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微量移液管抽吸法揭示了核仁亚区室不同的RNA依赖性粘弹性。

Micropipette aspiration reveals differential RNA-dependent viscoelasticity of nucleolar subcompartments.

作者信息

Cheng Holly H, Roggeveen James V, Wang Huan, Stone Howard A, Shi Zheng, Brangwynne Clifford P

机构信息

Department of Molecular Biology, Princeton University, Princeton, NJ 08544.

Department of Mechanical and Aerospace Engineering, Princeton, NJ 08544.

出版信息

Proc Natl Acad Sci U S A. 2025 Jun 3;122(22):e2407423122. doi: 10.1073/pnas.2407423122. Epub 2025 May 28.

Abstract

The nucleolus is a multiphasic biomolecular condensate that facilitates ribosome biogenesis, a complex process involving hundreds of proteins and RNAs. The proper execution of ribosome biogenesis likely depends on the material properties of the nucleolus. However, these material properties remain poorly understood due to the challenges of in vivo measurements. Here, we use micropipette aspiration (MPA) to directly characterize the viscoelasticity and interfacial tensions of nucleoli within transcriptionally active oocytes. We examine the major nucleolar subphases, the outer granular component (GC) and the inner dense fibrillar component (DFC), which itself contains a third small phase known as the fibrillar center (FC). We show that the behavior of the GC is more liquid-like, while the behavior of the DFC/FC is consistent with that of a partially viscoelastic solid. To determine the role of ribosomal RNA in nucleolar material properties, we degrade RNA using RNase A, which causes the DFC/FC to become more fluid-like and alters interfacial tension. Together, our findings suggest that RNA underlies the partially solid-like properties of the DFC/FC and provide insights into how material properties of nucleoli in a near-native environment are related to their RNA-dependent function.

摘要

核仁是一种多相生物分子凝聚物,它促进核糖体生物合成,这是一个涉及数百种蛋白质和RNA的复杂过程。核糖体生物合成的正确执行可能取决于核仁的物质特性。然而,由于体内测量的挑战,这些物质特性仍然知之甚少。在这里,我们使用微量移液器抽吸(MPA)直接表征转录活跃的卵母细胞内核仁的粘弹性和界面张力。我们研究了主要的核仁亚相,即外部颗粒组分(GC)和内部致密纤维组分(DFC),后者本身包含第三个小相,称为纤维中心(FC)。我们发现GC的行为更像液体,而DFC/FC的行为与部分粘弹性固体的行为一致。为了确定核糖体RNA在核仁物质特性中的作用,我们使用核糖核酸酶A降解RNA,这会使DFC/FC变得更像流体,并改变界面张力。总之,我们的研究结果表明RNA是DFC/FC部分固体样特性的基础,并为近天然环境中核仁的物质特性与其RNA依赖性功能之间的关系提供了见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ada8/12146704/e94ed617f535/pnas.2407423122fig01.jpg

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