Cellular and molecular mechanisms of aging and regeneration in colonial chordate
Cellular and molecular mechanisms of aging and regeneration in colonial chordate
批准号:
8728091
负责人:
IRVING L. WEISSMAN
金额:
$30.76万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2010
资助国家:
美国
项目状态:
已结题
起止时间:
2010-09-01 至 2015-05-31
关键词:
AccountingAdultAffectAgeAgingAging-Related ProcessAnastomosis - actionAnimal ModelAnti-Bacterial AgentsAntibodiesAntioxidantsApoptosisAsexual ReproductionAttentionBiologicalBiological MetamorphosisBiologyBiology of AgingBloodBlood VesselsBrainCaenorhabditis elegansCandidate Disease GeneCell AgingCell divisionCellsCessation of lifeCharacteristicsChordataCnidariaCollectionComparative Genomic AnalysisCompetenceComplexDNA DamageDNA RepairDataData CollectionData SetDate of birthDevelopmentDevelopmental BiologyDrosophila genomeDrosophila genusDrosophila melanogasterEpidermisEvolutionExhibitsExposure toGene ExpressionGene Expression ProfilingGenerationsGenesGeneticGenetsGenomeGenomic DNAGenotypeGerm CellsGlandGoalsGonadal structureGrantGrowthGrowth and Development functionGunsHeartHeat-Shock ResponseHematopoietic SystemHigh-Throughput Nucleotide SequencingHomeostasisHomingHomologous GeneHumanHuman bodyImageryImmuneImmune responseIn SituIn Situ HybridizationInbreedingIndividualIntestinesInvertebratesInvestigationLaboratoriesLifeLife Cycle StagesLinkLiverLongevityMaintenanceMediatingMessenger RNAMetabolicMicrofluidicsMitoticModelingModificationMolecularMolecular ProfilingMorphologyMusMuscleMutationNatural regenerationNervous system structureOrganOrganismOvaryParentsPathway interactionsPatternPhenotypePhysiologicalPlant RootsPopulationProcessProliferatingPropertyProteinsReadingRecording of previous eventsRegulationRelative (related person)ReproductionResistanceRespirationRoleSamplingSiteSkinSmall Interfering RNASomatic CellStaining methodStainsStem Cell DevelopmentStem cellsStimulusStressStructureSystemTemperatureTestingTestisThyroid GlandTimeTissue-Specific Gene ExpressionTissuesUrochordataVariantVertebratesWound Healingadult stem cellage relatedanti agingasexualbasecell agecell motilitydaughter cellgastrointestinal systemgene functiongenome sequencingimprovedinsightintestinal epitheliumlife historymigrationmolecular phenotypenovelprogenitorprogramsprotochordateregenerativereproductiveresearch studyresponseresponse to injurysample collectionself renewing cellself-renewalsenescencestemstem cell biologystem cell nichetissue regenerationtooltrait
中文摘要
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英文摘要
DESCRIPTION (provided by applicant): Virtually every aspect of an organism's phenotype undergoes modification in its functionality and morphology during aging. The complexity of organisms and the vast amount of aging related phenomena make it very difficult to distinguish between phenotypes that cause aging and which are the effect of it. In colonial organisms, like Botryllus schlosseri, individuals originally derived, like us, by sexual reproduction and chordate development can metamorphose to clonal founders that undergo weekly formation of new individuals by budding from a small group of stem cells. Individuals are transient structures which die through massive apoptosis and successive buds mature to replicate an entire new body, every week. As a result, their stem cells, which are the only self renewing cells in a tissue, are the only cells which remain through the entire life of the genotype and are the only cells that can retain the effects of time. Therefore, aging of the colony in this organism is, by definition, aging of the stem cells: every other cell is regenerated from them on a weekly basis. In this colonial model organism, we can clearly define that stem cell aging is the root cause of senescence of the entire colony. Most importantly, we can sample single tissue or gonad stem cells over the dozens of asexual doublings the colony undergoes while aging, and follow the serial changes or clonal selections that occur in the stem cell pools for each tissue, and for the germline. In this proposal, we outline studies to investigate the cellular and molecular mechanisms of aging and regeneration in tissues of B.schlosseri. Specifically, we propose to characterize the molecular pathways which underline sexual versus asexual reproduction in a colonial chordate; to identify and characterize the molecular mechanisms associated with robust regeneration activity and tissue homeostasis and to test their effects on longevity, and age-related cellular and molecular processes; and to investigate the effect of exposure of old colonies to circulating factors from young colonies (through vascular anastomosis), on their molecular expression profile and regeneration potential. We will use the Illumina high throughput, mRNA sequencing platform to compare differential expression of genes between: asexual developmental pathways in young colonies versus old. This analysis includes comparing long and short lived genotypes and within groups-genotypes that demonstrate simultaneous versus random death. We will also compare expression profiles of enriched stem cells and stem cell niches from defined tissues and organs over time. This approach with inbred, self crossed lines or samples of the same genotype will allow identification of genes which are expressed differentially over the life span of the tested genotypes that are likely to affect aging and alter tissue regeneration capacities. We will identify the specific cells that show the differential expression by in situ hybridization. This comprehensive screen will be followed by functional experiments that evaluate gene function by knockdown studies, and altered biology in situ as they migrate across vascular bridges between colonies to participate in budding and germ cell formation. We will also determine, at the single cell level the aging signatures in both stem cells and niche cells.
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Stem cell-mediated development, regeneration, chimerism, and aging in the colonial chordate Botryllus schlosseri.
群落脊索动物 Botryllus schlosseri 中干细胞介导的发育、再生、嵌合和衰老。
DOI:
10.1002/dvg.23542
发表时间:
2023
期刊:
Genesis (New York, N.Y. : 2000)
影响因子:
--
作者:
[Voskoboynik,Ayelet]
通讯作者:
Voskoboynik,Ayelet
DOI:
10.1093/gbe/evu041
发表时间:
2014-03
期刊:
Genome biology and evolution
影响因子:
3.3
作者:
[Griggio F, Voskoboynik A, Iannelli F, Justy F, Tilak MK, Turon X, Pesole G, Douzery EJ, Mastrototaro F, Gissi C]
通讯作者:
Gissi C
DOI:
10.1080/07924259.2014.944673
发表时间:
2015-01-30
期刊:
Invertebrate reproduction & development
影响因子:
0.8
作者:
[Voskoboynik A, Weissman IL]
通讯作者:
Weissman IL
DOI:
10.3390/cells12071041
发表时间:
2023-03-29
期刊:
Cells
影响因子:
6
作者:
[]
通讯作者:
DOI:
10.1073/pnas.2203032119
发表时间:
2022-07-19
期刊:
Proceedings of the National Academy of Sciences of the United States of America
影响因子:
11.1
作者:
[]
通讯作者:
共 6 条
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Cellular and molecular mechanisms of aging and regeneration in colonial chordate
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海外基金