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Cell. 2021 Apr 1;184(7):1914-1928.e19. doi: 10.1016/j.cell.2021.02.017. Epub 2021 Mar 16.
2
The mechanobiome: a goldmine for cancer therapeutics.机械生物组学:癌症治疗的金矿。
Am J Physiol Cell Physiol. 2021 Mar 1;320(3):C306-C323. doi: 10.1152/ajpcell.00409.2020. Epub 2020 Nov 11.
3
Topoisomerase IIα is essential for maintenance of mitotic chromosome structure.拓扑异构酶 IIα 对于维持有丝分裂染色体结构至关重要。
Proc Natl Acad Sci U S A. 2020 Jun 2;117(22):12131-12142. doi: 10.1073/pnas.2001760117. Epub 2020 May 15.
4
Heterochromatin-Driven Nuclear Softening Protects the Genome against Mechanical Stress-Induced Damage.异染色质驱动的核软化可保护基因组免受机械应激诱导的损伤。
Cell. 2020 May 14;181(4):800-817.e22. doi: 10.1016/j.cell.2020.03.052. Epub 2020 Apr 16.
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Mechanisms generating cancer genome complexity from a single cell division error.从单个细胞分裂错误中产生癌症基因组复杂性的机制。
Science. 2020 Apr 17;368(6488). doi: 10.1126/science.aba0712.
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Precise Tuning of Cortical Contractility Regulates Cell Shape during Cytokinesis.细胞分裂过程中皮质收缩性的精确调节控制细胞形状
Cell Rep. 2020 Apr 7;31(1):107477. doi: 10.1016/j.celrep.2020.03.041.
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CRISPR screens in cancer spheroids identify 3D growth-specific vulnerabilities.CRISPR 筛选肿瘤球体中的 3D 生长特异性脆弱性。
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8
Oncogenic Signaling Alters Cell Shape and Mechanics to Facilitate Cell Division under Confinement.致癌信号改变细胞形状和力学特性,以促进受限环境下的细胞分裂。
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Normalization and variance stabilization of single-cell RNA-seq data using regularized negative binomial regression.使用正则化负二项式回归进行单细胞 RNA-seq 数据的归一化和方差稳定化。
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Niche stiffness underlies the ageing of central nervous system progenitor cells.龛位硬度是中枢神经系统祖细胞老化的基础。
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活细胞 ChReporters 揭示,封闭培养并抑制肌球蛋白 II 可最大程度地遗传丢失染色体。

Confinement plus myosin-II suppression maximizes heritable loss of chromosomes, as revealed by live-cell ChReporters.

机构信息

Mol. Cell Biophysics Lab, University of Pennsylvania, Philadelphia, PA 19104, USA.

Department of Biology, University of Pennsylvania, Philadelphia, PA 19104, USA.

出版信息

J Cell Sci. 2023 Jun 1;136(11). doi: 10.1242/jcs.260753. Epub 2023 Jun 8.

DOI:10.1242/jcs.260753
PMID:37288769
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC10309578/
Abstract

The mechanical environment of a cell can have many effects, but whether it impacts the DNA sequence of a cell has remained unexamined. To investigate this, we developed a live-cell method to measure changes in chromosome numbers. We edited constitutive genes with GFP or RFP tags on single alleles and discovered that cells that lose Chromosome reporters (ChReporters) become non-fluorescent. We applied our new tools to confined mitosis and to inhibition of the putative tumor suppressor myosin-II. We quantified compression of mitotic chromatin in vivo and demonstrated that similar compression in vitro resulted in cell death, but also rare and heritable ChReptorter loss. Myosin-II suppression rescued lethal multipolar divisions and maximized ChReporter loss during three-dimensional (3D) compression and two-dimensional (2D) lateral confinement, but not in standard 2D culture. ChReporter loss was associated with chromosome mis-segregation, rather than just the number of divisions, and loss in vitro and in mice was selected against in subsequent 2D cultures. Inhibition of the spindle assembly checkpoint (SAC) caused ChReporter loss in 2D culture, as expected, but not during 3D compression, suggesting a SAC perturbation. Thus, ChReporters enable diverse studies of viable genetic changes, and show that confinement and myosin-II affect DNA sequence and mechano-evolution.

摘要

细胞的机械环境可能会产生许多影响,但它是否会影响细胞的 DNA 序列仍未被研究过。为了研究这一点,我们开发了一种活细胞方法来测量染色体数量的变化。我们在单个等位基因上编辑 GFP 或 RFP 标签的组成型基因,发现失去染色体报告基因(ChReporters)的细胞会失去荧光。我们将我们的新工具应用于限制有丝分裂和抑制假定的肿瘤抑制因子肌球蛋白-II。我们在体内定量压缩有丝分裂染色质,并证明体外类似的压缩会导致细胞死亡,但也会导致罕见的、可遗传的 ChReptorter 丢失。肌球蛋白-II 抑制挽救了致命的多极分裂,并在三维(3D)压缩和二维(2D)侧向限制期间最大限度地减少了 ChReporter 的丢失,但在标准的 2D 培养中则没有。ChReporter 的丢失与染色体错误分离有关,而不仅仅是分裂的次数,并且在体外和体内的丢失在随后的 2D 培养中受到选择。纺锤体组装检查点(SAC)的抑制导致 2D 培养中的 ChReporter 丢失,这是预期的,但在 3D 压缩期间则没有,这表明 SAC 受到干扰。因此,ChReporters 可以实现对可行遗传变化的多样化研究,并表明限制和肌球蛋白-II 会影响 DNA 序列和机械进化。