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腺病毒介导的IkappaB或IkappaB加Bax基因转导显著增强肿瘤坏死因子(TNF)诱导的人胶质瘤细胞凋亡。

Adenovirus-mediated gene transduction of IkappaB or IkappaB plus Bax gene drastically enhances tumor necrosis factor (TNF)-induced apoptosis in human gliomas.

作者信息

Shinoura N, Yamamoto N, Yoshida Y, Fujita T, Saito N, Asai A, Kirino T, Hamada H

机构信息

Department of Molecular Biotherapy Research, Cancer Chemotherapy Center, Cancer Institute, Tokyo.

出版信息

Jpn J Cancer Res. 2000 Jan;91(1):41-51. doi: 10.1111/j.1349-7006.2000.tb00858.x.

Abstract

Tumor necrosis factor-alpha (TNF), which was initially supposed to be a promising cancer therapeutic reagent, does not kill most types of cancer cells partly due to the activation of an anti-apoptotic gene, NF-kappaB. NF-kappaB forms an inactive complex with the inhibitor kappa B alpha (IkappaBalpha), which is rapidly phosphorylated and degraded in response to various extracellular signals. To disrupt this protective mechanism, we introduced an inhibitor kappa B alpha (IkappaBdN) gene, a deletion mutant gene lacking the nucleotides for the N-terminal 36 amino acids of IkappaBalpha, into human glioma cells (U251, T-98G, and U-373MG) via an adenoviral (Adv) vector in addition to treatment of the glioma cells with recombinant TNF. Immunohistochemical analysis revealed that NF-kappaB was translocated to nuclei by TNF treatment in U251 and T-98G cells, but not in U-373MG cells. Neither transduction of IkappaBdN nor treatment with TNF protein alone induced apoptosis in U251 and T-98G cells, whereas both cell lines underwent drastic TNF-induced apoptosis after transduction of IkappaBdN. On the other hand, U-373MG cells were refractory to TNF-induced apoptosis even when they were transduced with the IkappaBdN gene. U-373MG cells underwent drastically increased apoptosis when co-transduced with the IkappaBdN and Bax gene in the presence of TNF. Adv-mediated transfer of IkappaBdN or IkappaBdN plus Bax may be a promising therapeutic approach to treat gliomas through TNF-mediated apoptosis.

摘要

肿瘤坏死因子-α(TNF)最初被认为是一种很有前景的癌症治疗试剂,但它不能杀死大多数类型的癌细胞,部分原因是抗凋亡基因NF-κB的激活。NF-κB与抑制剂κBα(IkappaBalpha)形成无活性复合物,该复合物在各种细胞外信号的作用下迅速磷酸化并降解。为了破坏这种保护机制,除了用重组TNF处理胶质瘤细胞外,我们还通过腺病毒(Adv)载体将抑制剂κBα(IkappaBdN)基因(一种缺少IkappaBalpha N端36个氨基酸核苷酸的缺失突变基因)导入人胶质瘤细胞(U251、T-98G和U-373MG)。免疫组织化学分析显示,在U251和T-98G细胞中,TNF处理可使NF-κB转位至细胞核,但在U-373MG细胞中则不然。单独转导IkappaBdN或单独用TNF蛋白处理均未在U251和T-98G细胞中诱导凋亡,而在转导IkappaBdN后,这两种细胞系均经历了剧烈的TNF诱导凋亡。另一方面,即使转导了IkappaBdN基因,U-373MG细胞对TNF诱导的凋亡仍具有抗性。在TNF存在的情况下,当与IkappaBdN和Bax基因共转导时,U-373MG细胞的凋亡显著增加。Adv介导的IkappaBdN或IkappaBdN加Bax的转移可能是一种通过TNF介导的凋亡治疗胶质瘤的有前景的治疗方法。

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本文引用的文献

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