Fan J-L, Zhang J, Dong L-W, Fu W-J, Du J, Shi H-G, Jiang H, Ye F, Xi H, Zhang C-Y, Hou J, Wang H-Y
Department of Hematology, The Myeloma and Lymphoma Center, Changzheng Hospital, The Second Military Medical University, Shanghai, China.
International Cooperation Laboratory on Signal Transduction, Eastern Hepatobiliary Surgery Institute, The Second Military Medical University, Shanghai, China.
Cell Death Dis. 2014 Mar 13;5(3):e1126. doi: 10.1038/cddis.2014.93.
Unconventional prefoldin RPB5 interactor (URI), which acts as an oncoprotein in solid tumors, is associated with RNA polymerase II subunit 5. However, its impact on multiple myeloma (MM) has not been determined. We demonstrate here that URI is overexpressed in MM compared with plasma cells derived from healthy volunteers. Side population (SP) cells sorted from MM cells showed a much higher level of URI than non-SP cells. Using lentivirus-delivered shRNA, we established stable URI knockdown MM cell lines. URI inhibition significantly attenuated the proliferation of MM cells and decreased colony formation compared with the control cells. Tumor growth assays in NOD/SCID mice further confirmed the promotion role of URI during MM development in vivo. Furthermore, URI knockdown markedly reduced the abundance of SP in MM cell lines and enhanced the chemotherapeutic sensitivity of MM towards bortezomib. Mechanically, URI appears to be critically involved in modulating STAT3 activity through regulating interleukin (IL)-6 transcription via interaction with NFκBp65. In conclusion, URI may have an important role in the development of MM and chemotherapeutic resistance through activating the IL-6/STAT3 pathway.
非常规预折叠蛋白RPB5相互作用因子(URI)在实体瘤中作为一种癌蛋白,与RNA聚合酶II亚基5相关。然而,其对多发性骨髓瘤(MM)的影响尚未确定。我们在此证明,与来自健康志愿者的浆细胞相比,URI在MM中过表达。从MM细胞中分选的侧群(SP)细胞显示出比非SP细胞更高水平的URI。使用慢病毒递送的shRNA,我们建立了稳定的URI敲低MM细胞系。与对照细胞相比,URI抑制显著减弱了MM细胞的增殖并减少了集落形成。NOD/SCID小鼠中的肿瘤生长试验进一步证实了URI在体内MM发展过程中的促进作用。此外,URI敲低显著降低了MM细胞系中SP的丰度,并增强了MM对硼替佐米的化疗敏感性。从机制上讲,URI似乎通过与NFκBp65相互作用调节白细胞介素(IL)-6转录,从而关键地参与调节STAT3活性。总之,URI可能通过激活IL-6/STAT3途径在MM的发展和化疗耐药中起重要作用。