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人类磺基转移酶SULT1C1和SULT1C2:cDNA特征、基因克隆及染色体定位

Human sulfotransferases SULT1C1 and SULT1C2: cDNA characterization, gene cloning, and chromosomal localization.

作者信息

Freimuth R R, Raftogianis R B, Wood T C, Moon E, Kim U J, Xu J, Siciliano M J, Weinshilboum R M

机构信息

Department of Molecular Pharmacology and Experimental Therapeutics, Mayo Medical School/Mayo Graduate School/Mayo Clinic, Rochester, Minnesota, 55905, USA.

出版信息

Genomics. 2000 Apr 15;65(2):157-65. doi: 10.1006/geno.2000.6150.

Abstract

Sulfate conjugation catalyzed by sulfotransferase (SULT) enzymes is an important pathway in the biotransformation of many drugs, other xenobiotics, neurotransmitters, and hormones. We previously described a human cDNA, SULT1C1, that encoded a protein similar in sequence to that of rat ST1C1. Subsequently, a related human cDNA, SULT1C2, was reported. In the present study, we set out to characterize further the human SULT1C1 cDNA and then to clone, structurally characterize, and map its gene. As an initial step, we performed 5'- and 3'-RACE with SULT1C1 cDNA. Those experiments demonstrated that a small number of SULT1C1 transcripts contained an "insert," which we later showed resulted from alternative splicing that involved an Alu sequence in intron 3 of SULT1C1. We then cloned and structurally characterized the SULT1C1 gene from a human genomic BAC library. Because the sequence of SULT1C2 was closely related to that of SULT1C1 and because the genes for other human SULT paralogues occur in clusters, we screened the BAC clones that had been positive for SULT1C1 to search for SULT1C2 and discovered a clone that contained both genes. That BAC was used to sequence and structurally characterize SULT1C2. SULT1C1 and SULT1C2 were approximately 21 and 10 kb in length, respectively. Both genes contained seven exons that encoded protein, and both had structures that were similar to those of other genes that encode members of the SULT1 family. Finally, human SULT1C1 and SULT1C2 mapped to 2q11.2 by fluorescence in situ hybridization. The cloning and structural characterization of SULT1C1 and SULT1C2 will now make it possible to perform molecular genetic and pharmacogenomic studies of these sulfate-conjugating enzymes in humans.

摘要

由磺基转移酶(SULT)催化的硫酸化结合反应是许多药物、其他外源性物质、神经递质和激素生物转化的重要途径。我们之前描述了一种人类cDNA,即SULT1C1,它编码的蛋白质在序列上与大鼠ST1C1相似。随后,又报道了一种相关的人类cDNA,即SULT1C2。在本研究中,我们着手进一步鉴定人类SULT1C1 cDNA,然后克隆其基因、进行结构鉴定并绘制其基因图谱。作为第一步,我们对SULT1C1 cDNA进行了5'-和3'-RACE。这些实验表明,少数SULT1C1转录本含有一个“插入片段”,我们后来发现这是由选择性剪接导致的,该选择性剪接涉及SULT1C1内含子3中的一个Alu序列。然后,我们从人类基因组BAC文库中克隆并对SULT1C1基因进行了结构鉴定。由于SULT1C2的序列与SULT1C1密切相关,且其他人类SULT旁系同源基因成簇出现,我们筛选了对SULT1C1呈阳性的BAC克隆以寻找SULT1C2,结果发现了一个包含这两个基因的克隆。该BAC用于对SULT1C2进行测序和结构鉴定。SULT1C1和SULT1C2的长度分别约为21 kb和10 kb。这两个基因都包含七个编码蛋白质的外显子,且它们的结构与其他编码SULT1家族成员的基因相似。最后,通过荧光原位杂交将人类SULT1C1和SULT1C2定位到2q11.2。SULT1C1和SULT1C2的克隆及结构鉴定将使对这些硫酸化结合酶进行人类分子遗传学和药物基因组学研究成为可能。

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