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类胶原裂解通过为前复合物的解离做准备来激活潜伏的 GDF8。

Tolloid cleavage activates latent GDF8 by priming the pro-complex for dissociation.

机构信息

Program in Cellular and Molecular Medicine, Boston Children's Hospital, Boston, MA, USA.

Department of Biological Chemistry and Molecular Pharmacology, Harvard Medical School, Boston, MA, USA.

出版信息

EMBO J. 2018 Feb 1;37(3):384-397. doi: 10.15252/embj.201797931. Epub 2018 Jan 17.

Abstract

Growth differentiation factor 8 (GDF8)/myostatin is a latent TGF-β family member that potently inhibits skeletal muscle growth. Here, we compared the conformation and dynamics of precursor, latent, and Tolloid-cleaved GDF8 pro-complexes to understand structural mechanisms underlying latency and activation of GDF8. Negative stain electron microscopy (EM) of precursor and latent pro-complexes reveals a V-shaped conformation that is unaltered by furin cleavage and sharply contrasts with the ring-like, cross-armed conformation of latent TGF-β1. Surprisingly, Tolloid-cleaved GDF8 does not immediately dissociate, but in EM exhibits structural heterogeneity consistent with partial dissociation. Hydrogen-deuterium exchange was not affected by furin cleavage. In contrast, Tolloid cleavage, in the absence of prodomain-growth factor dissociation, increased exchange in regions that correspond in pro-TGF-β1 to the α1-helix, latency lasso, and β1-strand in the prodomain and to the β6'- and β7'-strands in the growth factor. Thus, these regions are important in maintaining GDF8 latency. Our results show that Tolloid cleavage activates latent GDF8 by destabilizing specific prodomain-growth factor interfaces and primes the growth factor for release from the prodomain.

摘要

生长分化因子 8(GDF8)/肌肉生长抑制素是潜在的 TGF-β家族成员,能够强烈抑制骨骼肌生长。在这里,我们比较了前体、潜伏和 Tlloid 切割 GDF8 前复合物的构象和动力学,以了解 GDF8 潜伏和激活的结构机制。前体和潜伏前复合物的负染色电子显微镜(EM)显示出 V 形构象,不受 furin 切割的影响,与潜伏 TGF-β1 的环状、交叉臂构象形成鲜明对比。令人惊讶的是,Tlloid 切割的 GDF8 不会立即解离,而是在 EM 中表现出与部分解离一致的结构异质性。氘氢交换不受 furin 切割的影响。相比之下,在没有前导肽-生长因子解离的情况下,Tlloid 切割增加了与 pro-TGF-β1 中的α1-螺旋、潜伏套索和前导肽中的β1-链以及生长因子中的β6'-和β7'-链相对应的区域的交换。因此,这些区域在维持 GDF8 潜伏中很重要。我们的结果表明,Tlloid 切割通过破坏特定的前导肽-生长因子界面来激活潜伏的 GDF8,并为生长因子从前导肽中释放做好准备。

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