Structural basis for the contribution of latent TGFβ binding protein to TGFβ latency and activation
Abstract
Abstract Transforming growth factor-β (TGFβ) is a potent cytokine that controls all aspects of cellular behavior. TGFβ is secreted in complex with its prodomain and latent TGFβ-binding protein-1 (LTBP1), forming the large latent complex (LLC), which through interaction with the extracellular matrix enables integrin-mediated activation. Although TGFβ structures are known, the influence of LTBP1 on the structure and activity of TGFβ is unknown. Here, we report the LLC cryo-EM structure comprising the LTBP1 eight-cysteine domain covalently bound to TGFβ, revealing a hydrophobic interface between TGFβ and LTBP1. Structure-guided mutagenesis shows that the interface is important for complex formation and TGFβ activity. Our structure supports a contralateral domain swapped architecture in the LLC, and simulations show that this architecture requires increased force to overcome barriers for integrin-mediated activation, while the covalent attachment of TGFβ to LTBP1 redistributes force to reduce unfolding barriers. These insights will be important for therapeutic strategies targeting TGFβ.
Article Details
Authors (12)
George R. Biggin
Matthew Snee
Yu-Bai Xiao
Catherine Smedley
Alan R. F. Godwin
Rana Dajani
Biology and Biotechnology Department, The Hashemite University, Zarqua, Jordan.
Holly L. Birchenough
Thomas A. Jowitt
Mark A. Travis
Alan M. Roseman
Anna Tarakanova
Clair Baldock