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细胞间接触区域影响Notch信号传导和Notch依赖性模式形成。

Cell-Cell Contact Area Affects Notch Signaling and Notch-Dependent Patterning.

作者信息

Shaya Oren, Binshtok Udi, Hersch Micha, Rivkin Dmitri, Weinreb Sheila, Amir-Zilberstein Liat, Khamaisi Bassma, Oppenheim Olya, Desai Ravi A, Goodyear Richard J, Richardson Guy P, Chen Christopher S, Sprinzak David

机构信息

Department of Biochemistry and Molecular Biology, Wise Faculty of Life Science, Tel Aviv University, Tel Aviv, 69978, Israel.

Department of Medical Genetics, University of Lausanne, Lausanne 1015, Switzerland; Swiss Institute of Bioinformatics, Lausanne 1015, Switzerland.

出版信息

Dev Cell. 2017 Mar 13;40(5):505-511.e6. doi: 10.1016/j.devcel.2017.02.009.

DOI:10.1016/j.devcel.2017.02.009
PMID:28292428
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC5435110/
Abstract

During development, cells undergo dramatic changes in their morphology. By affecting contact geometry, these morphological changes could influence cellular communication. However, it has remained unclear whether and how signaling depends on contact geometry. This question is particularly relevant for Notch signaling, which coordinates neighboring cell fates through direct cell-cell signaling. Using micropatterning with a receptor trans-endocytosis assay, we show that signaling between pairs of cells correlates with their contact area. This relationship extends across contact diameters ranging from micrometers to tens of micrometers. Mathematical modeling predicts that dependence of signaling on contact area can bias cellular differentiation in Notch-mediated lateral inhibition processes, such that smaller cells are more likely to differentiate into signal-producing cells. Consistent with this prediction, analysis of developing chick inner ear revealed that ligand-producing hair cell precursors have smaller apical footprints than non-hair cells. Together, these results highlight the influence of cell morphology on fate determination processes.

摘要

在发育过程中,细胞的形态会发生显著变化。通过影响接触几何形状,这些形态变化可能会影响细胞间通讯。然而,信号传导是否以及如何依赖于接触几何形状仍不清楚。这个问题对于Notch信号传导尤为重要,Notch信号传导通过直接的细胞间信号传导来协调相邻细胞的命运。通过使用受体转胞吞测定的微图案化技术,我们表明细胞对之间的信号传导与其接触面积相关。这种关系跨越了从微米到几十微米的接触直径范围。数学模型预测,信号传导对接触面积的依赖性会在Notch介导的侧向抑制过程中使细胞分化产生偏差,使得较小的细胞更有可能分化为信号产生细胞。与这一预测一致,对发育中的鸡内耳的分析表明,产生配体的毛细胞前体的顶端足迹比非毛细胞小。总之,这些结果突出了细胞形态对命运决定过程的影响。

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Dev Cell. 2017 Mar 13;40(5):505-511.e6. doi: 10.1016/j.devcel.2017.02.009.
2
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activation in the Notch signaling pathway.激活 Notch 信号通路。
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Notch signalling is needed to maintain, but not to initiate, the formation of prosensory patches in the chick inner ear.Notch信号通路对于维持鸡内耳中前感觉斑的形成是必需的,但并非启动该过程所必需。
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Interfacial energy constraints are sufficient to align cells over large distances.界面能约束足以使细胞在远距离上排列整齐。

本文引用的文献

1
Memory of cell shape biases stochastic fate decision-making despite mitotic rounding.尽管细胞进入有丝分裂末期会变圆,但细胞形状记忆仍会影响随机命运决策。
Nat Commun. 2016 Jun 28;7:11963. doi: 10.1038/ncomms11963.
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Coordinated control of Notch/Delta signalling and cell cycle progression drives lateral inhibition-mediated tissue patterning.Notch/Delta信号传导与细胞周期进程的协同控制驱动侧抑制介导的组织模式形成。
Development. 2016 Jul 1;143(13):2305-10. doi: 10.1242/dev.134213. Epub 2016 May 25.
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Quantitative Analysis of Delta-like 1 Membrane Dynamics Elucidates the Role of Contact Geometry on Notch Signaling.
Biophys J. 2025 Mar 18;124(6):1011-1023. doi: 10.1016/j.bpj.2025.02.011. Epub 2025 Mar 12.
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Modes of Notch signalling in development and disease.Notch信号通路在发育和疾病中的作用模式。
Nat Rev Mol Cell Biol. 2025 Mar 10. doi: 10.1038/s41580-025-00835-2.
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Organ injury accelerates stem cell differentiation by modulating a fate-transducing lateral inhibition circuit.器官损伤通过调节一种命运转导侧向抑制回路来加速干细胞分化。
bioRxiv. 2025 Feb 18:2024.12.29.630675. doi: 10.1101/2024.12.29.630675.
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Control of spatio-temporal patterning via cell growth in a multicellular synthetic gene circuit.通过在多细胞合成基因电路中控制细胞生长来控制时空模式。
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Contact area and tissue growth dynamics shape synthetic juxtacrine signaling patterns.接触面积和组织生长动力学塑造了合成旁分泌信号模式。
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The Mechanics of Building Functional Organs.构建功能性器官的机制。
Cold Spring Harb Perspect Biol. 2025 Mar 3;17(3):a041520. doi: 10.1101/cshperspect.a041520.
9
Mechanical convergence in mixed populations of mammalian epithelial cells.哺乳动物上皮细胞混合群体中的机械收敛。
Eur Phys J E Soft Matter. 2024 Mar 27;47(3):21. doi: 10.1140/epje/s10189-024-00415-w.
10
Spatial-temporal order-disorder transition in angiogenic NOTCH signaling controls cell fate specification.血管生成性NOTCH信号通路中的时空有序-无序转变控制细胞命运特化。
Elife. 2024 Feb 20;12:RP89262. doi: 10.7554/eLife.89262.
定量分析 Delta-like 1 膜动力学阐明了接触几何形状在 Notch 信号转导中的作用。
Cell Rep. 2016 Jan 12;14(2):225-33. doi: 10.1016/j.celrep.2015.12.040. Epub 2015 Dec 31.
4
Myoblast cytonemes mediate Wg signaling from the wing imaginal disc and Delta-Notch signaling to the air sac primordium.成肌细胞丝状伪足介导来自翅成虫盘的Wg信号以及向气囊原基的Delta-Notch信号。
Elife. 2015 May 7;4:e06114. doi: 10.7554/eLife.06114.
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Modeling Notch signaling: a practical tutorial.Notch信号通路建模:实用教程。
Methods Mol Biol. 2014;1187:285-310. doi: 10.1007/978-1-4939-1139-4_22.
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Do endothelial cells dream of eclectic shape?内皮细胞是否梦想着千变万化的形状?
Dev Cell. 2014 Apr 28;29(2):146-58. doi: 10.1016/j.devcel.2014.03.019.
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Cadherin-based adhesions in the apical endfoot are required for active Notch signaling to control neurogenesis in vertebrates.黏附连接蛋白在顶端足突的黏附对于脊椎动物中 Notch 信号的活性控制神经发生是必需的。
Development. 2014 Apr;141(8):1671-82. doi: 10.1242/dev.102988.
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Cytonemes as specialized signaling filopodia.纤毛作为特化的信号丝状伪足。
Development. 2014 Feb;141(4):729-36. doi: 10.1242/dev.086223.
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J Biol Chem. 2013 Aug 30;288(35):25477-25489. doi: 10.1074/jbc.M113.454850. Epub 2013 Jul 9.