• A systems biology approach uncovers cell-specific gene regulatory effects of genetic associations in multiple sclerosis 

      Madireddy L., Patsopoulos N.A., Cotsapas C., Bos S.D., Beecham A., McCauley J., Kim K., Jia X., Santaniello A., Caillier S.J., Andlauer T.F.M., Barcellos L.F., Berge T., Bernardinelli L., Martinelli-Boneschi F., Booth D.R., Briggs F., Celius E.G., Comabella M., Comi G., Cree B.A.C., D’Alfonso S., Dedham K., Duquette P., Efthimios D., Esposito F., Fontaine B., Gasperi C., Goris A., Dubois B., Gourraud P.-A., Hadjigeorgiou G., Haines J., Hawkins C., Hemmer B., Hintzen R., Horakova D., Isobe N., Kalra S., Kira J.-I., Khalil M., Kockum I., Lill C.M., Lincoln M.R., Luessi F., Martin R., Oturai A., Palotie A., Pericak-Vance M.A., Henry R., Saarela J., Ivinson A., Olsson T., Taylor B.V., Stewart G.J., Harbo H.F., Compston A., Hauser S.L., Hafler D.A., Zipp F., De Jager P., Sawcer S., Oksenberg J.R., Baranzini S.E., International Multiple Sclerosis Genetics Consortium (2019)
      Genome-wide association studies (GWAS) have identified more than 50,000 unique associations with common human traits. While this represents a substantial step forward, establishing the biology underlying these associations ...