GI LogoGI Logo
  • Anmelden
Digitale Bibliothek
    • Gesamter Bestand

      • Bereiche & Sammlungen
      • Titel
      • Autor
      • Erscheinungsdatum
      • Schlagwort
    • Diese Sammlung

      • Titel
      • Autor
      • Erscheinungsdatum
      • Schlagwort
Digital Bibliothek der Gesellschaft für Informatik e.V.
GI-DL
    • English
    • Deutsch
  • Deutsch 
    • English
    • Deutsch
Dokumentanzeige 
  •   Startseite
  • Lecture Notes in Informatics
  • Proceedings
  • German Conference on Bioinformatics
  • P157 - GCB 2009 - German Conference on Bioinformatics 2009
  • Dokumentanzeige
JavaScript is disabled for your browser. Some features of this site may not work without it.
  •   Startseite
  • Lecture Notes in Informatics
  • Proceedings
  • German Conference on Bioinformatics
  • P157 - GCB 2009 - German Conference on Bioinformatics 2009
  • Dokumentanzeige

Comparative generalized logic modeling reveals differential gene interactions during cell cycle exit in Drosophila Wing Development

Autor(en):
Song, Mingzhou (Jeo) [DBLP] ;
Hong, Chung -Chien [DBLP] ;
Zhang, Yang [DBLP] ;
Buttitta, Laura [DBLP] ;
Edgar, Bruce A. [DBLP]
Zusammenfassung
A comparative interaction detection paradigm is proposed to study the complex gene regulatory networks that control cell proliferation during development. Instead of attempting to reconstruct the entire cell cycle regulatory network from temporal transcript data, differential interactions – represented by generalized logic – are detected directly from time course transcript data under two distinct conditions. This comparative approach is scaleand shift-invariant and is capable of detecting nonlinear differential interactions. Simulation studies on E. coli circuits demonstrated that the proposed comparative method has substantially increased statistical power over the intuitive reconstruct-then-compare approach. This method was therefore applied to a microarray experiment, profiling gene expression in the fruit fly wing as cells exit the cell cycle, and under a condition which delays this exit, over-expression of the cell cycle regulator E2F. One statistically significant differential interaction was identified between two gene clusters that is strongly influenced by E2F activity, and suggests the involvement of the Hippo signaling pathway in response to E2F, a finding that may provide additional insights on cell cycle control mechanisms. Furthermore, the comparative modeling can be applied to both static and dynamic gene expression data, and is extendible to deal with more than two conditions, useful in many biological studies.
  • Vollständige Referenz
  • BibTeX
Song, M. (., Hong, C.-C. -., Zhang, Y., Buttitta, L. & Edgar, B. A., (2009). Comparative generalized logic modeling reveals differential gene interactions during cell cycle exit in Drosophila Wing Development. In: Grosse, I., Neumann, S., Posch, S., Schreiber, F. & Stadler, P. (Hrsg.), German conference on bioinformatics 2009. Bonn: Gesellschaft für Informatik e.V.. (S. 143-152).
@inproceedings{mci/Song2009,
author = {Song, Mingzhou (Jeo) AND Hong, Chung -Chien AND Zhang, Yang AND Buttitta, Laura AND Edgar, Bruce A.},
title = {Comparative generalized logic modeling reveals differential gene interactions during cell cycle exit in Drosophila Wing Development},
booktitle = {German conference on bioinformatics 2009},
year = {2009},
editor = {Grosse, Ivo AND Neumann, Steffen AND Posch, Stefan AND Schreiber, Falk AND Stadler, Peter} ,
pages = { 143-152 },
publisher = {Gesellschaft für Informatik e.V.},
address = {Bonn}
}
DateienGroesseFormatAnzeige
143.pdf338.4Kb PDF Öffnen

Haben Sie fehlerhafte Angaben entdeckt? Sagen Sie uns Bescheid: Feedback abschicken

Mehr Information

ISBN: 978-3-88579-251-2
ISSN: 1617-5468
Datum: 2009
Sprache: en (en)
Typ: Text/Conference Paper
Sammlungen
  • P157 - GCB 2009 - German Conference on Bioinformatics 2009 [20]

Zur Langanzeige


Über uns | FAQ | Hilfe | Impressum | Datenschutz

Gesellschaft für Informatik e.V. (GI), Kontakt: Geschäftsstelle der GI
Diese Digital Library basiert auf DSpace.

 

 


Über uns | FAQ | Hilfe | Impressum | Datenschutz

Gesellschaft für Informatik e.V. (GI), Kontakt: Geschäftsstelle der GI
Diese Digital Library basiert auf DSpace.