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紫杉烷介导的基因诱导独立于微管稳定:诱导调节炎症和细胞凋亡的转录调节因子和酶。

Taxane-mediated gene induction is independent of microtubule stabilization: induction of transcription regulators and enzymes that modulate inflammation and apoptosis.

作者信息

Moos P J, Fitzpatrick F A

机构信息

Huntsman Cancer Institute, University of Utah, 546 Chipeta Way #1100, Salt Lake City, UT 84108, USA.

出版信息

Proc Natl Acad Sci U S A. 1998 Mar 31;95(7):3896-901. doi: 10.1073/pnas.95.7.3896.

Abstract

Pharmacological traits of the antineoplastic agent taxol may originate in part from its effects on gene expression and not simply from its effects on microtubule assembly. This prompts three questions. First, how extensive is gene induction by taxol? Second, is gene induction confined to taxol itself, or does it occur with other taxane analogs? Third, do the functions of any induced genes correspond with known attributes of taxol or taxane analogs? We report that taxol induces numerous early-response genes, not just cytokine genes. Previously unidentified taxol-induced genes include genes coding transcription factors with tumor suppressor effects (krox-24) and enzymes that govern proliferation, apoptosis, and inflammation (2'5'-oligoadenylate synthase, cyclooxygenase-2, and an IkappaB kinase termed chuk). Taxotere, a potent analog of taxol, did not induce any of these genes, implying that taxol modulates gene expression by a mechanism that is distinct from microtubule stabilization and cell cycle arrest. Other taxane analogs induce some of the same genes as taxol, indicating that this process is not unique to taxol. Functional changes coincided with changes in gene expression. For instance, induction of tumor necrosis factor alpha (TNFalpha) accentuated apoptosis in cells treated with taxol compared with corresponding cells treated with taxotere. The functions of several induced genes (e.g., krox-24 and cyclooxygenase-2) are self-consistent with beneficial and adverse effects encountered during taxol administration. These results may be relevant to the safe and effective use of taxol or its analogs in oncology and other areas of medicine.

摘要

抗肿瘤药物紫杉醇的药理特性可能部分源于其对基因表达的影响,而不仅仅是对微管组装的影响。这引发了三个问题。第一,紫杉醇诱导基因的范围有多广?第二,基因诱导是否仅限于紫杉醇本身,还是其他紫杉烷类似物也会发生?第三,任何诱导基因的功能是否与紫杉醇或紫杉烷类似物的已知特性相对应?我们报告紫杉醇可诱导众多早期反应基因,而不仅仅是细胞因子基因。以前未被识别的紫杉醇诱导基因包括编码具有肿瘤抑制作用的转录因子(krox-24)以及调控增殖、凋亡和炎症的酶(2',5'-寡腺苷酸合成酶、环氧化酶-2和一种名为chuk的IkappaB激酶)。紫杉醇的强效类似物泰索帝并未诱导这些基因中的任何一个,这意味着紫杉醇通过一种不同于微管稳定和细胞周期阻滞的机制调节基因表达。其他紫杉烷类似物诱导的一些基因与紫杉醇相同,表明这一过程并非紫杉醇所特有。功能变化与基因表达变化相一致。例如,与用泰索帝处理的相应细胞相比,紫杉醇处理的细胞中肿瘤坏死因子α(TNFα)的诱导增强了细胞凋亡。几个诱导基因(如krox-24和环氧化酶-2)的功能与紫杉醇给药过程中遇到的有益和不良影响是一致的。这些结果可能与紫杉醇或其类似物在肿瘤学和其他医学领域的安全有效使用相关。

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