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配体结合和构象转换对人胸苷酸合成酶细胞内稳定性的影响。

Effects of ligand binding and conformational switching on intracellular stability of human thymidylate synthase.

作者信息

Berger Sondra H, Berger Franklin G, Lebioda Lukasz

机构信息

Center for Colon Cancer Research, University of South Carolina, Columbia, SC 29208, USA.

出版信息

Biochim Biophys Acta. 2004 Jan 14;1696(1):15-22. doi: 10.1016/j.bbapap.2003.09.005.

Abstract

Thymidylate synthase (TS) is the target in colon cancer therapeutic protocols utilizing such drugs as 5-fluorouracil and raltitrexed. The effectiveness of these treatments is hampered by emerging drug resistance, usually related to increased levels of TS. Human TS (hTS) is unique among thymidylate synthases from all species examined as its loop 181-197 can assume two main conformations related by rotation of 180 degrees. In one conformation, "active", the catalytic Cys-195 is positioned in the active site; in the other conformation, "inactive", it is at the subunit interface. Also, in the active conformation, region 107-128 has one well-defined conformation while in the inactive conformation this region assumes multiple conformations and is disordered in crystals. The native protein exists in apparent equilibrium between the two conformational states, while the enzyme liganded with TS inhibitors assumes the active conformation. The native protein has been reported to bind to several mRNAs, including its own mRNA, but upon ligation, RNA binding activity is lost. Ligation of TS by inhibitors also stabilizes it to turnover. Since currently used TS-directed drugs stabilize the active conformation and slow down the enzyme degradation, it is postulated that inhibitors of hTS stabilizing the inactive conformation of hTS should cause a down-regulation in enzyme levels as well as inactivate the enzyme.

摘要

胸苷酸合成酶(TS)是结肠癌治疗方案中的靶点,这些方案会使用5-氟尿嘧啶和雷替曲塞等药物。这些治疗的有效性受到新出现的耐药性的阻碍,耐药性通常与TS水平升高有关。人类TS(hTS)在所有已检测物种的胸苷酸合成酶中是独特的,因为其181-197环可以呈现两种主要构象,这两种构象通过180度旋转相关。在一种构象“活性”中,催化性半胱氨酸-195位于活性位点;在另一种构象“非活性”中,它位于亚基界面。此外,在活性构象中,107-128区域具有一种明确的构象,而在非活性构象中,该区域呈现多种构象且在晶体中无序。天然蛋白质在两种构象状态之间存在明显的平衡,而与TS抑制剂结合的酶呈现活性构象。据报道,天然蛋白质能与几种mRNA结合,包括其自身的mRNA,但在连接后,RNA结合活性丧失。TS与抑制剂的连接也使其对周转更稳定。由于目前使用的针对TS的药物能稳定活性构象并减缓酶的降解,因此推测稳定hTS非活性构象的hTS抑制剂应会导致酶水平下调并使酶失活。

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