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杀生物剂三丁基锡会减少泥螺(Ilyanassa obsoleta)体内作为脂肪酸酯的睾酮积累。

The biocide tributyltin reduces the accumulation of testosterone as fatty acid esters in the mud snail (Ilyanassa obsoleta).

作者信息

Gooding Meredith P, Wilson Vickie S, Folmar Leroy C, Marcovich Dragoslav T, LeBlanc Gerald A

机构信息

Department of Environmental and Molecular Toxicology, North Carolina State University, Raleigh, North Carolina 27695, USA.

出版信息

Environ Health Perspect. 2003 Apr;111(4):426-30. doi: 10.1289/ehp.5779.

Abstract

Imposex, the development of male sex characteristics by female gonochoristic snails, has been documented globally and is causally associated with exposure to the ubiquitous environmental contaminant tributyltin (TBT). Elevated testosterone levels in snails also are associated with TBT, and direct exposure to testosterone has been shown to cause imposex. We discovered previously that the mud snail (Ilyanassa obsoleta)biotransforms and retains excess testosterone primarily as fatty acid esters. The purpose of this study was to determine whether TBT interferes with the esterification of testosterone, resulting in the elevated free (unesterified) testosterone levels associated with imposex. Exposure of snails to environmentally relevant concentrations of TBT (> or = 1.0 ng/L as tin) significantly increased the incidence of imposex. Total (free + esterified) testosterone levels in snails were not altered by TBT; however, free testosterone levels increased with increasing exposure concentration of TBT. TBT-exposed snails were given [14C]]testosterone to measure the production of [14C]testosterone-fatty acid esters. The production of testosterone-fatty acid esters decreased with increasing exposure concentration of TBT. These results indicate that TBT elevates free testosterone levels in snails by decreasing the production or retention of testosterone-fatty acid esters. These findings were confirmed among field-sampled snails where individuals collected from a high-tin-affected site exhibited a greater incidence of imposex, higher free testosterone levels, and lower testosterone-fatty acid ester levels when compared with individuals sampled from a low-tin-affected site. Decreased testosterone-fatty acid esterification among TBT-treated snails was not caused by direct inhibition of the acyl coenzyme A:testosterone acyltransferase (ATAT) enzyme responsible for testosterone esterification, nor by suppressed ATAT protein expression. The target of TBT may be a co-contributor to the testosterone fatty esterification process or a factor in the enhanced hydrolysis of the testosterone-fatty acid pool.

摘要

性畸变现象,即雌性雌雄异体蜗牛出现雄性性征,已在全球范围内得到记录,且与接触无处不在的环境污染物三丁基锡(TBT)存在因果关系。蜗牛体内睾酮水平升高也与TBT有关,并且已表明直接接触睾酮会导致性畸变。我们先前发现,泥螺(Ilyanassa obsoleta)会将过量的睾酮生物转化并主要以脂肪酸酯的形式保留。本研究的目的是确定TBT是否会干扰睾酮的酯化作用,从而导致与性畸变相关的游离(未酯化)睾酮水平升高。将蜗牛暴露于环境相关浓度的TBT(以锡计≥1.0 ng/L)会显著增加性畸变的发生率。TBT不会改变蜗牛体内总(游离+酯化)睾酮水平;然而,游离睾酮水平会随着TBT暴露浓度的增加而升高。给暴露于TBT的蜗牛注射[14C]睾酮,以测量[14C]睾酮-脂肪酸酯的生成。睾酮-脂肪酸酯的生成随着TBT暴露浓度的增加而减少。这些结果表明,TBT通过减少睾酮-脂肪酸酯的生成或保留来提高蜗牛体内的游离睾酮水平。在现场采集的蜗牛中也证实了这些发现,与从低锡污染地点采集的个体相比,从高锡污染地点采集的个体出现性畸变的发生率更高、游离睾酮水平更高,而睾酮-脂肪酸酯水平更低。TBT处理的蜗牛中睾酮-脂肪酸酯化作用降低并非由负责睾酮酯化的酰基辅酶A:睾酮酰基转移酶(ATAT)酶的直接抑制所致,也不是由ATAT蛋白表达受抑制所致。TBT的作用靶点可能是睾酮脂肪酸酯化过程的协同促进因子,或者是睾酮-脂肪酸池增强水解的一个因素。

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