跳转至内容
Merck
CN
  • EpiMogrify Models H3K4me3 Data to Identify Signaling Molecules that Improve Cell Fate Control and Maintenance.

EpiMogrify Models H3K4me3 Data to Identify Signaling Molecules that Improve Cell Fate Control and Maintenance.

Cell systems (2020-10-11)
Uma S Kamaraj, Joseph Chen, Khairunnisa Katwadi, John F Ouyang, Yu Bo Yang Sun, Yu Ming Lim, Xiaodong Liu, Lusy Handoko, Jose M Polo, Enrico Petretto, Owen J L Rackham
摘要

The need to derive and culture diverse cell or tissue types in vitro has prompted investigations on how changes in culture conditions affect cell states. However, the identification of the optimal conditions (e.g., signaling molecules and growth factors) required to maintain cell types or convert between cell types remains a time-consuming task. Here, we developed EpiMogrify, an approach that leverages data from ∼100 human cell/tissue types available from ENCODE and Roadmap Epigenomics consortia to predict signaling molecules and factors that can either maintain cell identity or enhance directed differentiation (or cell conversion). EpiMogrify integrates protein-protein interaction network information with a model of the cell's epigenetic landscape based on H3K4me3 histone modifications. Using EpiMogrify-predicted factors for maintenance conditions, we were able to better potentiate the maintenance of astrocytes and cardiomyocytes in vitro. We report a significant increase in the efficiency of astrocyte and cardiomyocyte differentiation using EpiMogrify-predicted factors for conversion conditions.

材料
货号
品牌
产品描述

Sigma-Aldrich
胶原蛋白IV型 来源于人类细胞培养基, Bornstein and Traub Type IV, 0.3 mg/mL, sterile-filtered, BioReagent, suitable for cell culture
Sigma-Aldrich
胶原蛋白 来源于小牛皮, Bornstein and Traub Type I, (0.1% solution in 0.1 M acetic acid), aseptically processed, BioReagent, suitable for cell culture
Sigma-Aldrich
IWR-1, ≥98% (HPLC)
Sigma-Aldrich
单克隆抗S-100(β-亚基) 小鼠抗, clone SH-B1, ascites fluid
Roche
纤连蛋白, from human plasma
Sigma-Aldrich
Triton X-100, laboratory grade
Roche
细胞增殖ELISA,BrdU(化学发光法)
Sigma-Aldrich
ReNcell VM人神经祖细胞系, ReNcell VM is an immortalized human neural progenitor cell line with the ability to readily differentiate into neurons & glial cells.