SummaryThe fibrillins and latent transforming growth factor-β binding proteins (LTBPs) form a superfamily of structurally-related proteins consisting of calcium-binding epidermal growth factor-like (cbEGF) domains interspersed with 8-cysteine-containing transforming growth factor β-binding protein-like (TB) and hybrid (hyb) domains. Fibrillins are the major components of the extracellular 10–12 nm diameter microfibrils, which mediate a variety of cell-matrix interactions. Here we present the crystal structure of a fibrillin-1 cbEGF9-hyb2-cbEGF10 fragment, solved to 1.8 Å resolution. The hybrid domain fold is similar, but not identical, to the TB domain fold seen in previous fibrillin-1 and LTBP-1 fragments. Pairwise interactions with neighb...
Fibrillins are modular, disulphide-rich glycoproteins that assemble into microfibrils in the extrace...
Force-bearing tissues such as blood vessels, lungs, and ligaments depend on the properties of elasti...
Force-bearing tissues such as blood vessels, lungs, and ligaments depend on the properties of elasti...
SummaryThe fibrillins and latent transforming growth factor-β binding proteins (LTBPs) form a superf...
The fibrillins and latent transforming growth factor-beta binding proteins (LTBPs) form a superfamil...
Jensen et al. report the crystal structure of a human fibrillin-1 hybrid domain in this issue of Str...
AbstractHuman fibrillin-1, the major structural protein of extracellular matrix (ECM) 10–12 nm micro...
AbstractHuman fibrillin-1, the major structural protein of extracellular matrix (ECM) 10–12 nm micro...
Human fibrillin-1, the major structural protein of extracellular matrix (ECM) 10-12 nm microfibrils,...
Human fibrillin-1, the major structural protein of extracellular matrix (ECM) 10-12 nm microfibrils,...
The calcium-binding epidermal growth factor-like (cbEGF) domain is a common structural motif in extr...
The calcium-binding epidermal growth factor-like (cbEGF) domain is a common structural motif in extr...
Force-bearing tissues such as blood vessels, lungs, and ligaments depend on the properties of elasti...
SummaryThe human extracellular matrix glycoprotein fibrillin-1 is the primary component of the 10- t...
Fibrillin-1 is a large extracellular matrix glycoprotein which assembles to form 10-12 nm microfibri...
Fibrillins are modular, disulphide-rich glycoproteins that assemble into microfibrils in the extrace...
Force-bearing tissues such as blood vessels, lungs, and ligaments depend on the properties of elasti...
Force-bearing tissues such as blood vessels, lungs, and ligaments depend on the properties of elasti...
SummaryThe fibrillins and latent transforming growth factor-β binding proteins (LTBPs) form a superf...
The fibrillins and latent transforming growth factor-beta binding proteins (LTBPs) form a superfamil...
Jensen et al. report the crystal structure of a human fibrillin-1 hybrid domain in this issue of Str...
AbstractHuman fibrillin-1, the major structural protein of extracellular matrix (ECM) 10–12 nm micro...
AbstractHuman fibrillin-1, the major structural protein of extracellular matrix (ECM) 10–12 nm micro...
Human fibrillin-1, the major structural protein of extracellular matrix (ECM) 10-12 nm microfibrils,...
Human fibrillin-1, the major structural protein of extracellular matrix (ECM) 10-12 nm microfibrils,...
The calcium-binding epidermal growth factor-like (cbEGF) domain is a common structural motif in extr...
The calcium-binding epidermal growth factor-like (cbEGF) domain is a common structural motif in extr...
Force-bearing tissues such as blood vessels, lungs, and ligaments depend on the properties of elasti...
SummaryThe human extracellular matrix glycoprotein fibrillin-1 is the primary component of the 10- t...
Fibrillin-1 is a large extracellular matrix glycoprotein which assembles to form 10-12 nm microfibri...
Fibrillins are modular, disulphide-rich glycoproteins that assemble into microfibrils in the extrace...
Force-bearing tissues such as blood vessels, lungs, and ligaments depend on the properties of elasti...
Force-bearing tissues such as blood vessels, lungs, and ligaments depend on the properties of elasti...