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从核膜边缘指导核糖体生物合成。

Coaching ribosome biogenesis from the nuclear periphery.

作者信息

Zhuang Yinyin, Guo Xiangfu, Razorenova Olga V, Miles Christopher E, Zhao Wenting, Shi Xiaoyu

机构信息

Department of Developmental and Cell Biology, University of California, Irvine; Irvine, CA 92697, United States.

School of Chemistry, Chemical Engineering and Biotechnology, Nanyang Technological University; Singapore 637459, Singapore.

出版信息

bioRxiv. 2024 Jun 22:2024.06.21.597078. doi: 10.1101/2024.06.21.597078.

Abstract

Severe invagination of the nuclear envelope is a hallmark of cancers, aging, neurodegeneration, and infections. However, the outcomes of nuclear invagination remain unclear. This work identified a new function of nuclear invagination: regulating ribosome biogenesis. With expansion microscopy, we observed frequent physical contact between nuclear invaginations and nucleoli. Surprisingly, the higher the invagination curvature, the more ribosomal RNA and pre-ribosomes are made in the contacted nucleolus. By growing cells on nanopillars that generate nuclear invaginations with desired curvatures, we can increase and decrease ribosome biogenesis. Based on this causation, we repressed the ribosome levels in breast cancer and progeria cells by growing cells on low-curvature nanopillars, indicating that overactivated ribosome biogenesis can be rescued by reshaping nuclei. Mechanistically, high-curvature nuclear invaginations reduce heterochromatin and enrich nuclear pore complexes, which promote ribosome biogenesis. We anticipate that our findings will serve as a foundation for further studies on nuclear deformation.

摘要

核膜的严重内陷是癌症、衰老、神经退行性变和感染的一个标志。然而,核内陷的结果仍不清楚。这项研究确定了核内陷的一个新功能:调节核糖体生物合成。通过扩展显微镜,我们观察到核内陷与核仁之间频繁的物理接触。令人惊讶的是,内陷曲率越高,在接触的核仁中产生的核糖体RNA和前核糖体就越多。通过在能产生具有所需曲率的核内陷的纳米柱上培养细胞,我们可以增加和减少核糖体生物合成。基于这种因果关系,我们通过在低曲率纳米柱上培养细胞来抑制乳腺癌细胞和早衰细胞中的核糖体水平,这表明通过重塑细胞核可以挽救过度激活的核糖体生物合成。从机制上讲,高曲率的核内陷减少了异染色质并富集了核孔复合体,从而促进核糖体生物合成。我们预计我们的发现将为进一步研究核变形奠定基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a2b6/11212990/61a01c3b075c/nihpp-2024.06.21.597078v1-f0001.jpg

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