共生体诱导宿主细胞分化的趋势。

Q4 Biochemistry, Genetics and Molecular Biology Results and Problems in Cell Differentiation Pub Date : 2020-01-01 DOI:10.1007/978-3-030-51849-3_5
Shelbi L Russell, Jennie Ruelas Castillo
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引用次数: 0

摘要

细菌与真核宿主的共生关系多种多样,需要精确的相互作用才能被细菌识别并持续存在。最常见的情况是,宿主相关细菌干扰宿主基因表达,以调节对感染的免疫反应。不过,许多细菌也会干扰宿主细胞的分化途径,以创造一个适宜的生态位,从而形成新的细胞类型、组织和器官。在这两种情况下,细菌共生体都必须与真核生物调控途径相互作用。在这里,我们详细介绍了细菌共生体(从病原体到互生体)如何控制宿主细胞分化的中心原理,从表观遗传染色质修饰、转录和 mRNA 处理到翻译和蛋白质修饰。我们从这项调查中发现了四个主要趋势。首先,控制宿主基因表达的机制似乎是由共生体共同利用宿主信号通路之间的交叉对话演变而来的。第二,共生体的调控能力受到驱动宿主相关细菌还原基因组进化过程的制约。第三,共生体表现出的调控机制与关联的成本/效益性质相关。第四,共生体与宿主基因调控元件的相互作用机制不受本地细菌能力的限制。利用这些知识,我们探讨了节肢动物和线虫中无处不在的胞内狼杆菌共生体是如何调节宿主细胞分化以操纵宿主繁殖的。我们对有关感染如何改变沃尔巴克氏菌及其宿主基因表达的文献进行了调查,结果发现,尽管沃尔巴克氏菌的基因组中等大小,但不同的菌株似乎能够进行多种多样的调控操作。鉴于这一点以及沃尔巴克氏菌的表型和类真核蛋白的多样性,我们预计将在该系统中发现许多共生诱导的宿主分化机制。
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Trends in Symbiont-Induced Host Cellular Differentiation.

Bacteria participate in a wide diversity of symbiotic associations with eukaryotic hosts that require precise interactions for bacterial recognition and persistence. Most commonly, host-associated bacteria interfere with host gene expression to modulate the immune response to the infection. However, many of these bacteria also interfere with host cellular differentiation pathways to create a hospitable niche, resulting in the formation of novel cell types, tissues, and organs. In both of these situations, bacterial symbionts must interact with eukaryotic regulatory pathways. Here, we detail what is known about how bacterial symbionts, from pathogens to mutualists, control host cellular differentiation across the central dogma, from epigenetic chromatin modifications, to transcription and mRNA processing, to translation and protein modifications. We identify four main trends from this survey. First, mechanisms for controlling host gene expression appear to evolve from symbionts co-opting cross-talk between host signaling pathways. Second, symbiont regulatory capacity is constrained by the processes that drive reductive genome evolution in host-associated bacteria. Third, the regulatory mechanisms symbionts exhibit correlate with the cost/benefit nature of the association. And, fourth, symbiont mechanisms for interacting with host genetic regulatory elements are not bound by native bacterial capabilities. Using this knowledge, we explore how the ubiquitous intracellular Wolbachia symbiont of arthropods and nematodes may modulate host cellular differentiation to manipulate host reproduction. Our survey of the literature on how infection alters gene expression in Wolbachia and its hosts revealed that, despite their intermediate-sized genomes, different strains appear capable of a wide diversity of regulatory manipulations. Given this and Wolbachia's diversity of phenotypes and eukaryotic-like proteins, we expect that many symbiont-induced host differentiation mechanisms will be discovered in this system.

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来源期刊
Results and Problems in Cell Differentiation
Results and Problems in Cell Differentiation Biochemistry, Genetics and Molecular Biology-Developmental Biology
CiteScore
1.90
自引率
0.00%
发文量
21
期刊介绍: Results and Problems in Cell Differentiation is an up-to-date book series that presents and explores selected questions of cell and developmental biology. Each volume focuses on a single, well-defined topic. Reviews address basic questions and phenomena, but also provide concise information on the most recent advances. Together, the volumes provide a valuable overview of this exciting and dynamically expanding field.
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Early Syncytialization of the Ovine Placenta Revisited. HIV-1 Induced Cell-to-Cell Fusion or Syncytium Formation. Mathematical Modeling of Virus-Mediated Syncytia Formation: Past Successes and Future Directions. Muscle Progenitor Cell Fusion in the Maintenance of Skeletal Muscle. Osteoclasts at Bone Remodeling: Order from Order.
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