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人血清和卵泡液中的卵泡抑素-激活素复合物在免疫学和生物化学方面存在差异。

Follistatin-activin complexes in human serum and follicular fluid differ immunologically and biochemically.

作者信息

Schneyer A L, Hall H A, Lambert-Messerlian G, Wang Q F, Sluss P, Crowley W F

机构信息

Reproductive Endocrine Unit, Massachusetts General Hospital, Boston 02214, USA.

出版信息

Endocrinology. 1996 Jan;137(1):240-7. doi: 10.1210/endo.137.1.8536619.

Abstract

Follistatin (FS) is the principle high affinity activin-binding protein in tissues such as the pituitary and ovary as well as in serum. In addition, the activin-binding peaks identified after gel filtration of serum or human follicular fluid (hFF) exhibited high affinity and low reversibility binding kinetics, with higher concentrations in hFF than serum. This extremely low reversibility was also observed for recombinant human follistatin 288 (rhFS288) under a variety of incubation conditions, further supporting the identification of the serum and hFF activin-binding proteins as FS. Using enhanced resolution gel filtration, immunoprecipitation with monoclonal antibodies to rhFS288, and sulfated carbohydrate binding, activin-FS complexes in hFF and serum differed. The activin-FS complex in hFF elutes at approximately 200-300 kDa, is immunoprecipitated by anti-hFS288 monoclonal antibodies, and binds to sulfate Cellufine matrix, all characteristics similar to those of recombinant human FS288. In contrast, the activin binding peak in human serum elutes at an apparent Mr of 60-70 kDa, is no precipitated by anti-rhFS288 monoclonal antibodies, and is weakly bound by sulfate Cellufine matrix, characteristics shared by rhFS315 conditioned medium. As the forms of FS that bind sulfate-containing matrices also bind to cell surface proteoglycans, the molecular differences reported here for serum and hFF activin-binding proteins have implications for potential tissue-specific forms of FS that may well have distinct biological functions.

摘要

卵泡抑素(FS)是垂体、卵巢等组织以及血清中主要的高亲和力激活素结合蛋白。此外,血清或人卵泡液(hFF)经凝胶过滤后鉴定出的激活素结合峰表现出高亲和力和低可逆性结合动力学,hFF中的浓度高于血清。在各种孵育条件下,重组人卵泡抑素288(rhFS288)也观察到这种极低的可逆性,进一步支持将血清和hFF激活素结合蛋白鉴定为FS。使用增强分辨率凝胶过滤、用抗rhFS288单克隆抗体进行免疫沉淀以及硫酸化碳水化合物结合,hFF和血清中的激活素-FS复合物有所不同。hFF中的激活素-FS复合物在约200 - 300 kDa处洗脱,可被抗hFS288单克隆抗体免疫沉淀,并与硫酸化Cellufine基质结合,所有这些特征均与重组人FS288相似。相比之下,人血清中的激活素结合峰在表观分子量60 - 70 kDa处洗脱,不被抗rhFS288单克隆抗体沉淀,且与硫酸化Cellufine基质弱结合,这些特征与rhFS315条件培养基相同。由于结合含硫酸基质的FS形式也与细胞表面蛋白聚糖结合,本文报道的血清和hFF激活素结合蛋白的分子差异可能意味着FS存在潜在的组织特异性形式,这些形式可能具有不同的生物学功能。

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