Cholesterol transport cycle of human ABCA2
Tan, S. M.; Schnelle, K.; Voskoboynikova, N.; Nowacki, M.; Esch, B. M.; Froehlich, F.; Holtmannspoetter, M.; Piehler, J.; Shvarev, D.; Parey, K.; Januliene, D.; Moeller, A.
Show abstract
Cholesterol is a key component of cellular membranes and is critical for brain function, particularly axon myelination. Among the 48 human ATP-binding cassette (ABC) transporters, ABCA2 exhibits the highest expression in the brain and is involved in cholesterol metabolism, primarily in oligodendrocytes. Notably, ABCA2 has been associated with myelin sheath integrity and maintenance, as well as Alzheimer's disease. Here, we report cryo-EM structures of human ABCA2 that reveal critical endogenous lipid-binding sites unique to ABCA2. Our five distinct conformations include a previously uncharacterized intermediate between the closed and apo states of ABCA subfamily transporters. Most importantly, we elucidated the cholesterol transport mechanism of ABCA2, which involves novel interdependent rotations of the exocytoplasmic domains (ECDs) and regulatory domains (RDs). Our structural findings provide a new perspective on ABCA transporter function and highlight the role of ABCA2 in facilitating efficient cholesterol recycling and transport in the brain.
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