Function of CAF-1 in Epigenetic Inheritance
Function of CAF-1 in Epigenetic Inheritance
批准号:
7491104
负责人:
Zhiguo Zhang
金额:
$26.86万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2005
资助国家:
美国
项目状态:
已结题
起止时间:
2005-09-20 至 2010-08-31
关键词:
AcetylationAddressAffectBindingBiological ModelsBiological ProcessCancer EtiologyCell CycleCell divisionCell physiologyCellsChromatinChromatin StructureDNADNA biosynthesisDNA chemical synthesisDepositionEnvironmentEpigenetic ProcessEuchromatinEukaryotic CellFibrinogenFunctional disorderGene ExpressionGenetic ScreeningGenetic TranscriptionGenomicsGoalsHeterochromatinHistone H3Histone H4HistonesInheritedKnowledgeLeadLightLysineMaintenanceMalignant NeoplasmsMating TypesMeiosisMethylationMitosisModelingModificationMolecularNucleosomesPhasePlayProcessProtein BindingProteinsRecording of previous eventsRecruitment ActivityReportingResearch PersonnelRibosomal DNARoleSaccharomyces cerevisiaeStructureTestingTumor-Suppressor Gene InactivationYeastscancer cellchromatin assembly factor Idaughter cellinsightmutantpreventprogramstelomere
中文摘要
点击翻译按钮获取中文摘要
英文摘要
In eukaryotic cells, heterochromatin governs diverse cellular processes such as silencing transcription and
maintaining genomic integrity. Once formed, heterochromatin must be transmitted to daughter cells during
cell division. Inappropriate gain or loss of heterochromatic structure plays a causal role in cancer. Therefore,
studies on how heterochromatin is inherited during S phase or epigenetic inheritance will not only increase
our understanding of this basic biological process, but also shed light on how this processgoes awry in
cancer cells.
The yeast S. cerevisiae offers an excellent model systemto study epigenetic inheritance. Yeast
heterochromatin is marked by the presence of hypoacetylated histories and four silent information regulator
(Sir) proteins. SirSp and Sir4p associate with hypoacetylated histones H3 and H4for establishment and
maintenance of yeast silent chromatin. During DNA synthesis, much of the epigenetic information such as
modifications on histones as well as Sir proteins is temporarily disrupted. Immediately after DNAsynthesis,
the epigenetic information must be reestablished. Chromatin assemblyfactor 1 (CAF-1) is one of the factors
involved in inheritance of epigenetic information. However, the molecular mechanisms by whichCAF-1
functions in this process is not clear.
Our long-term goal is to understand how chromatin structures are inherited during the S phase of the cell
cycle. The objective of this proposal is to study molecular mechanisms whereby CAF-1functions wtih its
modulator and effectorproteins to inherit silent chromatin structure in yeast. These studies will address how
heterochromatin is inherited in yeast. Moreover, knowledge gained from these studies will also lead to a
better understaning of epigenetic inheritance in mammaliancells and cancer caused by malfunction of this
process.
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