Shape matters in protein mobility within membranes.
basic_science · Level V
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- Record sourced from PubMed, PMID 24706877.
- Also identified by DOI 10.1073/pnas.1321054111 and PMC identifier 3986167.
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Abstract
The lateral mobility of proteins within cell membranes is usually thought to be dependent on their size and modulated by local heterogeneities of the membrane. Experiments using single-particle tracking on reconstituted membranes demonstrate that protein diffusion is significantly influenced by the interplay of membrane curvature, membrane tension, and protein shape. We find that the curvature-coupled voltage-gated potassium channel (KvAP) undergoes a significant increase in protein mobility under tension, whereas the mobility of the curvature-neutral water channel aquaporin 0 (AQP0) is insensitive to it. Such observations are well explained in terms of an effective friction coefficient of the protein induced by the local membrane deformation.
Medical subject headings
- Cell Shape
- Membrane Proteins