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肝素与激活素结合对卵泡抑素异构体功能的结构和生物物理偶联

Structural and biophysical coupling of heparin and activin binding to follistatin isoform functions.

作者信息

Lerch Thomas F, Shimasaki Shunichi, Woodruff Teresa K, Jardetzky Theodore S

机构信息

Department of Biochemistry, Molecular Biology and Cell Biology, Northwestern University, Evanston, Illinois 60208, USA.

出版信息

J Biol Chem. 2007 May 25;282(21):15930-9. doi: 10.1074/jbc.M700737200. Epub 2007 Apr 3.

Abstract

Follistatin (FS) regulates transforming growth factor-beta superfamily ligands and is necessary for normal embryonic and ovarian follicle development. Follistatin is expressed as two splice variants (FS288 and FS315). Previous studies indicated differences in heparin binding between FS288 and FS315, potentially influencing the physiological functions and locations of these isoforms. We have determined the structure of the FS315-activin A complex and quantitatively compared heparin binding by the two isoforms. The FS315 complex structure shows that both isoforms inhibit activin similarly, but FS315 exhibits movements within follistatin domain 3 (FSD3) apparently linked to binding of the C-terminal extension. Surprisingly, the binding affinities of FS288 and FS315 for heparin are similar at lower ionic strengths with FS315 binding decreasing more sharply as a function of salt concentration. When bound to activin, FS315 binds heparin similarly to the FS288 isoform, consistent with the structure of the complex, in which the acidic residues of the C-terminal extension cannot interact with the heparin-binding site. Activin-induced binding of heparin is unique to the FS315 isoform and may stimulate clearance of FS315 complexes.

摘要

卵泡抑素(FS)调节转化生长因子-β超家族配体,对正常胚胎和卵巢卵泡发育至关重要。卵泡抑素以两种剪接变体(FS288和FS315)的形式表达。先前的研究表明FS288和FS315之间在肝素结合方面存在差异,这可能会影响这些异构体的生理功能和定位。我们已经确定了FS315-激活素A复合物的结构,并对两种异构体的肝素结合进行了定量比较。FS315复合物结构表明,两种异构体对激活素的抑制作用相似,但FS315在卵泡抑素结构域3(FSD3)内表现出明显与C末端延伸结合相关的移动。令人惊讶的是,在较低离子强度下,FS288和FS315对肝素的结合亲和力相似,而FS315的结合随着盐浓度的增加下降得更急剧。当与激活素结合时,FS315与肝素的结合方式与FS288异构体相似,这与复合物的结构一致,其中C末端延伸的酸性残基无法与肝素结合位点相互作用。激活素诱导的肝素结合是FS315异构体所特有的,可能会刺激FS315复合物的清除。

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