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  • Showing 1-7 of 7 Results
2013
Crowdsourcing genetic prediction of clinical utility in the Rheumatoid Arthritis Responder Challenge.Plenge, RM, Greenberg JD, Mangravite LM, Derry JM, Stahl EA, Coenen MJ, Barton A., Padyukov L., Klareskog L., Gregersen PK, Mariette X., Moreland LW, Bridges SL Jr, de Vries N., Huizinga TW, Guchelaar HJ, International Rheumatoid Arthritis Consortium(INTERACT), Friend SH, and Stolovitzky G. Nature genetics, 2013/04/26, Volume 45, Issue 5, p.468-9, (2013) Read More / View Supplemental Materials
Rare, Low-Frequency, and Common Variants in the Protein-Coding Sequence of Biological Candidate Genes from GWASs Contribute to Risk of Rheumatoid Arthritis.Diogo, D., Kurreeman F., Stahl EA, Liao KP, Gupta N., Greenberg JD, Rivas MA, Hickey B., Flannick J., Thomson B., Guiducci C., Ripke S., Adzhubey I., Barton A., Kremer JM, Alfredsson L., Consortium of Rheumatology Researchers of North America, Rheumatoid Arthritis Consortium International, Sunyaev S., Martin J., et al. American journal of human genetics, 2013/01/10, Volume 92, Issue 1, p.15-27, (2013) Read More / View Supplemental Materials
Abstract
2012
Five amino acids in three HLA proteins explain most of the association between MHC and seropositive rheumatoid arthritis.Raychaudhuri, S., Sandor C., Stahl EA, Freudenberg J., Lee HS, Jia X., Alfredsson L., Padyukov L., Klareskog L., Worthington J., Siminovitch KA, Bae SC, Plenge RM, Gregersen PK, and de Bakker PI Nature genetics, 2012/01/29, Volume 44, Issue 3, p.291-6, (2012) Read More / View Supplemental Materials
Abstract
2008
Common variants at CD40 and other loci confer risk of rheumatoid arthritis.Raychaudhuri, S., Remmers EF, Lee AT, Hackett R., Guiducci C., Burtt NP, Gianniny L., Korman BD, Padyukov L., Kurreeman FA, Chang M., Catanese JJ, Ding B., Wong S., van der Helm-van Mil AH, Neale BM, Coblyn J., Cui J., Tak PP, Wolbink GJ, et al. Nature genetics, 2008/10/01, Volume 40, Issue 10, p.1216-23, (2008) Read More / View Supplemental Materials
Abstract
2007
Two independent alleles at 6q23 associated with risk of rheumatoid arthritis.Plenge, RM, Cotsapas C., Davies L., Price AL, de Bakker PI, Maller J., Pe'er I., Burtt NP, Blumenstiel B., DeFelice M., Parkin M., Barry R., Winslow W., Healy C., Graham RR, Neale BM, Izmailova E., Roubenoff R., Parker AN, Glass R., et al. Nature genetics, 2007/12/01, Volume 39, Issue 12, p.1477-82, (2007) Read More / View Supplemental Materials
Abstract
TRAF1-C5 as a risk locus for rheumatoid arthritis--a genomewide study.Plenge, RM, Seielstad M., Padyukov L., Lee AT, Remmers EF, Ding B., Liew A., Khalili H., Chandrasekaran A., Davies LR, Li W., Tan AK, Bonnard C., Ong RT, Thalamuthu A., Pettersson S., Liu C., Tian C., Chen WV, Carulli JP, et al. The New England journal of medicine, 2007/09/20, Volume 357, Issue 12, p.1199-209, (2007) Read More / View Supplemental Materials
Abstract
2005
Replication of putative candidate-gene associations with rheumatoid arthritis in >4,000 samples from North America and Sweden: association of susceptibility with PTPN22, CTLA4, and PADI4.Plenge, RM, Padyukov L., Remmers EF, Purcell S., Lee AT, Karlson EW, Wolfe F., Kastner DL, Alfredsson L., Altshuler D., Gregersen PK, Klareskog L., and Rioux JD American journal of human genetics, 2005/12/01, Volume 77, Issue 6, p.1044-60, (2005) Read More / View Supplemental Materials
Abstract
  • Showing 1-7 of 7 Results