...
首页> 外文期刊>Ecological restoration >Integrative and perturbation-based analysis of the transcriptional dynamics of TGF beta/BMP system components in transition from embryonic stem cells to neural progenitors
【24h】

Integrative and perturbation-based analysis of the transcriptional dynamics of TGF beta/BMP system components in transition from embryonic stem cells to neural progenitors

机译:基于胚胎干细胞转变为神经祖细胞的TGFβ/ BMP系统组分转义动力学的基于综合性和扰动的分析

获取原文
获取原文并翻译 | 示例

摘要

Cooperative actions of extrinsic signals and cell-intrinsic transcription factors alter gene regulatory networks enabling cells to respond appropriately to environmental cues. Signaling by transforming growth factor type beta (TGF beta) family ligands (eg, bone morphogenetic proteins [BMPs] and Activin/Nodal) exerts cell-type specific and context-dependent transcriptional changes, thereby steering cellular transitions throughout embryogenesis. Little is known about coordinated regulation and transcriptional interplay of the TGF beta system. To understand intrafamily transcriptional regulation as part of this system's actions during development, we selected 95 of its components and investigated their mRNA-expression dynamics, gene-gene interactions, and single-cell expression heterogeneity in mouse embryonic stem cells transiting to neural progenitors. Interrogation at 24 hour intervals identified four types of temporal gene transcription profiles that capture all stages, that is, pluripotency, epiblast formation, and neural commitment. Then, between each stage we performed esiRNA-based perturbation of each individual component and documented the effect on steady-state mRNA levels of the remaining 94 components. This exposed an intricate system of multilevel regulation whereby the majority of gene-gene interactions display a marked cell-stage specific behavior. Furthermore, single-cell RNA-profiling at individual stages demonstrated the presence of detailed co-expression modules and subpopulations showing stable co-expression modules such as that of the core pluripotency genes at all stages. Our combinatorial experimental approach demonstrates how intrinsically complex transcriptional regulation within a given pathway is during cell fate/state transitions.
机译:外部信号和细胞内在转录因子的合作作用改变基因调节网络,使细胞能够适当地响应环境提示。通过转化生长因子型β(TGFβ)家族配体(例如,骨形态发生蛋白[BMP]和Activin / Nodal)通过转化的信号传导施加细胞型特异性和上下文的转录变化,从而转向整个胚胎发生的细胞转变。关于TGFβ系统的协调调节和转录相互作用很少。为了了解在开发过程中该系统的一部分的胃内转录调节,我们选择了95个组分,并研究了转发到神经祖细胞的小鼠胚胎干细胞中的mRNA表达动态,基因基因相互作用和单细胞表达异质性。 24小时询问间隔鉴定了捕获所有阶段的四种类型的颞基转录曲线,即多能性,外卵形成和神经承诺。然后,在每个阶段之间,我们对每个单独的组分进行了基于esiRNA的扰动,并记录了对剩余的94个组分的稳态mRNA水平的影响。这暴露了一种复杂的多级调节系统,其中大多数基因基因相互作用显示出明显的细胞阶段特异性行为。此外,单个阶段的单细胞RNA分析证明存在详细的共表达模块和群体,显示稳定的共表达模块,例如所有阶段的核心多能基因的存在。我们的组合实验方法证明了在细胞命运/状态转变期间给定途径内的本质复杂转录调节。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号