Gene function hypotheses for the Campylobacter jejuni glycome generated by a logic-based approach.

Michael JE Sternberg; Alireza Tamaddoni-Nezhad; Victor I Lesk; Emily Kay ORCID logo; Paul G Hitchen; Adrian Cootes; Lieke B van Alphen; Marc P Lamoureux; Harold C Jarrell; Christopher J Rawlings; +5 more... Evelyn C Soo; Christine M Szymanski; Anne Dell; Brendan W Wren ORCID logo; Stephen H Muggleton; (2013) Gene function hypotheses for the Campylobacter jejuni glycome generated by a logic-based approach. Journal of molecular biology, 425 (1). pp. 186-197. ISSN 0022-2836 DOI: 10.1016/j.jmb.2012.10.014
Copy

Increasingly, experimental data on biological systems are obtained from several sources and computational approaches are required to integrate this information and derive models for the function of the system. Here, we demonstrate the power of a logic-based machine learning approach to propose hypotheses for gene function integrating information from two diverse experimental approaches. Specifically, we use inductive logic programming that automatically proposes hypotheses explaining the empirical data with respect to logically encoded background knowledge. We study the capsular polysaccharide biosynthetic pathway of the major human gastrointestinal pathogen Campylobacter jejuni. We consider several key steps in the formation of capsular polysaccharide consisting of 15 genes of which 8 have assigned function, and we explore the extent to which functions can be hypothesised for the remaining 7. Two sources of experimental data provide the information for learning-the results of knockout experiments on the genes involved in capsule formation and the absence/presence of capsule genes in a multitude of strains of different serotypes. The machine learning uses the pathway structure as background knowledge. We propose assignments of specific genes to five previously unassigned reaction steps. For four of these steps, there was an unambiguous optimal assignment of gene to reaction, and to the fifth, there were three candidate genes. Several of these assignments were consistent with additional experimental results. We therefore show that the logic-based methodology provides a robust strategy to integrate results from different experimental approaches and propose hypotheses for the behaviour of a biological system.


picture_as_pdf
mmc1.pdf
subject
Published Version
Available under Creative Commons: NC-ND 3.0

View Download

Atom BibTeX OpenURL ContextObject in Span Multiline CSV OpenURL ContextObject Dublin Core Dublin Core MPEG-21 DIDL EndNote HTML Citation JSON MARC (ASCII) MARC (ISO 2709) METS MODS RDF+N3 RDF+N-Triples RDF+XML RIOXX2 XML Reference Manager Refer Simple Metadata ASCII Citation EP3 XML
Export

Downloads