古细菌的胞外膜囊泡和纳米管。

microLife Pub Date : 2021-01-01 DOI:10.1093/femsml/uqab007
Junfeng Liu, Nicolas Soler, Aurore Gorlas, Virginija Cvirkaite-Krupovic, Mart Krupovic, Patrick Forterre
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引用次数: 5

摘要

膜结合的细胞外囊泡(EVs)由生命的所有三个领域的细胞分泌,它们在各种生物过程中的意义越来越被认识到。本文综述了目前有关古菌EVs和纳米管的研究进展,并强调了它们的生物学意义。在古细菌中,ev和纳米管已经在绿古菌门和Euryarchaeota门的代表物种中进行了大量的研究。古细菌EVs与一些生理过程有关,如解毒、生物矿化和生物分子的运输,包括染色体、病毒或质粒DNA,从而通过水平基因转移参与基因组进化和适应。尽管古细菌纳米管可以参与EV的生物发生或细胞内容物的交换,但其生物学意义尚未得到证实。我们还讨论了导致EV/纳米管在古细菌中生物发生的生物学机制。最近的研究表明,与真核生物类似,绿古菌中的EV出芽依赖于ESCRT机制,而在缺乏ESCRT- iii同源物的euryarchaeal谱系中,EV出芽的机制尚不清楚。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Extracellular membrane vesicles and nanotubes in Archaea.

Extracellular membrane vesicles and nanotubes in Archaea.

Extracellular membrane vesicles and nanotubes in Archaea.

Extracellular membrane vesicles and nanotubes in Archaea.

Membrane-bound extracellular vesicles (EVs) are secreted by cells from all three domains of life and their implication in various biological processes is increasingly recognized. In this review, we summarize the current knowledge on archaeal EVs and nanotubes, and emphasize their biological significance. In archaea, the EVs and nanotubes have been largely studied in representative species from the phyla Crenarchaeota and Euryarchaeota. The archaeal EVs have been linked to several physiological processes such as detoxification, biomineralization and transport of biological molecules, including chromosomal, viral or plasmid DNA, thereby taking part in genome evolution and adaptation through horizontal gene transfer. The biological significance of archaeal nanotubes is yet to be demonstrated, although they could participate in EV biogenesis or exchange of cellular contents. We also discuss the biological mechanisms leading to EV/nanotube biogenesis in Archaea. It has been recently demonstrated that, similar to eukaryotes, EV budding in crenarchaea depends on the ESCRT machinery, whereas the mechanism of EV budding in euryarchaeal lineages, which lack the ESCRT-III homologues, remains unknown.

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