Back to Search
Start Over
Conformational switch of a flexible loop in human laminin receptor determines laminin-1 interaction
- Publication Year :
- 2012
-
Abstract
- The 37/67-kDa human laminin receptor (LamR) is a cell surface protein that interacts with molecules located in the extra-cellular matrix. In particular, interactions between LamR and laminins play a major role in mediating changes in the cellular environment that affect cell adhesion, neurite outgrowth, tumor growth and metastasis. The exact interaction mode of laminin-1 and LamR is not fully understood. Laminin-1 is thought to bind to LamR through interaction with the so-called peptide G (residues 161–180) and the C-terminal helix (residues 205–229). Here we performed 100-ns atomistic force field-based molecular dynamics simulations to explore the structure and dynamics of LamR related to laminin-1 interactions. Our main finding is that loop 188–197 in the C-terminal region is highly flexible. It undergoes a major change resulting in a conformational switch that partially solvent exposes the R180 residue in the final part of the G peptide. So, R180 could contribute to laminin-1 binding. Projection of the simulations along the first two principal components also confirms the importance of this conformational switch in the LamR. This may be a basic prerequisite to clarify the key structural determinants of the interaction of LamR with laminin-1.
- Subjects :
- Molecular dynamic
Neurite
Protein Conformation
Molecular Sequence Data
Biophysics
Membrane biology
Peptide
Biology
Molecular Dynamics Simulation
Receptors, Laminin
Molecular dynamics
Human laminin receptor
Laminin
Humans
Tumor growth
Amino Acid Sequence
Cell adhesion
Laminin receptor
chemistry.chemical_classification
Peptide G
General Medicine
Flexible loop
chemistry
Biochemistry
Laminin-1
biology.protein
Protein Binding
Subjects
Details
- Language :
- English
- Database :
- OpenAIRE
- Accession number :
- edsair.doi.dedup.....945849de583a0e45b3265db7327b03a6