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人胞质磺基转移酶对雷洛昔芬和4-羟基他莫昔芬的硫酸化作用。

Sulfation of raloxifene and 4-hydroxytamoxifen by human cytosolic sulfotransferases.

作者信息

Falany Josie L, Pilloff Daniel E, Leyh Thomas S, Falany Charles N

机构信息

Department of Pharmacology and Toxicology, 1670 University Blvd, Volker Hall G133M, University of Alabama at Birmingham, Birmingham, AL 35294, USA.

出版信息

Drug Metab Dispos. 2006 Mar;34(3):361-8. doi: 10.1124/dmd.105.006551. Epub 2005 Dec 28.

Abstract

Raloxifene and 4-hydroxytamoxifen (4-OHT) are important estrogen-related drugs used in the treatment of osteoporosis and breast cancer. Sulfation is involved in the metabolism and inactivation of both compounds in human tissues, although the sulfotransferase (SULT) isoforms involved in their conjugation have not been well described. The ability of seven expressed SULT isoforms to sulfate raloxifene and 4-OHT was investigated. Raloxifene was conjugated by all seven SULT isoforms tested, whereas 4-OHT was conjugated only by SULTs 1A1, 1E1, and 2A1. Characterization of raloxifene and 4-OHT sulfation demonstrates that sulfation can occur at therapeutic concentrations. SULT1E1 displayed the lowest Km (0.2 microM) for 4-OHT sulfation and SULT2A1 the lowest (0.3 microM) for raloxifene sulfation. SULT1E1 was the only isoform exhibiting detectable levels of raloxifene disulfation activity. Modeling of the interactions of raloxifene in the active site of SULT1E1 indicates that both hydroxyl groups of raloxifene can be readily positioned in proximity to the sulfonyl group of 3'-phosphoadenosine 5'-phosphosulfate and the catalytically important His107 residue. Both raloxifene and 4-OHT sulfation activities were detectable in all human liver cytosols tested. 4-OHT sulfation was detected in cytosol prepared from endometrial biopsies of normal women obtained during the proliferative and secretory phases of the same menstrual cycle. In contrast, raloxifene sulfation was detectable only in secretory phase cytosols in association with SULT1E1 activity. In summary, several human SULT isoforms are capable of sulfating raloxifene and 4-OHT. Tissue-specific expression of the individual SULT isoforms may have important roles in the regulation of the activity of these compounds.

摘要

雷洛昔芬和4-羟基他莫昔芬(4-OHT)是用于治疗骨质疏松症和乳腺癌的重要雌激素相关药物。硫酸化参与了这两种化合物在人体组织中的代谢和失活过程,尽管参与其结合的磺基转移酶(SULT)同工型尚未得到充分描述。研究了七种表达的SULT同工型对雷洛昔芬和4-OHT进行硫酸化的能力。所有测试的七种SULT同工型均能使雷洛昔芬结合,而4-OHT仅能被SULT 1A1、1E1和2A1结合。雷洛昔芬和4-OHT硫酸化的特征表明,在治疗浓度下即可发生硫酸化。SULT1E1对4-OHT硫酸化的Km最低(0.2 microM),SULT2A1对雷洛昔芬硫酸化的Km最低(0.3 microM)。SULT1E1是唯一表现出可检测水平的雷洛昔芬二硫酸化活性的同工型。雷洛昔芬在SULT1E1活性位点的相互作用模型表明,雷洛昔芬的两个羟基都可以很容易地定位在3'-磷酸腺苷5'-磷酸硫酸酯的磺酰基和具有催化重要性的His107残基附近。在所有测试的人肝细胞溶胶中均检测到雷洛昔芬和4-OHT的硫酸化活性。在同一月经周期的增殖期和分泌期获得的正常女性子宫内膜活检制备的细胞溶胶中检测到4-OHT硫酸化。相比之下,仅在分泌期细胞溶胶中与SULT1E1活性相关时可检测到雷洛昔芬硫酸化。总之,几种人SULT同工型能够使雷洛昔芬和4-OHT硫酸化。各个SULT同工型的组织特异性表达可能在这些化合物活性的调节中起重要作用。

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