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附睾蛋白:一种男性避孕的分子策略。

Eppin: a molecular strategy for male contraception.

作者信息

Wang Zengjun, Widgren E E, Richardson R T, Orand M G

机构信息

Department of Cell & Developmental Biology, University of North Carolina at Chapel Hill, Chapel Hill, North Carolina 27599, USA.

出版信息

Soc Reprod Fertil Suppl. 2007;65:535-42.

Abstract

New male contraceptives, both hormonal and non-hormonal, have many obstacles to overcome before they reach the market as a product. For hormonal contraceptives the long-term efficacy of oligospermia in a large population of unselected men remains to be determined. For nonhormonal contraception target selection remains a primary goal. Immunocontraception, which showed great promise for many years, has recently lost its appeal. Nevertheless, immunocontraception can be utilised as a strategy, particularly in primates, to discern the function of target molecules in the male. As an example, we discuss Eppin, an epididymal protease inhibitor that coats the surface of human spermatozoa. Because Eppin is predicted to be a serine protease inhibitor with chymotrypsin-like specificity and binds semenogelin, the natural substrate of PSA (prostate specific antigen, a serine protease), we investigated whether Eppin would modulate PSA activity and the hydrolysis of semenogelin. Additionally, because antibodies to Eppin provide contraception in male monkeys, we investigated whether antibodies to Eppin would inhibit the PSA hydrolysis of semenogelin. Eppin is a specific inhibitor of PSA activity that requires leucine 87, Eppin's P1 reactive site. Although Eppin modulates the hydrolysis of semenogelin by PSA, antibodies to Eppin do not inhibit PSA activity.

摘要

新型男性避孕药,包括激素类和非激素类,在作为一种产品推向市场之前,还有许多障碍需要克服。对于激素类避孕药而言,在大量未经挑选的男性中实现少精症的长期疗效仍有待确定。对于非激素类避孕方法,靶点选择仍然是首要目标。免疫避孕法多年来曾显示出巨大潜力,但最近已失去吸引力。尽管如此,免疫避孕法可作为一种策略加以利用,尤其是在灵长类动物中,以辨别雄性动物体内靶分子的功能。例如,我们讨论附睾蛋白酶抑制剂Eppin,它覆盖在人类精子表面。由于预计Eppin是一种具有胰凝乳蛋白酶样特异性的丝氨酸蛋白酶抑制剂,且能结合精液凝素(PSA(前列腺特异性抗原,一种丝氨酸蛋白酶)的天然底物),我们研究了Eppin是否会调节PSA活性以及精液凝素的水解。此外,由于针对Eppin的抗体可使雄性猴子避孕,我们研究了针对Eppin的抗体是否会抑制精液凝素的PSA水解。Eppin是PSA活性的特异性抑制剂,它需要亮氨酸87(Eppin的P1反应位点)。虽然Eppin可调节PSA对精液凝素的水解,但针对Eppin的抗体并不抑制PSA活性。

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