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