SummaryFolding and trafficking of low-density lipoprotein receptor (LDLR) family members, which play essential roles in development and homeostasis, are mediated by specific chaperones. The Boca/Mesd chaperone family specifically promotes folding and trafficking of the YWTD β propeller-EGF domain pair found in the ectodomain of all LDLR members. Limited proteolysis, NMR spectroscopy, analytical ultracentrifugation, and X-ray crystallography were used to define a conserved core composed of a structured domain that is preceded by a disordered N-terminal region. High-resolution structures of the ordered domain were determined for homologous proteins from three metazoans. Seven independent protomers reveal a novel ferrodoxin-like superfamily fo...
The low-density lipoprotein (LDL) receptor plays a central rule in mammalian cholesterol metabolism,...
AbstractThe human LDL receptor (LDLR) has a binding domain which consists of seven contiguous ligand...
Funding Information: We thank Dr. William J. Griffiths for mass spectrometric analysis; Dr. Andrei K...
SummaryMesoderm development (MESD) is a 224 amino acid mouse protein that acts as a molecular chaper...
AbstractLow-density-lipoprotein (LDL) receptor family members control diverse developmental and phys...
SummaryHow the endoplasmic reticulum (ER) folding machinery coordinates general and specialized chap...
Die Familie der ``Low Density Lipoprotein Receptors''(LDLR) ist an einer Vielzahl physiologisch bede...
The low density lipoprotein receptor (LDLr) is a complex multi-domain protein that is involved in th...
AbstractBackground: From the observed structure and sequence of a pair of calcium binding (cb) epide...
Hepatic abundance of the low-density lipoprotein receptor (LDLR) is a critical determinant of circul...
The Low-density lipoprotein receptor-Related Protein (LRP) family members are essential for diverse ...
AbstractLow density lipoprotein receptor domains (LDLrs) represent a large cell surface receptor sup...
SummaryApolipoprotein E receptor 2 (ApoER2) and very-low-density lipoprotein receptor, members of th...
BACKGROUND: From the observed structure and sequence of a pair of calcium binding (cb) epidermal gro...
The ligand-binding region of the low-density lipoprotein (LDL) receptor is formed by seven N-termina...
The low-density lipoprotein (LDL) receptor plays a central rule in mammalian cholesterol metabolism,...
AbstractThe human LDL receptor (LDLR) has a binding domain which consists of seven contiguous ligand...
Funding Information: We thank Dr. William J. Griffiths for mass spectrometric analysis; Dr. Andrei K...
SummaryMesoderm development (MESD) is a 224 amino acid mouse protein that acts as a molecular chaper...
AbstractLow-density-lipoprotein (LDL) receptor family members control diverse developmental and phys...
SummaryHow the endoplasmic reticulum (ER) folding machinery coordinates general and specialized chap...
Die Familie der ``Low Density Lipoprotein Receptors''(LDLR) ist an einer Vielzahl physiologisch bede...
The low density lipoprotein receptor (LDLr) is a complex multi-domain protein that is involved in th...
AbstractBackground: From the observed structure and sequence of a pair of calcium binding (cb) epide...
Hepatic abundance of the low-density lipoprotein receptor (LDLR) is a critical determinant of circul...
The Low-density lipoprotein receptor-Related Protein (LRP) family members are essential for diverse ...
AbstractLow density lipoprotein receptor domains (LDLrs) represent a large cell surface receptor sup...
SummaryApolipoprotein E receptor 2 (ApoER2) and very-low-density lipoprotein receptor, members of th...
BACKGROUND: From the observed structure and sequence of a pair of calcium binding (cb) epidermal gro...
The ligand-binding region of the low-density lipoprotein (LDL) receptor is formed by seven N-termina...
The low-density lipoprotein (LDL) receptor plays a central rule in mammalian cholesterol metabolism,...
AbstractThe human LDL receptor (LDLR) has a binding domain which consists of seven contiguous ligand...
Funding Information: We thank Dr. William J. Griffiths for mass spectrometric analysis; Dr. Andrei K...