Dalton M B, Fantle K S, Bechtold H A, DeMaio L, Evans R M, Krystosek A, Sinensky M
Eleanor Roosevelt Institute, Denver, Colorado 80206, USA.
Cancer Res. 1995 Aug 1;55(15):3295-304.
BZA-5B is a peptidomimetic inhibitor of protein farnesylation in mammalian cells. We have examined the specificity of this compound toward inhibition of farnesylation of p21ras and the nuclear lamin proteins, prelamin A and lamin B. We have also used the Raney nickel cleavage technique in conjunction with radio-gas liquid chromatography to assess the ability of this compound to block total protein farnesylation. These studies show that BZA-5B blocks farnesylation of the lamin proteins with an IC50 comparable to that seen for p21ras. At a concentration in excess of 25 microM, BZA-5B inhibits all protein farnesylation in CHO-K1 cells below the limits of detection. Furthermore, we found that after a 2-day exposure to high concentrations of BZA-5B, CHO-K1 cell lines exhibit no loss in sensitivity to inhibition of prenylation by this compound. Yet, despite the potent and general inhibition of protein farnesylation, BZA-5B does not interfere with a variety of cellular functions expected to be farnesylation dependent, including cell growth and viability, assembly of the nuclear lamina, membrane association of p21ras, and p21ras-dependent differentiation of PC-12 cells in response to treatment with nerve growth factor. The maintenance of farnesylation-dependent events in the presence of BZA-5B stands in marked contrast to the inhibition of the oncogenic ras-mediated transformed phenotype that has been observed with this compound and other farnesyl protein transferase inhibitors. This specificity for inhibition of ras transformation by BZA-5B is quite encouraging to its eventual development as an antimalignancy pharmaceutical.
BZA - 5B是一种哺乳动物细胞中蛋白质法尼基化的拟肽抑制剂。我们已经研究了该化合物对p21ras以及核纤层蛋白前体lamin A和lamin B法尼基化抑制的特异性。我们还结合使用雷尼镍裂解技术和放射性气液色谱法来评估该化合物阻断总蛋白质法尼基化的能力。这些研究表明,BZA - 5B阻断核纤层蛋白的法尼基化,其半数抑制浓度(IC50)与p21ras的相当。在浓度超过25 microM时,BZA - 5B抑制CHO - K1细胞中所有蛋白质的法尼基化,低于检测限。此外,我们发现,在高浓度BZA - 5B下暴露2天后,CHO - K1细胞系对该化合物抑制异戊烯基化的敏感性没有降低。然而,尽管BZA - 5B对蛋白质法尼基化有强效且普遍的抑制作用,但它并不干扰预期依赖法尼基化的多种细胞功能,包括细胞生长和活力、核纤层的组装、p21ras的膜结合以及PC - 12细胞在神经生长因子处理下依赖p21ras的分化。在存在BZA - 5B的情况下,法尼基化依赖事件的维持与该化合物和其他法尼基蛋白转移酶抑制剂所观察到的致癌性ras介导的转化表型的抑制形成鲜明对比。BZA - 5B对ras转化的这种抑制特异性对于其最终发展成为一种抗恶性肿瘤药物非常令人鼓舞。