Daniel P T, Pun K T, Ritschel S, Sturm I, Holler J, Dörken B, Brown R
Max Delbrück Center for Molecular Medicine; the Department of Hematology, Oncology and Tumor Immunology, Charité-Campus Berlin-Buch, Humboldt University, Berlin-Buch, Germany.
Blood. 1999 Aug 1;94(3):1100-7.
Members of the Bcl-2 gene family have been implicated in the regulation of cell death induced by cytostatic drugs. In some malignancies such as B-cell lymphoma, there is evidence that high expression of Bcl-2 is an independent negative prognostic marker and the overexpression of Bcl-2 has been shown to confer resistance to cytotoxic drugs by preventing drug-induced apoptosis. This function of Bcl-2 can be antagonized by apoptosis-promoting members of the Bcl-2 family. We previously showed that overexpression of Bax restores the chemosensitivity of Bax-deficient breast cancer cell lines. Therefore, we investigated whether the death-promoting Bcl-2 homologue Bik/Nbk can enhance cytostatic drug-induced apoptosis. As a model, we used the T-cell leukemia H9 (CD3(+) and CD4(+)CD8(-)), which is resistant to corticosteroid-induced cell death and does not express endogenous Bik/Nbk. Sensitivity for drug-induced apoptosis was increased 10- to 39-fold in cells transfected with the full-length coding sequence of Bik/Nbk. In addition, apoptosis induced via CD95/Fas or heat shock was increased to a similar extent. These data show that Bik/Nbk, which, unlike Bax, carries only a BH3 but no BH1 or BH2 domain may be a target to enhance chemosensitivity. The complete suppression of tumor growth in a severe combined immunodeficient mouse xenotransplant model suggests that, in analogy to Bax, Bik/Nbk may function as a tumor suppressor gene.
Bcl-2基因家族成员与细胞生长抑制药物诱导的细胞死亡调节有关。在一些恶性肿瘤如B细胞淋巴瘤中,有证据表明Bcl-2的高表达是一个独立的不良预后标志物,并且Bcl-2的过表达已被证明可通过阻止药物诱导的凋亡而赋予对细胞毒性药物的抗性。Bcl-2的这一功能可被Bcl-2家族中促进凋亡的成员所拮抗。我们先前表明Bax的过表达可恢复Bax缺陷型乳腺癌细胞系的化学敏感性。因此,我们研究了促死亡的Bcl-2同源物Bik/Nbk是否能增强细胞生长抑制药物诱导的凋亡。作为一个模型,我们使用了T细胞白血病H9(CD3(+)和CD4(+)CD8(-)),它对皮质类固醇诱导的细胞死亡具有抗性且不表达内源性Bik/Nbk。在用Bik/Nbk全长编码序列转染的细胞中,对药物诱导凋亡的敏感性增加了10至39倍。此外,通过CD95/Fas或热休克诱导的凋亡也有类似程度的增加。这些数据表明,与Bax不同,仅携带BH3结构域而无BH1或BH2结构域的Bik/Nbk可能是增强化学敏感性的一个靶点。在严重联合免疫缺陷小鼠异种移植模型中肿瘤生长的完全抑制表明,与Bax类似,Bik/Nbk可能作为一种肿瘤抑制基因发挥作用。