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酵母Tat2p色氨酸通透酶的活性对抗肿瘤药物4-苯基丁酸盐敏感。

Activity of the yeast Tat2p tryptophan permease is sensitive to the anti-tumor agent 4-phenylbutyrate.

作者信息

Liu Ming, Brusilow William S A, Needleman Richard

机构信息

Department of Biochemistry and Molecular Biology, Wayne State University School of Medicine, 540 E. Canfield Ave, Detroit, MI 48201, USA.

出版信息

Curr Genet. 2004 Nov;46(5):256-68. doi: 10.1007/s00294-004-0531-7.

Abstract

4-Phenylbutyrate (PB) induces differentiation and is being intensively studied as a treatment for brain, prostate, breast, and hematopoietic cancer. While many different primary targets for PB have been proposed, the mechanism by which it causes cellular differentiation remains unknown. To identify the primary cellular target, we investigated its effects on Saccharomyces cerevisiae and showed that it inhibits tryptophan transport. We show here that PB and sorbic acid induce an ubiquitin-dependent turnover of the tryptophan permease Tat2p. However, the inhibition of transport is not a consequence of the loss of Tat2p, since it also occurs when turnover is prevented by deleting the Tat2p ubiquitination sites. When we tested the effects of PB and other growth inhibitory agents on the growth of amino acid auxotrophs, we found that several auxotrophs are hypersensitive to a number of chemically unrelated agents, including PB and some, but not all, weak acids; and this sensitivity is due to the inhibition of amino acid transport. For the inhibitory weak acids, inhibition is not confined to aromatic amino acid auxotrophs, nor is it a general weak acid stress response, since the degree of inhibition is independent of weak acid hydrophobicity and p Ka. Our results show that diverse agents affect the activity of the Tat2p permease rather than its stability and suggest the hypothesis that the anti-neoplastic action of PB is due to a decrease in the activity of surface receptors or other membrane proteins needed to maintain the transformed state.

摘要

4-苯基丁酸盐(PB)可诱导分化,目前正作为治疗脑癌、前列腺癌、乳腺癌和血癌的药物进行深入研究。虽然已经提出了许多不同的PB主要靶点,但它导致细胞分化的机制仍然未知。为了确定主要的细胞靶点,我们研究了它对酿酒酵母的影响,结果表明它能抑制色氨酸转运。我们在此表明,PB和山梨酸可诱导色氨酸通透酶Tat2p的泛素依赖性周转。然而,转运抑制并非Tat2p缺失的结果,因为当通过删除Tat2p泛素化位点来阻止周转时,转运抑制仍然会发生。当我们测试PB和其他生长抑制剂对氨基酸营养缺陷型菌株生长的影响时,我们发现几种营养缺陷型菌株对许多化学性质不相关的试剂高度敏感,包括PB和一些(但不是全部)弱酸;这种敏感性是由于氨基酸转运受到抑制。对于抑制性弱酸,抑制作用不仅限于芳香族氨基酸营养缺陷型菌株,也不是一般的弱酸应激反应,因为抑制程度与弱酸的疏水性和pKa无关。我们的结果表明,多种试剂会影响Tat2p通透酶的活性而非其稳定性,并提出了一个假设,即PB的抗肿瘤作用是由于维持转化状态所需的表面受体或其他膜蛋白的活性降低。

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