Abstract
TMEM120A, also named as TACAN, is a novel membrane protein highly conserved in vertebrates and was recently proposed to be a mechanosensitive channel involved in sensing mechanical pain. Here we present the single-particle cryogenic electron microscopy (cryo-EM) structure of human TMEM120A, which forms a tightly packed dimer with extensive interactions mediated by the N-terminal coiled coil domain (CCD), the C-terminal transmembrane domain (TMD), and the re-entrant loop between the two domains. The TMD of each TMEM120A subunit contains six transmembrane helices (TMs) and has no clear structural feature of a channel protein. Instead, the six TMs form an a-barrel with a deep pocket where a coenzyme A (CoA) molecule is bound. Intriguingly, some structural features of TMEM120A resemble those of elongase for very long-chain fatty acids (ELOVL) despite the low sequence homology between them, pointing to the possibility that TMEM120A may function as an enzyme for fatty acid metabolism, rather than a mechanosensitive channel.
Cite
CITATION STYLE
Xue, J., Han, Y., Baniasadi, H., Zeng, W., Pei, J., Grishin, N. V., … Jiang, Y. (2021). Tmem120a is a coenzyme a-binding membrane protein with structural similarities to elovl fatty acid elongase. ELife, 10. https://doi.org/10.7554/ELIFE.71220
Register to see more suggestions
Mendeley helps you to discover research relevant for your work.