Segregation of error-prone chromosomes in meiosis
Segregation of error-prone chromosomes in meiosis
批准号:
7596354
负责人:
DEAN S DAWSON
金额:
$27.02万
依托单位国家:
美国
项目类别:
财政年份:
2006
资助国家:
美国
项目状态:
已结题
起止时间:
2006-04-01 至 2011-03-31
关键词:
AgeAnaphaseAneuploidyAnimal ModelBehaviorCellsCentromereChromosome PairingChromosome SegregationChromosomesChromosomes, Human, Pair 2ConceptusCongenital AbnormalityDNA SequenceExhibitsFailureGenesGenetic RecombinationGoalsHomologous GeneHumanI Kappa B-AlphaIncidenceInfertilityKinetochoresLeadLengthLinkMaternal AgeMediatingMeiosisMeiotic RecombinationMicrotubulesModelingModificationParticipantPlayProbabilityProcessProphaseProteinsRandomizedResearch PersonnelRoleSideSister ChromatidSpontaneous abortionTestingTimeTurner&aposs SyndromeWomanYeastsbasecohesionexperienceprogramsresearch studysegregation
中文摘要
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英文摘要
In humans, meiotic chromosome segregation errors result in aneuploidy-based birth defects such as
Down's, Klinefelter's, and Turner's Syndromes, cause most spontaneous abortions, and are frequently
responsible for infertility. The incidence of conceptuses with inappropriate numbers of chromosomes rises
with increased maternal age. Recombination between homologous chromosomes greatly increases the
probability that they will segregate properly (away from each other) at meiosis I. It has been proposed that in
humans many meiotic chromosome segregation errors occur because of two sequential failures of the
meiotic machinery. First, failed or inappropriately placed recombination between homologous chromosomes
makes them "error-prone". These error-prone chromosomes probably segregate correctly in most meioses,
but failures of a second, undefined, component of the segregation machinery renders cells unable to partition
these error-prone chromosomes properly. Increased failures in the second component are thought to be
responsible for the increased incidence of trisomic progeny as woman age. One candidate for the second
failed mechanism is spindle, or spindle checkpoint, function. Studies of meiotic segregation of error-prone
chromosomes in yeast have revealed a two-step failure process with strong similarities to the human
situation. In yeast, as in humans, failures in recombination render chromosome pairs error-prone in meiosis
, and highly dependent on a second process. This second process requires the conserved spindle
checkpoint gene, MAD3 (related to BubR1 in humans). The goal of this project is to examine the
mechanisms used to partition error-prone chromosomes in yeast meiosis. The aims are: 1) Determine how
MAD3 contributes to the partitioning of non-exchange chromosomes. 2) Test the hypothesis that a
centromere-pairing mechanism is used to partition error-prone non-exchange chromosomes in yeast. 3)
Identify the genes required for the meiotic centromere pairing observed between non-exchange chromosome
pairs. 4) Test the hypothesis that centromere pairing plays a previously unrecognized role in mediating
meiosis-specific behavior of all chromosomes. These studies should lead to a better understanding of the
mechanistic problems that lead to failed meioses in humans.
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批准号:9306115
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资助金额:$33.44万
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批准号:8105305
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资助金额:$28.87万
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财政年份:2010
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Meiotic Centromere Behavior in Yeast
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批准号:8294613
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资助金额:$28.87万
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Segregation of error-prone chromosomes in meiosis
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批准号:8002880
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资助金额:$10.7万
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资助金额:$33.44万
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Meiotic Centromere Behavior in Yeast
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资助金额:$28.89万
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Segregation of error-prone chromosomes in meiosis
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