Histone H3 Lysine 56 Acetylation Is Required for Formation of Normal Levels of Meiotic DNA Breaks in S. cerevisiae

scientific article published on 01 January 2019

Histone H3 Lysine 56 Acetylation Is Required for Formation of Normal Levels of Meiotic DNA Breaks in S. cerevisiae is …
instance of (P31):
scholarly articleQ13442814

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P356DOI10.3389/FCELL.2019.00364
P932PMC publication ID6970188
P698PubMed publication ID31998719

P2093author name stringZsolt Karányi
Lóránt Székvölgyi
Lilla Hornyák
P2860cites workCXXC1 is not essential for normal DNA double-strand break formation and meiotic recombination in mouseQ58549104
Spo11-accessory proteins link double-strand break sites to the chromosome axis in early meiotic recombinationQ64386697
Characterization of nucleosome core particles containing histone proteins made in bacteriaQ73770026
Epigenetic Control of Expression Homeostasis during Replication Is Stabilized by the Replication CheckpointQ89129237
Distinct transcriptional roles for Histone H3-K56 acetylation during the cell cycle in YeastQ90317319
Nuclear dynamics of the Set1C subunit Spp1 prepares meiotic recombination sites for break formationQ90425627
Role of histone tails in structural stability of the nucleosomeQ21145319
Histone H3 lysine 56 methylation regulates DNA replication through its interaction with PCNAQ24306661
Structure of the yeast nucleosome core particle reveals fundamental changes in internucleosome interactionsQ24535791
Prdm9 controls activation of mammalian recombination hotspotsQ24648262
Systematic screen reveals new functional dynamics of histones H3 and H4 during gametogenesisQ27929825
Meiosis-specific DNA double-strand breaks are catalyzed by Spo11, a member of a widely conserved protein familyQ27930009
Rtt109 is required for proper H3K56 acetylation: a chromatin mark associated with the elongating RNA polymerase II.Q27930864
High-resolution view of the yeast meiotic program revealed by ribosome profilingQ27934600
The sirtuins hst3 and Hst4p preserve genome integrity by controlling histone h3 lysine 56 deacetylation.Q27937957
Histone chaperone Asf1 is required for histone H3 lysine 56 acetylation, a modification associated with S phase in mitosis and meiosisQ27938401
Genome-wide replication-independent histone H3 exchange occurs predominantly at promoters and implicates H3 K56 acetylation and Asf1.Q27938595
Spp1, a member of the Set1 Complex, promotes meiotic DSB formation in promoters by tethering histone H3K4 methylation sites to chromosome axesQ27939760
A histone acetylation switch regulates H2A.Z deposition by the SWR-C remodeling enzymeQ27940293
Initiation of meiotic homologous recombination: flexibility, impact of histone modifications, and chromatin remodelingQ28261460
Cell cycle- and chaperone-mediated regulation of H3K56ac incorporation in yeastQ33386002
PRDM9 is a major determinant of meiotic recombination hotspots in humans and miceQ34090633
Separation of DNA replication from the assembly of break-competent meiotic chromosomesQ34277075
Histone fold modifications control nucleosome unwrapping and disassemblyQ35149617
Interplay between histone H3 lysine 56 deacetylation and chromatin modifiers in response to DNA damage.Q35579790
Acetylation in the globular core of histone H3 on lysine-56 promotes chromatin disassembly during transcriptional activation.Q36752456
From meiosis to postmeiotic events: homologous recombination is obligatory but flexibleQ37656488
Single-pair FRET experiments on nucleosome conformational dynamicsQ37783645
Chaperone-mediated acetylation of histones by Rtt109 identified by quantitative proteomicsQ39472382
Loss of the histone chaperone ASF1B reduces female reproductive capacity in mice.Q40018858
Sequence non-specific double-strand breaks and interhomolog interactions prior to double-strand break formation at a meiotic recombination hot spot in yeastQ40789703
The 4D nucleome projectQ41686790
The COMPASS subunit Spp1 links histone methylation to initiation of meiotic recombinationQ41792125
Numerical and spatial patterning of yeast meiotic DNA breaks by Tel1.Q41875887
A hierarchical combination of factors shapes the genome-wide topography of yeast meiotic recombination initiationQ42079090
Temporospatial coordination of meiotic DNA replication and recombination via DDK recruitment to replisomes.Q42834028
Histone H3-K56 acetylation is catalyzed by histone chaperone-dependent complexesQ42850451
Histone H3 lysine 4 trimethylation marks meiotic recombination initiation sites.Q43188962
P275copyright licenseCreative Commons Attribution 4.0 InternationalQ20007257
P6216copyright statuscopyrightedQ50423863
P304page(s)364
P577publication date2019-01-01
P1433published inFrontiers in Cell and Developmental BiologyQ27725488
P1476titleHistone H3 Lysine 56 Acetylation Is Required for Formation of Normal Levels of Meiotic DNA Breaks in S. cerevisiae
P478volume7

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