37167899 | Monopolin recruits condensin to organize centromere DNA and repetitive DNA sequences |
Q30651045 | Multisite phosphorylation of the NDC80 complex gradually tunes its microtubule-binding affinity |
Q47192170 | Quantitative Microscopy Reveals Centromeric Chromatin Stability, Size, and Cell Cycle Mechanisms to Maintain Centromere Homeostasis. |
Q35156797 | Rad51-Rad52 mediated maintenance of centromeric chromatin in Candida albicans |
Q42637244 | Reply to "CENP-A octamers do not confer a reduction in nucleosome height by AFM" |
Q33635560 | Scm3 deposits a (Cse4-H4)2 tetramer onto DNA through a Cse4-H4 dimer intermediate |
Q43283038 | Structural plasticity of the living kinetochore. |
Q88562180 | Structure of the DASH/Dam1 complex shows its role at the yeast kinetochore-microtubule interface |
Q35927495 | Synergistic Control of Kinetochore Protein Levels by Psh1 and Ubr2. |
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