Energetics of side-chain partitioning of β-signal residues in unassisted folding of a transmembrane β-barrel protein
نویسندگان
چکیده
The free energy of water-to-interface amino acid partitioning is a major contributing factor in membrane protein folding and stability. The interface residues at the C terminus of transmembrane β-barrels form the β-signal motif required for assisted β-barrel assembly in vivo but are believed to be less important for β-barrel assembly in vitro Here, we experimentally measured the thermodynamic contribution of all 20 amino acids at the β-signal motif to the unassisted folding of the model β-barrel protein PagP. We obtained the partitioning free energy for all 20 amino acids at the lipid-facing interface (ΔΔG0w,i(φ)) and the protein-facing interface (ΔΔG0w,i(π)) residues and found that hydrophobic amino acids are most favorably transferred to the lipid-facing interface, whereas charged and polar groups display the highest partitioning energy. Furthermore, the change in non-polar surface area correlated directly with the partitioning free energy for the lipid-facing residue and inversely with the protein-facing residue. We also demonstrate that the interface residues of the β-signal motif are vital for in vitro barrel assembly, because they exhibit a side chain-specific energetic contribution determined by the change in nonpolar accessible surface. We further establish that folding cooperativity and hydrophobic collapse are balanced at the membrane interface for optimal stability of the PagP β-barrel scaffold. We conclude that the PagP C-terminal β-signal motif influences the folding cooperativity and stability of the folded β-barrel and that the thermodynamic contributions of the lipid- and protein-facing residues in the transmembrane protein β-signal motif depend on the nature of the amino acid side chain.
منابع مشابه
Discrimination of β-Barrel Membrane Proteins Using Machine Learning Techniques
β-barrel membrane proteins (TMBs) perform a variety of functions in living organisms and these proteins contain β-strands as their membrane spanning segments. The membrane spanning segments of TMBs contain several charged and polar residues in contrast with a stretch of hydrophobic amino acid residues in transmembrane helical (TMH) proteins. Hence, most predictive schemes, which are successful ...
متن کاملBiogenesis and folding of β-barrel membrane proteins
β-barrel membrane proteins are composed of multiple antiparallel β-strands and form pores in the outer membranes of endosymbiotic organelles like mitochondria and the evolutionary related Gramnegative bacteria. These β-barrel channels are crucial for signal transduction, metabolite transport, and protein translocation. How are β-barrel membrane proteins assembled into the outer membrane? After ...
متن کاملStructural Determinants of Transmembrane β-Barrels.
The recognition of β-barrel membrane proteins based on their sequence is more challenging than the recognition of α-helical membrane proteins. This goal could benefit from a better understanding of the physical determinants of transmembrane β-barrel structure. To that end, we first extend the IMM1 implicit membrane model in a way that allows the modeling of membrane proteins with an internal aq...
متن کاملFactors Affecting the Folding of Pseudomonas aeruginosa OprF Porin into the One-Domain Open Conformer
Pseudomonas aeruginosa OprF is a largely monomeric outer membrane protein that allows the slow, nonspecific transmembrane diffusion of solutes. This protein folds into two different conformers, with the majority conformer folding into a two-domain conformation that has no porin activity and the minority conformer into a one-domain conformation with high porin activity and presumably consisting ...
متن کاملCorrect Folding of the β-Barrel of the Human Membrane Protein VDAC Requires a Lipid Bilayer
0022-2836/$ see front matter © 2007 E Spontaneous membrane insertion and folding of β-barrel membrane proteins from an unfolded state into lipid bilayers has been shown previously only for few outermembrane proteins of Gram-negative bacteria. Here we investigated membrane insertion and folding of a human membrane protein, the isoform 1 of the voltage-dependent anion-selective channel (hVDAC1) o...
متن کاملذخیره در منابع من
با ذخیره ی این منبع در منابع من، دسترسی به آن را برای استفاده های بعدی آسان تر کنید
عنوان ژورنال:
دوره 292 شماره
صفحات -
تاریخ انتشار 2017