Integrated intracellular organization and its variations in human iPS cells

人口 细胞器 细胞 有丝分裂 细胞内 相间 电池类型 生物 计算生物学 细胞生物学 生物系统 遗传学 社会学 人口学
作者
Matheus P Viana,Jianxu Chen,Theo A Knijnenburg,Ritvik Vasan,Calysta Yan,Joy E Arakaki,Matte Bailey,Ben Berry,Antoine Borensztejn,Jackson M Brown,Sara Carlson,Julie A Cass,Basudev Chaudhuri,Kimberly R Cordes Metzler,Mackenzie E Coston,Zach J Crabtree,Steve Davidson,Colette M DeLizo,Shailja Dhaka,Stephanie Q Dinh,Thao P Do,Justin Domingus,Rory M Donovan-Maiye,Alexandra J Ferrante,Tyler J Foster,Christopher L Frick,Griffin Fujioka,Margaret A Fuqua,Jamie L Gehring,Kaytlyn A Gerbin,Tanya Grancharova,Benjamin W Gregor,Lisa J Harrylock,Amanda Haupt,Melissa C Hendershott,Caroline Hookway,Alan R Horwitz,H Christopher Hughes,Eric J Isaac,Gregory R Johnson,Brian Kim,Andrew N Leonard,Winnie W Leung,Jordan J Lucas,Susan A Ludmann,Blair M Lyons,Haseeb Malik,Ryan McGregor,Gabe E Medrash,Sean L Meharry,Kevin Mitcham,Irina A Mueller,Timothy L Murphy-Stevens,Aditya Nath,Angelique M Nelson,Sandra A Oluoch,Luana Paleologu,T Alexander Popiel,Megan M Riel-Mehan,Brock Roberts,Lisa Schaefbauer,Magdalena Schwarzl,Jamie Sherman,Sylvain Slaton,M Filip Sluzewski,Jacqueline E Smith,Youngmee Sul,Madison J Swain-Bowden,W Joyce Tang,Derek J Thirstrup,Daniel M Toloudis,Andrew P Tucker,Veronica Valencia,Winfried Wiegraebe,Thushara Wijeratna,Ruian Yang,Rebecca J Zaunbrecher,Ramon Lorenzo D Labitigan,Adrian L Sanborn,Graham T Johnson,Ruwanthi N Gunawardane,Nathalie Gaudreault,Julie A Theriot,Susanne M Rafelski
出处
期刊:Nature [Springer Nature]
卷期号:613 (7943): 345-354
标识
DOI:10.1038/s41586-022-05563-7
摘要

Abstract Understanding how a subset of expressed genes dictates cellular phenotype is a considerable challenge owing to the large numbers of molecules involved, their combinatorics and the plethora of cellular behaviours that they determine 1,2 . Here we reduced this complexity by focusing on cellular organization—a key readout and driver of cell behaviour 3,4 —at the level of major cellular structures that represent distinct organelles and functional machines, and generated the WTC-11 hiPSC Single-Cell Image Dataset v1, which contains more than 200,000 live cells in 3D, spanning 25 key cellular structures. The scale and quality of this dataset permitted the creation of a generalizable analysis framework to convert raw image data of cells and their structures into dimensionally reduced, quantitative measurements that can be interpreted by humans, and to facilitate data exploration. This framework embraces the vast cell-to-cell variability that is observed within a normal population, facilitates the integration of cell-by-cell structural data and allows quantitative analyses of distinct, separable aspects of organization within and across different cell populations. We found that the integrated intracellular organization of interphase cells was robust to the wide range of variation in cell shape in the population; that the average locations of some structures became polarized in cells at the edges of colonies while maintaining the ‘wiring’ of their interactions with other structures; and that, by contrast, changes in the location of structures during early mitotic reorganization were accompanied by changes in their wiring.
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