Association of Variants in IL2RA With Progression of Joint Destruction in Rheumatoid Arthritis
ARTHRITIS AND RHEUMATISM
Authors: Knevel, R.; de Rooy, D. P. C.; Zhernakova, A.; Grondal, G.; Krabben, A.; Steinsson, K.; Wijmenga, C.; Cavet, G.; Toes, R. E. M.; Huizinga, T. W. J.; Gregersen, P. K.; van der Helm-van Mil, A. H. M.
Abstract
ObjectiveHeritability studies have suggested an important role of genetic predisposition in the progression of joint destruction in rheumatoid arthritis (RA); the heritability is estimated at 45-58%. Several single-nucleotide polymorphisms (SNPs) have been identified as being associated with RA susceptibility. Our objective was to study the association of several of these loci with progression of joint destruction. MethodsWe studied 1,750 RA patients in 4 independent data sets with 4,732 radiographs scored using the modified Sharp/van der Heijde method. Thirteen susceptibility SNPs that were not previously associated with joint destruction were tested in 596 Dutch RA patients. Subsequently, significant SNPs were studied in data sets of RA patients from North America and Iceland. Data were summarized in inverse-weighted variance meta-analyses. Further, the association with circulating protein levels was studied and the associated region was fine-mapped. ResultsIn stage 1, 3 loci (AFF3, IL2RA, and BLK) were significantly associated with the rate of joint destruction and were further analyzed in the additional data sets. In the combined meta-analyses, the minor (C) allele of IL2RA (rs2104286) was associated with less progression of joint destruction (P = 7.2 x 10(-4)). Furthermore, the IL2RA (rs2104286) protective genotype was associated with lower (0.85-fold [95% confidence interval 0.77-0.93], P = 1.4 x 10(-3)) circulating levels of soluble interleukin-2 receptor (sIL-2R). Additionally, lower sIL-2R levels were associated with a lower rate of joint destruction (P = 3.4 x 10(-3)). The association of IL2RA with the rate of joint destruction was further localized to a 40-kb region encompassing the IL2RA intron 1 and the 5 region of IL2RA and RBM17. ConclusionThe present genetic and serologic data suggest that inherited altered genetic constitution at the IL2RA locus may predispose to a less destructive course of RA.
Follistatin is a novel therapeutic target and biomarker in FLT3/ITD acute myeloid leukemia
EMBO MOLECULAR MEDICINE
Authors: He, Bai-Liang; Yang, Ning; Man, Cheuk Him; Ng, Nelson Ka-Lam; Cher, Chae-Yin; Leung, Ho-Ching; Kan, Leo Lai-Hok; Cheng, Bowie Yik-Ling; Lam, Stephen Sze-Yuen; Wang, Michelle Lu-Lu; Zhang, Chun-Xiao; Kwok, Hin; Cheng, Grace; Sharma, Rakesh; Ma, Alvin Chun-Hang; So, Chi-Wai Eric; Kwong, Yok-Lam; Leung, Anskar Yu-Hung
Abstract
Internal tandem duplication of Fms-like tyrosine kinase 3 (FLT3/ITD) occurs in about 30% of acute myeloid leukemia (AML) and is associated with poor response to conventional treatment and adverse outcome. Here, we reported that human FLT3/ITD expression led to axis duplication and dorsalization in about 50% of zebrafish embryos. The morphologic phenotype was accompanied by ectopic expression of a morphogen follistatin (fst) during early embryonic development. Increase in fst expression also occurred in adult FLT3/ITD-transgenic zebrafish, Flt3/ITD knock-in mice, and human FLT3/ITD AML cells. Overexpression of human FST317 and FST344 isoforms enhanced clonogenicity and leukemia engraftment in xenotransplantation model via RET, IL2RA, and CCL5 upregulation. Specific targeting of FST by shRNA, CRISPR/Cas9, or antisense oligo inhibited leukemic growth in vitro and in vivo. Importantly, serum FST positively correlated with leukemia engraftment in FLT3/ITD AML patient-derived xenograft mice and leukemia blast percentage in primary AML patients. In FLT3/ITD AML patients treated with FLT3 inhibitor quizartinib, serum FST levels correlated with clinical response. These observations supported FST as a novel therapeutic target and biomarker in FLT3/ITD AML.