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三维组织中线虫细胞极性的定量分析。

Quantification of nematic cell polarity in three-dimensional tissues.

机构信息

Max Planck Institute for the Physics of Complex Systems, Dresden, Germany.

Centre for Information Services and High Performance Computing, TU Dresden, Dresden, Germany.

出版信息

PLoS Comput Biol. 2020 Dec 10;16(12):e1008412. doi: 10.1371/journal.pcbi.1008412. eCollection 2020 Dec.

Abstract

How epithelial cells coordinate their polarity to form functional tissues is an open question in cell biology. Here, we characterize a unique type of polarity found in liver tissue, nematic cell polarity, which is different from vectorial cell polarity in simple, sheet-like epithelia. We propose a conceptual and algorithmic framework to characterize complex patterns of polarity proteins on the surface of a cell in terms of a multipole expansion. To rigorously quantify previously observed tissue-level patterns of nematic cell polarity (Morales-Navarrete et al., eLife 2019), we introduce the concept of co-orientational order parameters, which generalize the known biaxial order parameters of the theory of liquid crystals. Applying these concepts to three-dimensional reconstructions of single cells from high-resolution imaging data of mouse liver tissue, we show that the axes of nematic cell polarity of hepatocytes exhibit local coordination and are aligned with the biaxially anisotropic sinusoidal network for blood transport. Our study characterizes liver tissue as a biological example of a biaxial liquid crystal. The general methodology developed here could be applied to other tissues and in-vitro organoids.

摘要

上皮细胞如何协调其极性以形成功能性组织是细胞生物学中的一个悬而未决的问题。在这里,我们描述了在肝组织中发现的一种独特的极性类型,即向列细胞极性,它与简单的、片状上皮中的向量极性不同。我们提出了一个概念和算法框架,以多极展开的形式来描述细胞表面复杂的极性蛋白模式。为了严格量化先前观察到的向列细胞极性的组织水平模式(Morales-Navarrete 等人,eLife 2019),我们引入了共取向序参数的概念,该概念推广了液晶理论中已知的双轴序参数。将这些概念应用于从小鼠肝组织的高分辨率成像数据重建的单个细胞的三维重建,我们表明肝细胞的向列细胞极性轴表现出局部协调,并与双轴各向异性的用于血液运输的正弦网络对齐。我们的研究将肝组织描述为双轴各向异性液晶的生物实例。这里开发的一般方法可以应用于其他组织和体外类器官。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/38eb/7755288/b660c3e2153c/pcbi.1008412.g001.jpg

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