返回
A predictive computational framework for direct reprogramming between human cell types
DOI:10.1038/ng.3487.png)
摘要
En 中文
Transdifferentiation, the process of converting from one cell type to another without going through a pluripotent state, has great promise for regenerative medicine. The identification of key transcription factors for reprogramming is currently limited by the cost of exhaustive experimental testing of plausible sets of factors, an approach that is inefficient and unscalable. Here we present a predictive system (Mogrify) that combines gene expression data with regulatory network information to predict the reprogramming factors necessary to induce cell conversion. We have applied Mogrify to 173 human cell types and 134 tissues, defining an atlas of cellular reprogramming. Mogrify correctly predicts the transcription factors used in known transdifferentiations. Furthermore, we validated two new transdifferentiations predicted by Mogrify. We provide a practical and efficient mechanism for systematically implementing novel cell conversions, facilitating the generalization of reprogramming of human cells. Predictions are made available to help rapidly further the field of cell conversion.
Keyword:
PLURIPOTENT STEM-CELLS
HUMAN FIBROBLASTS
DIRECT CONVERSION
TRANSCRIPTION FACTORS
EXPRESSION
TRANSDIFFERENTIATION
INDUCTION
STRATEGY
MOUSE
LINES
期刊
IF:
40
论文数:
1.0W
被引数:
10.5W
机构
引用论文
Direct Reprogramming of Human Fibroblasts toward a Cardiomyocyte-like State将人成纤维细胞直接重编程为心肌细胞样状态
STEM CELL REPORTS
IF5.1
Transient acquisition of pluripotency during somatic cell transdifferentiation with iPSC reprogramming factors
NATURE BIOTECHNOLOGY
IF41.7
DBDtaxonomically broad transcription factor predictions: new content and functionality
NUCLEIC ACIDS RESEARCH
IF13.1
Human cell type diversity, evolution, development, and classification with special reference to cells derived from the neural crest人类细胞类型的多样性,进化,发育和分类,特别是来自神经嵴的细胞
BIOLOGICAL REVIEWS
IF11.7

