Wong Sara, Bertram Katherine R, Raghuram Nidhi, Knight Thomas, Hughes Adam L
Department of Biochemistry, University of Utah School of Medicine, Salt Lake City, UT 84112, USA.
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bioRxiv. 2025 Jan 23:2025.01.20.633997. doi: 10.1101/2025.01.20.633997.
Lipid saturation is a key determinant of membrane function and organelle health, with changes in saturation triggering adaptive quality control mechanisms to maintain membrane integrity. Among cellular membranes, the mitochondrial outer membrane (OMM) is an important interface for many cellular functions, but how lipid saturation impacts OMM function remains unclear. Here, we show that increased intracellular unsaturated fatty acids (UFAs) remodel the OMM by promoting the formation of multilamellar mitochondrial-derived compartments (MDCs), which sequester proteins and lipids from the OMM. These effects depend on the incorporation of UFAs into membrane phospholipids, suggesting that changes in membrane bilayer composition mediate this process. Furthermore, elevated UFAs impair the assembly of the OMM protein translocase (TOM) complex, with unassembled TOM components captured into MDCs. Collectively, these findings suggest that alterations in phospholipid saturation may destabilize OMM protein complexes and trigger an adaptive response to sequester excess membrane proteins through MDC formation.
脂质饱和度是膜功能和细胞器健康的关键决定因素,饱和度的变化会触发适应性质量控制机制以维持膜的完整性。在细胞膜中,线粒体外膜(OMM)是许多细胞功能的重要界面,但脂质饱和度如何影响OMM功能仍不清楚。在这里,我们表明细胞内不饱和脂肪酸(UFA)的增加通过促进多层线粒体衍生隔室(MDC)的形成来重塑OMM,MDC会隔离OMM中的蛋白质和脂质。这些效应取决于UFA掺入膜磷脂,表明膜双层组成的变化介导了这一过程。此外,升高的UFA会损害OMM蛋白转位酶(TOM)复合物的组装,未组装的TOM组分被捕获到MDC中。总的来说,这些发现表明磷脂饱和度的改变可能会破坏OMM蛋白复合物的稳定性,并触发一种适应性反应,通过形成MDC来隔离过量的膜蛋白。