Towards scaling elementary flux mode computation

Author:

Ullah Ehsan1,Yosafshahi Mona1,Hassoun Soha2

Affiliation:

1. Qatar Computing Research Institute, Hamad Bin Khalifa University, Doha, Qatar

2. Department of Computer Science, Tufts University, Medford MA 02155, USA

Abstract

Abstract While elementary flux mode (EFM) analysis is now recognized as a cornerstone computational technique for cellular pathway analysis and engineering, EFM application to genome-scale models remains computationally prohibitive. This article provides a review of aspects of EFM computation that elucidates bottlenecks in scaling EFM computation. First, algorithms for computing EFMs are reviewed. Next, the impact of redundant constraints, sensitivity to constraint ordering and network compression are evaluated. Then, the advantages and limitations of recent parallelization and GPU-based efforts are highlighted. The article then reviews alternative pathway analysis approaches that aim to reduce the EFM solution space. Despite advances in EFM computation, our review concludes that continued scaling of EFM computation is necessary to apply EFM to genome-scale models. Further, our review concludes that pathway analysis methods that target specific pathway properties can provide powerful alternatives to EFM analysis.

Funder

National Science Foundation

National Institute Of General Medical Sciences of the National Institutes of Health

Publisher

Oxford University Press (OUP)

Subject

Molecular Biology,Information Systems

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