The budding yeast point centromere associates with two Cse4 molecules during mitosis.

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The budding yeast point centromere associates with two Cse4 molecules during mitosis. is …
instance of (P31):
scholarly articleQ13442814

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P356DOI10.1016/J.CUB.2013.03.042
P3181OpenCitations bibliographic resource ID4844575
P932PMC publication ID3893307
P698PubMed publication ID23623551
P5875ResearchGate publication ID236458755

P50authorAjit P JoglekarQ56256933
P2093author name stringPavithra Aravamudhan
Isabella Felzer-Kim
P2860cites workThe elasticity of single titin molecules using a two-bead optical tweezers assay.Q40291597
Structure of a central component of the yeast kinetochore: the Spc24p/Spc25p globular domainQ41792142
Cell-cycle-coupled structural oscillation of centromeric nucleosomes in yeastQ41811815
Mediator promotes CENP-a incorporation at fission yeast centromeres.Q42046608
Centromeric nucleosomes induce positive DNA supercoilsQ42113262
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 nucleosomesQ42561272
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 Scm3Q27667962
Structural determinants for generating centromeric chromatinQ28274742
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 cellsQ33345889
Molecular architecture of a kinetochore-microtubule attachment siteQ33839309
Epigenetic centromere propagation and the nature of CENP-a nucleosomes.Q34700376
Tripartite organization of centromeric chromatin in budding yeastQ35657537
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 yeastQ35670633
Centromere identity is specified by a single centromeric nucleosome in budding yeastQ35990276
P433issue9
P407language of work or nameEnglishQ1860
P921main subjectCentromeric DNA-binding histone H3-like protein CSE4 YKL049CQ27548091
P304page(s)770-774
P577publication date2013-04-25
P1433published inCurrent BiologyQ1144851
P1476titleThe budding yeast point centromere associates with two Cse4 molecules during mitosis
P478volume23

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cites work (P2860)
Q28075699A Cell Biological Perspective on Past, Present and Future Investigations of the Spindle Assembly Checkpoint
Q31145939A Sensitized Emission Based Calibration of FRET Efficiency for Probing the Architecture of Macromolecular Machines.
Q30583151Accurate phosphoregulation of kinetochore-microtubule affinity requires unconstrained molecular interactions
Q56529576An assay for de novo kinetochore assembly reveals a key role for the CENP-T pathway in budding yeast
Q58711837An asymmetric centromeric nucleosome
Q37643706An efficient targeted nuclease strategy for high-resolution mapping of DNA binding sites
Q42928082Assembling the protein architecture of the budding yeast kinetochore-microtubule attachment using FRET.
Q27693184Bending the rules: widefield microscopy and the Abbe limit of resolution
Q35562951Bimolecular Fluorescence Complementation (BiFC) Analysis: Advances and Recent Applications for Genome-Wide Interaction Studies
Q37621249CENP-A arrays are more condensed than canonical arrays at low ionic strength
Q63384253Centromere Structure and Function
Q56866577Chromosome Components Important for Genome Stability in Candida albicans and Related Species
Q42976505Determining absolute protein numbers by quantitative fluorescence microscopy
Q27937041Dual mechanisms regulate the recruitment of spindle assembly checkpoint proteins to the budding yeast kinetochore
Q33604352Every laboratory with a fluorescence microscope should consider counting molecules
Q35961828Fluorescent foci quantitation for high-throughput analysis.
Q33761182Glucose starvation inhibits autophagy via vacuolar hydrolysis and induces plasma membrane internalization by down-regulating recycling.
Q37414764Highly Transient Molecular Interactions Underlie the Stability of Kinetochore-Microtubule Attachment During Cell Division
Q47921014How Kinetochore Architecture Shapes the Mechanisms of Its Function
Q43065540How two become one: HJURP dimerization drives CENP-A assembly.
Q38284379Imaging methodologies for systems biology
Q33795322Imaging the fate of histone Cse4 reveals de novo replacement in S phase and subsequent stable residence at centromeres
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Q37167899Monopolin recruits condensin to organize centromere DNA and repetitive DNA sequences
Q30651045Multisite phosphorylation of the NDC80 complex gradually tunes its microtubule-binding affinity
Q47192170Quantitative Microscopy Reveals Centromeric Chromatin Stability, Size, and Cell Cycle Mechanisms to Maintain Centromere Homeostasis.
Q35156797Rad51-Rad52 mediated maintenance of centromeric chromatin in Candida albicans
Q42637244Reply to "CENP-A octamers do not confer a reduction in nucleosome height by AFM"
Q33635560Scm3 deposits a (Cse4-H4)2 tetramer onto DNA through a Cse4-H4 dimer intermediate
Q43283038Structural plasticity of the living kinetochore.
Q88562180Structure of the DASH/Dam1 complex shows its role at the yeast kinetochore-microtubule interface
Q35927495Synergistic Control of Kinetochore Protein Levels by Psh1 and Ubr2.
Q37705617The Ndc80 complex bridges two Dam1 complex rings
Q37698353The budding yeast Centromere DNA Element II wraps a stable Cse4 hemisome in either orientation in vivo
Q34479683The kinetochore encodes a mechanical switch to disrupt spindle assembly checkpoint signalling

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