Xie K, Huang S, Dong Z, Juang S H, Gutman M, Xie Q W, Nathan C, Fidler I J
Department of Cell Biology, University of Texas M. D. Anderson Cancer Center, Houston 77030, USA.
J Exp Med. 1995 Apr 1;181(4):1333-43. doi: 10.1084/jem.181.4.1333.
Previous studies from our laboratory demonstrated an inverse relationship between the expression level of inducible nitric oxide synthase (iNOS) and the metastatic potential of murine K-1735 melanoma cells. The purpose of this study was to provide direct evidence that the expression of iNOS suppresses metastatic potential of melanoma cells. Highly metastatic K-1735 clone 4 cells (C4.P), which express low levels of iNOS, were transfected with a functional iNOS (C4.L8), inactive-mutated iNOS (C4.S2), or neomycin-resistance (C4.Neo) genes in medium containing 3 mM NG-methyl-L-arginine (NMA). Positive transfectants were identified by Southern and Northern blot analyses and homogeneous staining with a specific anti-iNOS monoclonal antibody. Semiconfluent cultures of C4.P (parental), C4.Neo.3 (control transfection), C4.S2.3 (inactive iNOS), and C4.L8.5 (functional iNOS) were harvested, and viable cells were injected intravenously into syngeneic C3H/HeN mice and allogeneic BALB/c nude mice. C4.P, C4.Neo.3, and C4.S2.3 cells were highly metastatic whereas C4.L8.5 cells were not metastatic. Experiments with [125I]dUrd-labeled tumor cells demonstrated that the initial arrest in the lung microvasculature did not differ among the lines, but that C4.L8.5 cells died by 48-72 h after injection. Enhanced survival of all K-1735 C4 cells (including C4.L8.5) was found in mice given twice daily injections of 20 mg NMA. The C4.L8.5 cells produced slow growing subcutaneous tumors in nude mice, whereas the other three lines produced fast growing tumors. In vitro studies confirmed that in the absence of NMA the expression of iNOS in C4.L8.5 cells induced apoptosis. Collectively, these data demonstrate that the expression of recombinant iNOS in melanoma cells is associated with apoptosis, suppression of tumorigenicity, and abrogation of metastasis.
我们实验室之前的研究表明,诱导型一氧化氮合酶(iNOS)的表达水平与小鼠K-1735黑色素瘤细胞的转移潜能呈负相关。本研究的目的是提供直接证据,证明iNOS的表达可抑制黑色素瘤细胞的转移潜能。在含有3 mM NG-甲基-L-精氨酸(NMA)的培养基中,将低表达iNOS的高转移K-1735克隆4细胞(C4.P)转染功能性iNOS(C4.L8)、无活性突变iNOS(C4.S2)或新霉素抗性(C4.Neo)基因。通过Southern和Northern印迹分析以及用特异性抗iNOS单克隆抗体进行均匀染色来鉴定阳性转染子。收获C4.P(亲本)、C4.Neo.3(对照转染)、C4.S2.3(无活性iNOS)和C4.L8.5(功能性iNOS)的半汇合培养物,并将活细胞静脉注射到同基因C3H/HeN小鼠和异基因BALB/c裸鼠体内。C4.P、C4.Neo.3和C4.S2.3细胞具有高转移性,而C4.L8.5细胞不具有转移性。用[125I]dUrd标记的肿瘤细胞进行的实验表明,各细胞系在肺微血管中的初始滞留没有差异,但C4.L8.5细胞在注射后48 - 72小时死亡。在每天两次注射20 mg NMA的小鼠中,发现所有K-1735 C4细胞(包括C4.L8.5)的存活率都有所提高。C4.L8.5细胞在裸鼠中产生生长缓慢的皮下肿瘤,而其他三个细胞系产生生长迅速的肿瘤。体外研究证实,在没有NMA的情况下,C4.L8.5细胞中iNOS的表达诱导细胞凋亡。总体而言,这些数据表明黑色素瘤细胞中重组iNOS的表达与细胞凋亡、肿瘤形成抑制和转移消除有关。