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Energetics of membrane protein folding.
Annual Review of Biophysics, 2014Fundamental to the central goals of structural biology is knowledge of the energetics of molecular interactions. Because membrane proteins reside in a free energy minimum dictated by their sequences, their lipid environment, and water, one must ...
K. Fleming
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Membrane phosphoinositides and protein–membrane interactions [PDF]
Proteins with polybasic clusters bind to negatively charged phosphoinositides at the cell membrane. In this review, I have briefly discussed the types of phosphoinositides naturally found on membrane surfaces and how they recruit protein complexes for carrying out the process of signal transduction.
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Regulation of membrane protein transport by ubiquitin and ubiquitin-binding proteins.
Annual Review of Cell and Developmental Biology, 2003Ubiquitin regulates protein transport between membrane compartments by serving as a sorting signal on protein cargo and by controlling the activity of trafficking machinery.
L. Hicke, R. Dunn
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Lipid Membranes for Membrane Proteins
2014The molecular dynamics (MD) simulation of membrane proteins requires the setup of an accurate representation of lipid bilayers. This chapter describes the setup of a lipid bilayer system from scratch using generally available tools, starting with a definition of the lipid molecule POPE, generation of a lipid bilayer, energy minimization, MD simulation,
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1992
MCP serves to down-regulate the activation of complement on host tissue. It performs this function by serving as a cofactor for the factor I-mediated cleavage of C3b and C4b. MCP is most likely an intrinsic regulator, i.e., it primarily protects its home cell.
M K Liszewski, John P. Atkinson
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MCP serves to down-regulate the activation of complement on host tissue. It performs this function by serving as a cofactor for the factor I-mediated cleavage of C3b and C4b. MCP is most likely an intrinsic regulator, i.e., it primarily protects its home cell.
M K Liszewski, John P. Atkinson
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Microseparation of membrane proteins [PDF]
AbstractMembrane proteins are generally of natural low abundance and insoluble to aqueous solutions. Thus, investigation of membrane proteins is relatively hampered since efficient separation of membrane proteins are rather challenging. Microseparation approaches certainly play an essential role in fulfilling such demanding investigations due to their ...
Xiaojun Feng+4 more
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Protein-Protein Interactions in Membranes
Protein & Peptide Letters, 2011In this article we review the current status of our understanding of membrane mediated interactions from theory and experiment. Phenomenological mean field and molecular models will be discussed and compared to recent experimental results from dynamical neutron scattering and atomic force microscopy.
Armstrong, C.L.+2 more
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The mechanisms of integral membrane protein biogenesis
Nature reviews. Molecular cell biology, 2021R. Hegde, R. Keenan
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Analytical Biochemistry, 1994
Blue native Electrophoresis is a "charge shift" method developed for isolation of native membrane protein complexes from biological membranes that also separates both acidic and basic water-soluble proteins at a fixed pH of 7.5.
H. Schägger, W. Cramer, G. von Jagow
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Blue native Electrophoresis is a "charge shift" method developed for isolation of native membrane protein complexes from biological membranes that also separates both acidic and basic water-soluble proteins at a fixed pH of 7.5.
H. Schägger, W. Cramer, G. von Jagow
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Spin Labeling of Membranes and Membrane Proteins [PDF]
Electron spin resonance (ESR) or electron paramagnetic resonance (EPR) has improved during the last 20 years to a powerful technique to derive structural and dynamic information about membranes and membrane components. The source of an ESR signal is an unpaired electron, which may exist intrinsically in a metalloprotein (e.g., cytochrome c oxidase) or ...
A. Azzi, S. Feuerstein-Thelen, R. Bolli
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