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遗传多态性在人胞质磺基转移酶 SULT2B1a 对孕烯醇酮磺化中的作用。

The role of genetic polymorphisms in the sulfation of pregnenolone by human cytosolic sulfotransferase SULT2B1a.

机构信息

Department of Pharmacology, College of Pharmacy, Aljouf University, Aljouf, Saudi Arabia.

Department of Pharmacology and Experimental Therapeutics, College of Pharmacy and Pharmaceutical Sciences, University of Toledo Health Science Campus, Toledo, OH, 43614, USA.

出版信息

Sci Rep. 2024 Apr 5;14(1):8050. doi: 10.1038/s41598-024-56303-y.

Abstract

Pregnenolone is a key intermediate in the biosynthesis of many steroid hormones and neuroprotective steroids. Sulfotransferase family cytosolic 2B member 1 (SULT2B1a) has been reported to be highly selective to sulfate pregnenolone. This study aimed to clarify the effect of missense single nucleotide polymorphisms (SNPs) of the human SULT2B1 gene on the sulfating activity of coded SULT2B1a allozymes toward Pregnenolone. To investigate the effects of single nucleotide polymorphisms of the SULT2B1 gene on the sulfation of pregnenolone by SULT2B1a allozymes, 13 recombinant SULT2B1a allozymes were generated, expressed, and purified using established procedures. Human SULT2B1a SNPs were identified by a comprehensive database search. 13 SULT2B1a nonsynonymous missense coding SNPs (cSNPs) were selected, and site-directed mutagenesis was used to generate the corresponding cDNAs, packaged in pGEX-2TK expression vector, encoding these 13 SULT2B1a allozymes, which were bacterially expressed in BL21 E. coli cells and purified by glutathione-Sepharose affinity chromatography. Purified SULT2B1a allozymes were analyzed for sulfating activities towards pregnenolone. In comparison with the wild-type SULT2B1a, of the 13 allozymes, 11 showed reduced activity toward pregnenolone at 0.1 µM. Specifically, P134L and R259Q allozymes, reported to be involved in autosomal-recessive congenital ichthyosis, displayed low activity (1-10%) toward pregnenolone. The findings of this study may demonstrate the impact of genetic polymorphism on the sulfation of pregnenolone in individuals with different SULT2B1 genotypes.

摘要

孕烯醇酮是许多甾体激素和神经保护甾体生物合成的关键中间产物。 已报道磺基转移酶家族胞质 2B 成员 1(SULT2B1a)对孕烯醇酮硫酸盐具有高度选择性。本研究旨在阐明人类 SULT2B1 基因的错义单核苷酸多态性(SNP)对编码 SULT2B1a 同工酶对孕烯醇酮磺化活性的影响。为了研究 SULT2B1 基因的单核苷酸多态性对 SULT2B1a 同工酶对孕烯醇酮磺化的影响,使用已建立的程序生成、表达和纯化了 13 种重组 SULT2B1a 同工酶。通过全面的数据库搜索确定了人类 SULT2B1a SNP。选择了 13 个 SULT2B1a 非同义错义编码 SNP(cSNP),并通过定点诱变生成相应的 cDNA,包装在 pGEX-2TK 表达载体中,编码这 13 种 SULT2B1a 同工酶,在 BL21 E.coli 细胞中细菌表达并通过谷胱甘肽-Sepharose 亲和层析纯化。分析了纯化的 SULT2B1a 同工酶对孕烯醇酮的磺化活性。与野生型 SULT2B1a 相比,在 0.1μM 时,13 种同工酶中有 11 种对孕烯醇酮的活性降低。具体而言,报道与常染色体隐性先天性鱼鳞病有关的 P134L 和 R259Q 同工酶对孕烯醇酮的活性低(1-10%)。本研究的结果可能表明遗传多态性对不同 SULT2B1 基因型个体中孕烯醇酮磺化的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/341f/10997614/8d23cab22e51/41598_2024_56303_Fig1_HTML.jpg

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