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Wilson, Z. N.

Publications and source records attributed to Wilson, Z. N..

2 recordsLinked to original sources

Mitochondrial-Derived Compartments Remove Surplus Proteins from the Outer Mitochondrial Membrane

The outer mitochondrial membrane (OMM) creates a boundary that imports most of the mitochondrial proteome while removing extraneous or damaged proteins. How the OMM senses aberrant proteins and remodels to maintain OMM integrity remains unresolved. Previously, we identified a piecemeal autophagic mechanism called the mitochondrial-derived compartment (MDC) that removes a subset of the mitochondrial proteome. Here we show that MDCs specifically sequester proteins localized only at the OMM, providing an explanation for how select mitochondrial proteins are removed by MDCs. Remarkably, selective sorting into MDCs also occurs within the OMM, as subunits of the translocase of the outer membrane (TOM) complex are excluded from MDCs unless assembly of the TOM complex is impaired. Considering that overloading the OMM with mitochondrial membrane proteins or mistargeted tail-anchored membrane proteins induces MDCs to form and sequester these proteins, we propose that one functional role of MDCs is to create an OMM-enriched trap that segregates and sequesters excess proteins from the mitochondrial surface. SUMMARYWilson and colleagues observe that mitochondrial-derived compartments (MDCs) selectively incorporate proteins from only the outer mitochondrial membrane (OMM), and robustly sequester both excess and mistargeted proteins into this OMM-enriched domain, suggesting MDCs act to remove surplus hydrophobic cargo from mitochondria.

cell biology↗

Mitochondrial-Derived Compartments are Multilamellar Domains that Encase Membrane Cargo and Cytosol

Preserving the health of the mitochondrial network is critical to cell viability and longevity. To do so, mitochondria employ several membrane remodeling mechanisms, including the formation of mitochondrial-derived vesicles (MDVs) and compartments (MDCs) to selectively remove portions of the organelle. In contrast to well-characterized MDVs, the distinguishing features of MDC formation and composition remain unclear. Here we used electron tomography to observe that MDCs form as large, multilamellar domains that generate concentric spherical compartments emerging from mitochondrial tubules at ER-mitochondria contact sites. Time-lapse fluorescence microscopy of MDC biogenesis revealed that mitochondrial membrane extensions repeatedly elongate, coalesce, and invaginate to form these compartments that encase multiple layers of membrane. As such, MDCs strongly sequester portions of the outer mitochondrial membrane, securing membrane cargo into a protected domain, while also enclosing cytosolic material within the MDC lumen. Collectively, our results provide a model for MDC formation and describe key features that distinguish MDCs from other previously identified mitochondrial structures and cargo-sorting domains. SUMMARYWilson and colleagues use electron tomography and time-lapse fluorescence microscopy to observe that mitochondrial-derived compartments (MDCs) are generated from outer mitochondrial membrane extensions that repeatedly elongate, coalesce, and invaginate to secure membrane cargo and cytosol within a distinct, protected domain.

cell biology↗