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雌激素化合物对人类精子的影响:与人类精子膜上雌激素非基因组受体相互作用的证据。

Effects of estrogenic compounds on human spermatozoa: evidence for interaction with a nongenomic receptor for estrogen on human sperm membrane.

作者信息

Luconi M, Bonaccorsi L, Forti G, Baldi E

机构信息

Dipartimento di Fisiopatologia Clinica, Unita' di Andrologia, Universita' di Firenze, viale Pieraccini, 6, 1-50139, Florence, Italy.

出版信息

Mol Cell Endocrinol. 2001 Jun 10;178(1-2):39-45. doi: 10.1016/s0303-7207(01)00416-6.

Abstract

Estrogens play an important role in the development and regulation of the male reproductive system. We have earlier shown that a nongenomic receptor for estradiol present on sperm plasma membrane mediates the effects exerted by this hormone on sperm intracellular calcium concentrations (Ca(2+)), as well as on the biological response to progesterone (P). In particular, 17 beta-estradiol (17betaE(2)) shows an inhibitory effect on P-mediated calcium influx and acrosome reaction (AR). In the present study, the effects of different anti-estrogens and xenoestrogens on Ca(2+) and AR stimulated by P have been investigated in human spermatozoa in order to better define the pharmacological characteristics of the sperm membrane estrogen receptor. The anti-estrogens tamoxifen (Tx) and ICI 164384 (ICI) induce only a slight increase of Ca(2+), which, however, as in the case of 17betaE(2), results in a reduction of P-stimulated calcium influx. Moreover, both the compounds reduce the calcium response to 17betaE(2) without affecting 17betaE(2)-inhibition of calcium response to P. Concerning AR, Tx alone does not alter either spontaneous or P-stimulated AR but partially revert the inhibitory effect of 17betaE(2). These results indicate that the two estrogens act as pharmacological agonists of the membrane estrogen receptors of human spermatozoa. On the other hand, the xenoestrogens bisphenol A (BPA) and octyiphenol polyethoxilate (OP) do not exert any direct effect on calcium fluxes and AR in human spermatozoa either in basal conditions or in response to P challenge. Moreover, although these environmental estrogens have been suggested to mimic estrogen effects in the other cell types, probably acting through genomic receptors, in human spermatozoa they do not interfere with 17betaE(2) binding to its membrane receptor and with the short-term effects exerted by this steroid. In conclusion, our data indicate that the membrane receptor for estradiol in human spermatozoa shows both biochemical and pharmacological differences respect to the genomic receptor.

摘要

雌激素在男性生殖系统的发育和调节中发挥着重要作用。我们之前已经表明,存在于精子质膜上的一种雌二醇非基因组受体介导了这种激素对精子细胞内钙浓度(Ca(2+))以及对孕酮(P)生物学反应的影响。特别是,17β-雌二醇(17βE(2))对P介导的钙内流和顶体反应(AR)具有抑制作用。在本研究中,为了更好地确定精子膜雌激素受体的药理学特性,研究了不同抗雌激素和外源性雌激素对人精子中由P刺激的Ca(2+)和AR的影响。抗雌激素他莫昔芬(Tx)和ICI 164384(ICI)仅引起Ca(2+)轻微增加,然而,与17βE(2)的情况一样,这导致P刺激的钙内流减少。此外,这两种化合物都降低了对17βE(2)的钙反应,而不影响17βE(2)对P钙反应抑制作用。关于AR,单独的Tx既不改变自发的也不改变P刺激的AR,但部分逆转了17βE(2)的抑制作用。这些结果表明,这两种雌激素作为人精子膜雌激素受体的药理学激动剂发挥作用。另一方面,外源性雌激素双酚A(BPA)和辛基酚聚乙氧基化物(OP)在基础条件下或对P刺激时对人精子中的钙通量和AR均无任何直接影响。此外,尽管这些环境雌激素被认为在其他细胞类型中模拟雌激素效应,可能通过基因组受体起作用,但在人精子中它们不干扰17βE(2)与其膜受体的结合以及该类固醇所产生的短期效应。总之,我们的数据表明,人精子中的雌二醇膜受体与基因组受体相比在生化和药理学方面均存在差异。

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