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Hymyc1 下调促进了水螅的干细胞增殖。

Hymyc1 downregulation promotes stem cell proliferation in Hydra vulgaris.

机构信息

Istituto di Cibernetica E Caianiello, Consiglio Nazionale delle Ricerche, Pozzuoli, Italy.

出版信息

PLoS One. 2012;7(1):e30660. doi: 10.1371/journal.pone.0030660. Epub 2012 Jan 23.

Abstract

Hydra is a unique model for studying the mechanisms underlying stem cell biology. The activity of the three stem cell lineages structuring its body constantly replenishes mature cells lost due to normal tissue turnover. By a poorly understood mechanism, stem cells are maintained through self-renewal while concomitantly producing differentiated progeny. In vertebrates, one of many genes that participate in regulating stem cell homeostasis is the protooncogene c-myc, which has been recently identified also in Hydra, and found expressed in the interstitial stem cell lineage. In the present paper, by developing a novel strategy of RNA interference-mediated gene silencing (RNAi) based on an enhanced uptake of small interfering RNAi (siRNA), we provide molecular and biological evidence for an unexpected function of the Hydra myc gene (Hymyc1) in the homeostasis of the interstitial stem cell lineage. We found that Hymyc1 inhibition impairs the balance between stem cell self renewal/differentiation, as shown by the accumulation of stem cell intermediate and terminal differentiation products in genetically interfered animals. The identical phenotype induced by the 10058-F4 inhibitor, a disruptor of c-Myc/Max dimerization, demonstrates the specificity of the RNAi approach. We show the kinetic and the reversible feature of Hymyc1 RNAi, together with the effects displayed on regenerating animals. Our results show the involvement of Hymyc1 in the control of interstitial stem cell dynamics, provide new clues to decipher the molecular control of the cell and tissue plasticity in Hydra, and also provide further insights into the complex myc network in higher organisms. The ability of Hydra cells to uptake double stranded RNA and to trigger a RNAi response lays the foundations of a comprehensive analysis of the RNAi response in Hydra allowing us to track back in the evolution and the origin of this process.

摘要

水螅是研究干细胞生物学基础机制的独特模型。其身体结构中三种干细胞谱系的活性不断补充因正常组织更新而损失的成熟细胞。通过一种尚未被充分理解的机制,干细胞通过自我更新得以维持,同时产生分化后代。在脊椎动物中,许多参与调节干细胞稳态的基因之一是原癌基因 c-myc,最近在水螅中也发现了该基因,并发现其在间质干细胞谱系中表达。在本研究中,我们通过开发一种基于小干扰 RNAi(siRNA)摄取增强的新型 RNA 干扰(RNAi)基因沉默策略,为水螅 myc 基因(Hymyc1)在间质干细胞谱系稳态中的意外功能提供了分子和生物学证据。我们发现 Hymyc1 抑制会损害干细胞自我更新/分化之间的平衡,这表现为遗传干扰动物中干细胞中间和终末分化产物的积累。10058-F4 抑制剂(一种破坏 c-Myc/Max 二聚体形成的抑制剂)诱导的相同表型证明了 RNAi 方法的特异性。我们展示了 Hymyc1 RNAi 的动力学和可逆性特征,以及在再生动物中显示的效果。我们的研究结果表明,Hymyc1 参与了间质干细胞动力学的控制,为解析水螅中细胞和组织可塑性的分子调控提供了新线索,也为高等生物中复杂的 myc 网络提供了进一步的见解。水螅细胞摄取双链 RNA 并引发 RNAi 反应的能力为水螅中 RNAi 反应的全面分析奠定了基础,使我们能够追溯这一过程在进化和起源中的地位。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2402/3264606/6e905861fc81/pone.0030660.g001.jpg

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