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DNA 的高级结构决定了其在拥挤条件下细胞大小液滴中的定位。

Higher-order structure of DNA determines its positioning in cell-size droplets under crowded conditions.

机构信息

Faculty of Life and Medical Sciences, Doshisha University, Kyoto, Japan.

Center for Integrative Medicine and Physics, Institute for Advanced Study, Kyoto University, Kyoto, Japan.

出版信息

PLoS One. 2021 Dec 22;16(12):e0261736. doi: 10.1371/journal.pone.0261736. eCollection 2021.

Abstract

BACKGROUND

It is becoming clearer that living cells use water/water (w/w) phase separation to form membraneless organelles that exhibit various important biological functions. Currently, it is believed that the specific localization of biomacromolecules, including DNA, RNA and proteins in w/w microdroplets is closely related to their bio-activity. Despite the importance of this possible role of micro segregation, our understanding of the underlying physico-chemical mechanism is still unrefined. Further research to unveil the underlying mechanism of the localization of macromolecules in relation to their steric conformation in w/w microdroplets is needed.

PRINCIPAL FINDINGS

Single-DNA observation of genome-size DNA (T4 GT7 bacteriophage DNA; 166kbp) by fluorescence microscopy revealed that DNAs are spontaneously incorporated into w/w microdroplets generated in a binary aqueous polymer solution with polyethylene glycol (PEG) and dextran (DEX). Interestingly, DNAs with elongated coil and shrunken conformations exhibit Brownian fluctuation inside the droplet. On the other hand, tightly packed compact globules, as well as assemblies of multiple condensed DNAs, tend to be located near the interface in the droplet.

CONCLUSION AND SIGNIFICANCE

The specific localization of DNA molecules depending on their higher-order structure occurs in w/w microdroplet phase-separation solution under a binary aqueous polymer solution. Such an aqueous solution with polymers mimics the crowded conditions in living cells, where aqueous macromolecules exist at a level of 30-40 weight %. The specific positioning of DNA depending on its higher-order structure in w/w microdroplets is expected to provide novel insights into the mechanism and function of membraneless organelles and micro-segregated particles in living cells.

摘要

背景

越来越明显的是,活细胞利用水/水(w/w)相分离形成无膜细胞器,这些细胞器表现出各种重要的生物学功能。目前,人们认为生物大分子(包括 DNA、RNA 和蛋白质)在 w/w 微滴中的特定定位与其生物活性密切相关。尽管这种微分离的可能作用很重要,但我们对其潜在物理化学机制的理解仍不完善。需要进一步研究揭示大分子在 w/w 微滴中定位与其在微滴中空间构象的潜在机制。

主要发现

通过荧光显微镜对基因组大小的 DNA(T4 GT7 噬菌体 DNA;166kbp)进行单 DNA 观察表明,DNA 会自发地掺入二元水相聚合物溶液(聚乙二醇(PEG)和葡聚糖(DEX))中生成的 w/w 微滴中。有趣的是,具有拉长线圈和收缩构象的 DNA 在液滴内表现出布朗运动。另一方面,紧密堆积的紧凑球和多个凝聚 DNA 的组装体往往位于液滴的界面附近。

结论和意义

在二元水相聚合物溶液中的 w/w 微滴相分离溶液中,DNA 分子根据其高级结构的特异性定位发生。这种聚合物的水溶液模拟了活细胞中拥挤的条件,其中水相大分子的存在水平为 30-40 重量%。DNA 根据其高级结构在 w/w 微滴中的特定定位有望为无膜细胞器和活细胞中微分离颗粒的机制和功能提供新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/533a/8694483/b7c327050390/pone.0261736.g001.jpg

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