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Keyword
- APOA11
- apolipoprotein A-I1
- ATP binding cassette transporter ABCA11
- baby hamster kidney1
- BHK1
- cholate dialysis1
- cholesterol efflux1
- Cys1
- cysteine1
- dimyristoylphosphatidylcholine1
- DMPC1
- double belt model1
- electron microscopy1
- EM1
- high-density lipoprotein1
- lecithin:cholesterol acyltransferase1
- multilamellar vesicles1
- PAGGE1
- polyacrylamide gradient gel electrophoresis1
- reconstituted HDL1
- rHDL1
- spontaneous phospholipid microsolubilization1
Regular Research Articles
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- Research ArticleOpen Access
Conformational flexibility of apolipoprotein A-I amino- and carboxy-termini is necessary for lipid binding but not cholesterol efflux
Journal of Lipid ResearchVol. 63Issue 3100168Published online: January 17, 2022- Shimpi Bedi
- Jamie Morris
- Amy Shah
- Rachel C. Hart
- W. Gray Jerome
- Stephen G. Aller
- and others
Cited in Scopus: 2Because of its critical role in HDL formation, significant efforts have been devoted to studying apolipoprotein A-I (APOA1) structural transitions in response to lipid binding. To assess the requirements for the conformational freedom of its termini during HDL particle formation, we generated three dimeric APOA1 molecules with their termini covalently joined in different combinations. The dimeric (d)-APOA1C-N mutant coupled the C-terminus of one APOA1 molecule to the N-terminus of a second with a short alanine linker, whereas the d-APOA1C-C and d-APOA1N-N mutants coupled the C-termini and the N-termini of two APOA1 molecules, respectively, using introduced cysteine residues to form disulfide linkages.