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Article Structure and functionality of a multimeric human COQ7:COQ9 complex

Manicki, Mateusz
•
Aydin, Halil
•
Abriata, Luciano A.
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November 17, 2022
Molecular Cell

Coenzyme Q (CoQ) is a redox-active lipid essential for core metabolic pathways and antioxidant defense. CoQ is synthesized upon the mitochondrial inner membrane by an ill-defined "complex Q" metabolon. Here, we present structure-function analyses of a lipid-, substrate-, and NADH-bound complex comprising two complex Q subunits: the hydroxylase COQ7 and the lipid-binding protein COQ9. We reveal that COQ7 adopts a ferritin-like fold with a hydrophobic channel whose substrate-binding capacity is enhanced by COQ9. Using molecular dynamics, we further show that two COQ7:COQ9 heterodimers form a curved tetramer that deforms the membrane, potentially opening a pathway for the CoQ intermediates to translocate from the bilayer to the proteins' lipid-binding sites. Two such tetramers assemble into a soluble octamer with a pseudo-bilayer of lipids captured within. Together, these observations indicate that COQ7 and COQ9 coop-erate to access hydrophobic precursors within the membrane and coordinate subsequent synthesis steps toward producing CoQ.

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Type
research article
DOI
10.1016/j.molcel.2022.10.003
Web of Science ID

WOS:000919687000001

Author(s)
Manicki, Mateusz
Aydin, Halil
Abriata, Luciano A.
Overmyer, Katherine A.
Guerra, Rachel M.
Coon, Joshua J.
Dal Peraro, Matteo  
Frost, Adam
Pagliarini, David J.
Date Issued

2022-11-17

Publisher

CELL PRESS

Published in
Molecular Cell
Volume

82

Issue

22

Start page

4307

End page
Subjects

Biochemistry & Molecular Biology

•

Cell Biology

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
UPDALPE  
Available on Infoscience
February 27, 2023
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/195298
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