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秀丽隐杆线虫表皮中对称分裂的随机增减扰乱了干细胞数量的稳健性。

Stochastic loss and gain of symmetric divisions in the C. elegans epidermis perturbs robustness of stem cell number.

作者信息

Katsanos Dimitris, Koneru Sneha L, Mestek Boukhibar Lamia, Gritti Nicola, Ghose Ritobrata, Appleford Peter J, Doitsidou Maria, Woollard Alison, van Zon Jeroen S, Poole Richard J, Barkoulas Michalis

机构信息

Department of Life Sciences, Imperial College, London, United Kingdom.

Institute for Atomic and Molecular Physics (AMOLF), Amsterdam, The Netherlands.

出版信息

PLoS Biol. 2017 Nov 6;15(11):e2002429. doi: 10.1371/journal.pbio.2002429. eCollection 2017 Nov.

Abstract

Biological systems are subject to inherent stochasticity. Nevertheless, development is remarkably robust, ensuring the consistency of key phenotypic traits such as correct cell numbers in a certain tissue. It is currently unclear which genes modulate phenotypic variability, what their relationship is to core components of developmental gene networks, and what is the developmental basis of variable phenotypes. Here, we start addressing these questions using the robust number of Caenorhabditis elegans epidermal stem cells, known as seam cells, as a readout. We employ genetics, cell lineage tracing, and single molecule imaging to show that mutations in lin-22, a Hes-related basic helix-loop-helix (bHLH) transcription factor, increase seam cell number variability. We show that the increase in phenotypic variability is due to stochastic conversion of normally symmetric cell divisions to asymmetric and vice versa during development, which affect the terminal seam cell number in opposing directions. We demonstrate that LIN-22 acts within the epidermal gene network to antagonise the Wnt signalling pathway. However, lin-22 mutants exhibit cell-to-cell variability in Wnt pathway activation, which correlates with and may drive phenotypic variability. Our study demonstrates the feasibility to study phenotypic trait variance in tractable model organisms using unbiased mutagenesis screens.

摘要

生物系统存在内在的随机性。然而,发育过程却非常稳健,确保了关键表型特征的一致性,比如特定组织中正确的细胞数量。目前尚不清楚哪些基因调节表型变异性,它们与发育基因网络的核心成分有何关系,以及可变表型的发育基础是什么。在这里,我们开始以秀丽隐杆线虫表皮干细胞(即被称为边缘细胞的细胞)数量的稳健性作为读数来解决这些问题。我们运用遗传学、细胞谱系追踪和单分子成像技术,证明了lin - 22(一种与Hes相关的碱性螺旋 - 环 - 螺旋(bHLH)转录因子)的突变会增加边缘细胞数量的变异性。我们表明,表型变异性的增加是由于在发育过程中正常对称的细胞分裂随机转变为不对称分裂,反之亦然,这在相反方向上影响了最终的边缘细胞数量。我们证明LIN - 22在表皮基因网络中发挥作用,拮抗Wnt信号通路。然而,lin - 22突变体在Wnt通路激活方面表现出细胞间的变异性,这与表型变异性相关并可能驱动表型变异性。我们的研究证明了使用无偏差诱变筛选在易处理的模式生物中研究表型特征变异的可行性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/66e5/5690688/57378f4e0805/pbio.2002429.g001.jpg

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