TY - JOUR
T1 - Alanine Scanning to Define Membrane Protein-Lipid Interaction Sites Using Native Mass Spectrometry
AU - Jayasekera, Hiruni S.
AU - Mohona, Farhana Afrin
AU - De Jesus, Madison J.
AU - Miller, Katherine M.
AU - Marty, Michael T.
N1 - Publisher Copyright:
© 2025 American Chemical Society.
PY - 2025/3/18
Y1 - 2025/3/18
N2 - Lipids surrounding membrane proteins interact with different sites on the protein with varying specificities, ranging from highly specific to weak interactions. These interactions can modulate the structure, function, and stability of membrane proteins. Thus, to better understand membrane protein structure and function, it is important to identify the locations of lipid binding and the relative specificities of lipid binding at these sites. In our previous native mass spectrometry (MS) study, we developed a single and double mutant analysis approach to profile the contribution of specific residues toward lipid binding. Here, we extend this method by screening a broad range of mutants of AqpZ to identify specific lipid binding sites and by measuring binding of different lipid types to measure the selectivity of different lipids at selected binding sites. We complemented these native MS studies with molecular dynamics (MD) simulations to visualize lipid interactions at selected sites. We discovered that AqpZ is selective toward cardiolipins (CL) but only at specific sites. Specifically, CL orients with its headgroup facing the cytoplasmic side, and its acyl chains interact with a hydrophobic pocket located at the monomeric interface within the lipid bilayer. Overall, this integrative approach provides unique insights into lipid binding sites and the selectivity of various lipids toward AqpZ, enabling us to map the AqpZ protein structure based on the lipid affinity.
AB - Lipids surrounding membrane proteins interact with different sites on the protein with varying specificities, ranging from highly specific to weak interactions. These interactions can modulate the structure, function, and stability of membrane proteins. Thus, to better understand membrane protein structure and function, it is important to identify the locations of lipid binding and the relative specificities of lipid binding at these sites. In our previous native mass spectrometry (MS) study, we developed a single and double mutant analysis approach to profile the contribution of specific residues toward lipid binding. Here, we extend this method by screening a broad range of mutants of AqpZ to identify specific lipid binding sites and by measuring binding of different lipid types to measure the selectivity of different lipids at selected binding sites. We complemented these native MS studies with molecular dynamics (MD) simulations to visualize lipid interactions at selected sites. We discovered that AqpZ is selective toward cardiolipins (CL) but only at specific sites. Specifically, CL orients with its headgroup facing the cytoplasmic side, and its acyl chains interact with a hydrophobic pocket located at the monomeric interface within the lipid bilayer. Overall, this integrative approach provides unique insights into lipid binding sites and the selectivity of various lipids toward AqpZ, enabling us to map the AqpZ protein structure based on the lipid affinity.
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U2 - 10.1021/acs.biochem.4c00717
DO - 10.1021/acs.biochem.4c00717
M3 - Article
C2 - 40047061
AN - SCOPUS:86000491584
SN - 0006-2960
VL - 64
SP - 1308
EP - 1316
JO - Biochemistry
JF - Biochemistry
IS - 6
ER -