Skip to main content
Log in

A Web Resource for Levodopa-Induced Dyskinesia Genetics in Parkinson’s Disease

  • News Item
  • Published:
Neuroinformatics Aims and scope Submit manuscript

This is a preview of subscription content, log in via an institution to check access.

Access this article

Price excludes VAT (USA)
Tax calculation will be finalised during checkout.

Instant access to the full article PDF.

Institutional subscriptions

Fig. 1

Notes

  1. Fabbrini, G., Brotchie, J. M., Grandas, F., Nomoto, M., Goetz, C. G. (2007). Levodopa-induced dyskinesias. Movement Disorders Official Journal Movement Disorder Society, 22, 1379–1389; quiz 1523. doi:10.1002/mds.21475.

  2. Zappia, M., Annesi, G., Nicoletti, G., Arabia, G., Annesi, F., Messina, D., Pugliese, P., Spadafora, P., Tarantino, P., Carrideo, S., Civitelli, D., De Marco, E.V., Cirò-Candiano, I.C., Gambardella, A., Quattrone, A. (2005). Sex differences in clinical and genetic determinants of levodopa peak-dose dyskinesias in Parkinson disease: an exploratory study. Archives of Neurology, 62, 601–605. doi:10.1001/archneur.62.4.601.

  3. http://lidpd.eurac.edu.

  4. Huttlin, E. L., Ting, L., Bruckner, R. J., Gebreab, F., Gygi, M. P., Szpyt, J., Tam, S., Zarraga, G., Colby, G., Baltier, K., Dong, R., Guarani, V., Vaites, L. P., Ordureau, A., Rad, R., Erickson, B. K., Wühr, M., Chick, J., Zhai, B., Kolippakkam, D., Mintseris, J., Obar, R.A., Harris, T., Artavanis-Tsakonas, S., Sowa, M.E., De Camilli, P., Paulo, J. A., Harper, J. W., Gygi, S. P. (2015). The BioPlex network: a systematic exploration of the human interactome. Cell, 162, 425–440. doi:10.1016/j.cell.2015.06.043.

  5. Calderone, A., Castagnoli, L., Cesareni, G. (2013). Mentha: a resource for browsing integrated protein-interaction networks. Nature Methods, 10, 690–691. doi:10.1038/nmeth.2561.

  6. Szklarczyk, D., Franceschini, A., Wyder, S., Forslund, K., Heller, D., Huerta-Cepas, J., Simonovic, M., Roth, A., Santos, A., Tsafou, K. P., Kuhn, M., Bork, P., Jensen, L. J., von Mering, C. (2014). STRING v10: protein–protein interaction networks, integrated over the tree of life. Nucleic Acids Research. gku1003. doi:10.1093/nar/gku1003.

  7. Ashburner, M., Ball, C., Blake, J., Botstein, D. (2000). Gene ontology: tool for the unification of biology. Nature Genetics, 25, 25–29.

  8. Köhler, S., Doelken, S. C., Mungall, C. J., Bauer, S., Firth, H. V., Bailleul-Forestier, I., Black, G. C. M., Brown, D. L., Brudno, M., Campbell, J., FitzPatrick, D. R., Eppig, J. T., Jackson, A. P., Freson, K., Girdea, M., Helbig, I., Hurst, J. A., Jähn, J., Jackson, L. G., Kelly, A. M., Ledbetter, D. H., Mansour, S., Martin, C. L., Moss, C., Mumford, A., Ouwehand, W. H., Park, S.-M., Riggs, E. R., Scott, R. H., Sisodiya, S., Vooren, S. V., Wapner, R. J., Wilkie, A. O. M., Wright, C. F., Vulto-van Silfhout, A. T., de Leeuw, N., de Vries, B. B. A., Washingthon, N. L., Smith, C. L., Westerfield, M., Schofield, P., Ruef, B. J., Gkoutos, G. V., Haendel, M., Smedley, D., Lewis, S. E., Robinson, P. N. (2014). The human phenotype ontology project: linking molecular biology and disease through phenotype data. Nucleic Acids Research, 42, D966–D974. doi:10.1093/nar/gkt1026.

  9. Wishart, D. S., Knox, C., Guo, A. C., Shrivastava, S., Hassanali, M., Stothard, P., Chang, Z., Woolsey, J. (2006). DrugBank: a comprehensive resource for in silico drug discovery and exploration. Nucleic Acids Research, 34, D668–672. doi:10.1093/nar/gkj067.

  10. Nepusz, T., Yu, H., Paccanaro, A. (2012). Detecting overlapping protein complexes in protein-protein interaction networks. Nature Methods, 9, 471–2. doi:10.1038/nmeth.1938.

  11. Weichenberger, C. X., Blankenburg, H., Palermo, A., D’Elia, Y., König, E., Bernstein, E., Domingues, F. S. (2015). Dintor: functional annotation of genomic and proteomic data. BMC Genomics, 16, 1081. doi:10.1186/s12864-015-2279-5.

  12. Csardi, G., & Nepusz, T. (2006). The igraph software package for complex network research. International Journal Complex Systems, 1695.

  13. Franz, M., Lopes, C. T., Huck, G., Dong, Y., Sumer, O., Bader, G. D. (2015). Cytoscape. js: a graph theory library for visualisation and analysis. Bioinformatics btv557.

  14. Lee, H.-J., & Kang, S.-G. (2011). Genetics of tardive dyskinesia. International Review of Neurobiology, 98, 231–264. doi:10.1016/B978-0-12-381328-2.00010-9.

Acknowledgements

The research was funded by the Department of Innovation, Research, Development and Cooperatives of the Autonomous Province of Bolzano-South Tyrol.

Author information

Authors and Affiliations

Authors

Corresponding author

Correspondence to Hagen Blankenburg.

Ethics declarations

Conflicts of Interest

The authors declare that they have no conflict of interest.

Rights and permissions

Reprints and permissions

About this article

Check for updates. Verify currency and authenticity via CrossMark

Cite this article

Blankenburg, H., Falla, M., Schwienbacher, C. et al. A Web Resource for Levodopa-Induced Dyskinesia Genetics in Parkinson’s Disease. Neuroinform 15, 297–300 (2017). https://doi.org/10.1007/s12021-017-9327-z

Download citation

  • Published:

  • Issue Date:

  • DOI: https://doi.org/10.1007/s12021-017-9327-z

Navigation