Genetic Conflict Shapes Centromeres and Heterochromatin
Genetic Conflict Shapes Centromeres and Heterochromatin
批准号:
10411940
负责人:
HARMIT S MALIK
金额:
$20.32万
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:
2005-07-01 至 2023-05-31
关键词:
AddressAdoptedAllelesAmino Acid MotifsAneuploidyAnimalsBehaviorBindingBiologicalBiological ProcessCellular biologyCentromereChromatidsChromosome SegregationChromosome abnormalityChromosomesConflict (Psychology)Congenital AbnormalityCytologyDNADNA Sequence AlterationDefectDepositionDown SyndromeDrosophila genusEmbryoEmbryonic DevelopmentEngineeringEnsureEpigenetic ProcessEukaryotaEvolutionFemaleFoundationsGene DuplicationGenesGeneticGenetic ModelsGenetic studyGenomeGenome engineeringHeterochromatinHistone H3HistonesInfertilityInheritedKinetochoresLeadMalignant NeoplasmsMediatingMeiosisMicrotubulesMitosisMitoticModelingMolecularMusNematodaOocytesOogenesisPhenotypePlantsProcessProteinsProteomicsRecurrenceRestRoleSatellite DNAShapesSiteSpermiogenesisTestingTransgenesVariantYeastsbasecostdevelopmental diseaseeggexpectationexperiencefitnessflygenetic analysisinsightinterdisciplinary approachknock-downneuronal cell bodyparalogous genepleiotropismprotein protein interactionrecruitsperm celltooltransmission process
中文摘要
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英文摘要
PROJECT SUMMARY
Chromosome segregation is an essential process. The key chromosomal sites that
ensure proper segregation of chromosomes are centromeres, which bind microtubules
that pull chromosomes or chromatids apart during meiosis and mitosis. Centromere
function is thus essential for chromosome segregation. Defective centromeres can lead
to aneuploidy, infertility, and birth defects like Down’s syndrome. Despite the
conservation of the chromosome segregation process, centromeric proteins like CenH3,
which bind centromeric DNA to assemble microtubule-recruiting kinetochores, evolve
rapidly between closely related species. Their rapid evolution is unexpected and could
imperil the fidelity of the chromosome segregation process. We previously proposed that
this rapid evolution occurs due to ‘centromere-drive’, i.e., competition between
chromosomes during female meiosis, in which only one of four meiotic products is
chosen to be the egg pronucleus. Using an approach that combines insights from
evolutionary genetics and cell biology, and state-of-the-art genome engineering tools, we
propose to test this model of genetic conflict in Drosophila species. Furthermore, based
on our finding of recurrent duplication of CenH3 in Drosophila species, we will test
whether somatic versus germline centromeric functions have different functional
constraints, which are easiest to resolve via gene duplication and specialization of
CenH3 genes.
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海外基金