Qiu Lin, Lai Raymond, Lin Quan, Lau Esther, Thomazy David M, Calame Daniel, Ford Richard J, Kwak Larry W, Kirken Robert A, Amin Hesham M
Department of Hematopathology, Box 72, University of Texas M. D. Anderson Cancer Center, 1515 Holcombe Blvd, Houston, TX 77030, USA.
Blood. 2006 Oct 1;108(7):2407-15. doi: 10.1182/blood-2006-04-020305. Epub 2006 Jun 8.
The aberrant fusion protein NPM-ALK plays an important pathogenetic role in ALK+ anaplastic large-cell lymphoma (ALCL). We previously demonstrated that Jak3 potentiates the activity of NPM-ALK. Jak3 activation is restricted to interleukins that recruit the common gamma chain (gammac) receptor, including IL-9. NPM-ALK was previously shown to promote widespread lymphomas in IL-9 transgenic mice by unknown mechanisms. We hypothesized that IL-9 plays an important role in ALK+ ALCL via Jak3 activation. Our studies demonstrate the expression of IL-9Ralpha and IL-9 in 3 ALK+ ALCL-cell lines and 75% and 83% of primary tumors, respectively. IL-9 was detected in serum-free culture medium harvested from ALK+ ALCL-cell lines, supporting autocrine release of IL-9. Treatment of these cells with an anti-IL-9-neutralizing antibody decreased pJak3 and its kinase activity, along with pStat3 and ALK kinase activity. These effects were associated with decreased cell proliferation and colony formation in soft agar and cell-cycle arrest. Evidence suggests that cell-cycle arrest can be attributed to up-regulation of p21 and down-regulation of Pim-1. Our results illustrate that IL-9/Jak3 signaling plays a significant role in the pathogenesis of ALK+ ALCL and that it represents a potential therapeutic target for treating patients with ALK+ ALCL.
异常融合蛋白NPM-ALK在ALK阳性间变性大细胞淋巴瘤(ALCL)中发挥重要的致病作用。我们先前证明Jak3可增强NPM-ALK的活性。Jak3的激活仅限于募集共同γ链(γc)受体的白细胞介素,包括IL-9。先前研究表明,NPM-ALK可通过未知机制在IL-9转基因小鼠中促进广泛的淋巴瘤发生。我们推测IL-9通过激活Jak3在ALK阳性ALCL中发挥重要作用。我们的研究表明,IL-9Rα和IL-9分别在3种ALK阳性ALCL细胞系以及75%和83%的原发性肿瘤中表达。在从ALK阳性ALCL细胞系收获的无血清培养基中检测到IL-9,支持IL-9的自分泌释放。用抗IL-9中和抗体处理这些细胞可降低pJak3及其激酶活性,同时降低pStat3和ALK激酶活性。这些作用与细胞增殖减少、软琼脂中集落形成减少以及细胞周期停滞有关。有证据表明,细胞周期停滞可归因于p21的上调和Pim-1的下调。我们的结果表明,IL-9/Jak3信号通路在ALK阳性ALCL的发病机制中起重要作用,并且它代表了治疗ALK阳性ALCL患者的潜在治疗靶点。