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细胞间融合的技术现状。

State of the art in cell-cell fusion.

作者信息

Willkomm Lena, Bloch Wilhelm

机构信息

Department of Molecular and Cellular Sport Medicine, Institute of Cardiovascular Research and Sport Medicine, German Sport University Cologne, Am Sportpark Müngersdorf 6, 50933, Cologne, Germany.

出版信息

Methods Mol Biol. 2015;1313:1-19. doi: 10.1007/978-1-4939-2703-6_1.

Abstract

Mammalian life begins with a cell-cell fusion event, i.e. the fusion of the spermatozoid with the oocyte and needs further cell-cell fusion processes for the development, growth, and maintenance of tissues and organs over the whole life span. Furthermore, cellular fusion plays a role in infection, cancer, and stem cell-dependent regeneration as well as including an expanded meaning of partial cellular fusion, nanotube formation, and microparticle-cell fusion. The cellular fusion process is highly regulated by proteins which carry the information to organize and regulate membranes allowing the merge of two separate lipid bilayers into one. The regulation of this genetically and epigenetically controlled process is achieved by different kinds of signals leading to communication of fusing cells. The local cellular and extracellular environment additionally initiates specific cell signaling necessary for the induction of the cell-cell fusion process. Common motifs exist in distinct cell-cell fusion processes and their regulation. However, there is specific regulation of different cell-cell fusion processes, e.g. myoblast, placental, osteoclast, and stem cell fusion. Hence, specialized fusion events vary between cell types and species. Molecular mechanisms remain largely unknown, especially limited knowledge is present for cancer and stem cell fusion mechanisms and regulation. More research is necessary for the understanding of cellular fusion processes which can lead to development of new therapeutic strategies grounding on cellular fusion regulation.

摘要

哺乳动物的生命始于细胞与细胞的融合事件,即精子与卵母细胞的融合,并且在整个生命周期中,组织和器官的发育、生长及维持还需要进一步的细胞与细胞融合过程。此外,细胞融合在感染、癌症、干细胞依赖性再生中发挥作用,还包括部分细胞融合、纳米管形成和微粒-细胞融合等更广泛的含义。细胞融合过程受到蛋白质的高度调控,这些蛋白质携带组织和调节膜的信息,使两个独立的脂质双层合并为一个。这种由基因和表观遗传控制的过程通过不同类型的信号实现调节,这些信号导致融合细胞之间的通讯。局部细胞和细胞外环境还启动了诱导细胞与细胞融合过程所需的特定细胞信号传导。不同的细胞与细胞融合过程及其调节存在共同的基序。然而,不同的细胞与细胞融合过程,如成肌细胞、胎盘、破骨细胞和干细胞融合,存在特定的调节。因此,专门的融合事件在细胞类型和物种之间有所不同。分子机制在很大程度上仍然未知,尤其是对于癌症和干细胞融合机制及调节的了解有限。为了理解细胞融合过程,从而开发基于细胞融合调节的新治疗策略,还需要更多的研究。

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