| Literature DB >> 31235958 |
Gareth W Hughes1, Stephen C L Hall1, Claire S Laxton2, Pooja Sridhar1, Amirul H Mahadi1, Caitlin Hatton3, Thomas J Piggot4,5, Peter J Wotherspoon1, Aneika C Leney1, Douglas G Ward6, Mohammed Jamshad7, Vaclav Spana1, Ian T Cadby1, Christopher Harding1, Georgia L Isom8, Jack A Bryant1, Rebecca J Parr1, Yasin Yakub1, Mark Jeeves6, Damon Huber7, Ian R Henderson9, Luke A Clifton10, Andrew L Lovering1, Timothy J Knowles11.
Abstract
The Mla pathway is believed to be involved in maintaining the asymmetrical Gram-negative outer membrane via retrograde phospholipid transport. The pathway is composed of three components: the outer membrane MlaA-OmpC/F complex, a soluble periplasmic protein, MlaC, and the inner membrane ATPase, MlaFEDB complex. Here, we solve the crystal structure of MlaC in its phospholipid-free closed apo conformation, revealing a pivoting β-sheet mechanism that functions to open and close the phospholipid-binding pocket. Using the apo form of MlaC, we provide evidence that the inner-membrane MlaFEDB machinery exports phospholipids to MlaC in the periplasm. Furthermore, we confirm that the phospholipid export process occurs through the MlaD component of the MlaFEDB complex and that this process is independent of ATP. Our data provide evidence of an apparatus for lipid export away from the inner membrane and suggest that the Mla pathway may have a role in anterograde phospholipid transport.Entities:
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Year: 2019 PMID: 31235958 DOI: 10.1038/s41564-019-0481-y
Source DB: PubMed Journal: Nat Microbiol ISSN: 2058-5276 Impact factor: 17.745