Chromatin regulation of epithelial stem cell function
上皮干细胞功能的染色质调节
基本信息
- 批准号:10272880
- 负责人:
- 金额:$ 38.7万
- 依托单位:
- 依托单位国家:美国
- 项目类别:
- 财政年份:2021
- 资助国家:美国
- 起止时间:2021-08-01 至 2026-07-31
- 项目状态:未结题
- 来源:
- 关键词:AddressAdoptedAdultAgingBiological ModelsCell Differentiation processCellsCellular biologyChromatinDevelopmentDiseaseEnhancersEnzymesEpithelialEquilibriumExhibitsFoundationsGenomicsGoalsHealthHomeostasisHumanIn VitroInfectionInflammationInformal Social ControlInjuryIntestinesLifeMalignant NeoplasmsModelingNatural regenerationPropertyRegenerative responseRegulationReporterResearchSiteTissuesTransgenesTraumatic injuryadult stem cellcell typechromatin modificationepithelial stem cellgenomic locusin vivointerestintestinal epitheliummouse modelnovelprogenitorprogramsregeneration following injuryresponseself-renewalstem cell differentiationstem cell functionstem cellsstemnesstooltranscription factortumorigenesis
项目摘要
ABSTRACT
Stemness is a functional cellular attribute defined by properties of multipotency (the ability to produce all
differentiated cell types in a tissue) and self-renewal (the ability to produce new stem cells). In adult epithelial
tissues, stemness can exist in: (1) dedicated stem cells occupying a defined niche, and (2) differentiated cells
that exhibit plasticity to drive regeneration following injury. Stem cells must balance self-renewal with
differentiation, and differentiated cells must balance lineage specific identity with plasticity to participate in
regenerative responses. My lab is interested in understanding how chromatin modifications and their associated
enzymes interact with site-specific transcription factors (TFs) to establish cell identities while simultaneously
facilitating alternative cell fates. We focus on intestinal stem cells (ISCs), which drive the renewal of the intestinal
epithelium approximately once a week throughout adult life, as a model system. Over the next five years, my
research program will explore how TFs and chromatin modifying enzymes contribute to an exit from the
stem cell state as ISC differentiate. Current models propose that rapid differentiation and plasticity in the
intestinal epithelium is regulated by chromatin landscapes that are highly similar across all intestinal epithelial
cell types, regardless of differentiation stage. Recent studies in my lab have challenged this model using a
Sox9EGFP mouse model that allows us to isolate ISCs, progenitors, and differentiated cells with a single reporter
transgene. We quantified changes in chromatin accessibility and 5-hydroxymethylcytosine and identified
significant chromatin dynamics at genomic loci consistent with enhancers. Our analyses identified novel
candidate TF-chromatin interactions and raise exciting questions about the importance of chromatin regulation
in adult epithelial stem cells. Our future research will build on this progress to understand: (1) how stem cell-
associated chromatin is decommissioned by TFs in differentiation, (2) how lineage-specific regulatory programs
are “primed” in ISCs, and (3) how chromatin modifying enzymes bridge regulation of self-renewal and
differentiation. The approach proposed here will establish a long-term research program, with broad potential to
expand into studies of plasticity/de-differentiation, chromatin regulation of epithelial responses to environmental
challenges, and development. Our goal is to pursue a basic mechanistic understanding of chromatin regulation
in stemness that will have foundational relevance to human health and disease, including epithelial responses
to inflammation, infection, injury, aging, and tumorigenesis.
抽象的
干性是一种功能性细胞属性,由多能性(产生所有物质的能力)定义
组织中分化的细胞类型)和自我更新(在成体上皮细胞中产生新干细胞的能力)。
组织中,干性可以存在于:(1) 占据特定生态位的专用干细胞,以及 (2) 分化细胞
表现出可塑性以驱动损伤后的再生的干细胞必须平衡自我更新。
分化,分化细胞必须平衡谱系特异性和可塑性才能参与
我的实验室有兴趣了解染色质修饰及其相关的过程。
酶与位点特异性转录因子 (TF) 相互作用以建立细胞身份,同时
我们专注于促进肠道更新的肠道干细胞 (ISC)。
在接下来的五年里,我的上皮细胞大约每周一次,作为一个模型系统。
研究计划将探索转录因子和染色质修饰酶如何有助于退出
当前的模型表明,ISC 具有快速分化和可塑性。
肠上皮受到所有肠上皮高度相似的染色质景观的调节
细胞类型,无论分化阶段如何,我实验室最近的研究使用
Sox9EGFP 小鼠模型使我们能够用单个报告基因分离 ISC、祖细胞和分化细胞
我们量化了染色质可及性和 5-羟甲基胞嘧啶的变化并进行了鉴定。
我们的分析发现了与增强子一致的基因组位点的显着染色质动态。
候选 TF-染色质相互作用,并提出有关染色质调控重要性的令人兴奋的问题
我们未来的研究将基于这一进展来了解:(1)干细胞如何-
相关染色质在分化过程中被 TF 停用,(2) 谱系特异性调控程序如何
在 ISC 中“启动”,以及 (3) 染色质修饰酶如何桥接自我更新和
这里提出的方法将建立一个长期的研究计划,具有广泛的潜力。
扩展到可塑性/去分化、上皮对环境反应的染色质调节的研究
我们的目标是追求对染色质调控的基本机制的理解。
干性与人类健康和疾病具有基础相关性,包括上皮反应
炎症、感染、损伤、衰老和肿瘤发生。
项目成果
期刊论文数量(0)
专著数量(0)
科研奖励数量(0)
会议论文数量(0)
专利数量(0)
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Adam David Gracz其他文献
Adam David Gracz的其他文献
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{{ truncateString('Adam David Gracz', 18)}}的其他基金
Genetic regulation of ductular reaction in liver injury and regeneration
肝损伤和再生中导管反应的基因调控
- 批准号:
10595652 - 财政年份:2022
- 资助金额:
$ 38.7万 - 项目类别:
Regulation of intestinal stem cell state by ID3
ID3对肠道干细胞状态的调节
- 批准号:
10810101 - 财政年份:2022
- 资助金额:
$ 38.7万 - 项目类别:
Chromatin regulation of epithelial stem cell function
上皮干细胞功能的染色质调节
- 批准号:
10582038 - 财政年份:2021
- 资助金额:
$ 38.7万 - 项目类别:
Chromatin regulation of epithelial stem cell function
上皮干细胞功能的染色质调节
- 批准号:
10448365 - 财政年份:2021
- 资助金额:
$ 38.7万 - 项目类别:
Chromatin regulation of epithelial stem cell function
上皮干细胞功能的染色质调节
- 批准号:
10669122 - 财政年份:2021
- 资助金额:
$ 38.7万 - 项目类别:
Determining the role of Tet1 in intestinal stem cell differentiation and self-renewal
确定 Tet1 在肠道干细胞分化和自我更新中的作用
- 批准号:
9806499 - 财政年份:2019
- 资助金额:
$ 38.7万 - 项目类别:
Determining the role of Tet1 in intestinal stem cell differentiation and self-renewal
确定 Tet1 在肠道干细胞分化和自我更新中的作用
- 批准号:
10193967 - 财政年份:2019
- 资助金额:
$ 38.7万 - 项目类别:
Mechanisms and function of Tet1 regulated gene networks in intestinal stem cell biology
Tet1调控基因网络在肠道干细胞生物学中的机制和功能
- 批准号:
9751284 - 财政年份:2016
- 资助金额:
$ 38.7万 - 项目类别:
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