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Biology subjects

Valimehr, S.

Publications and source records attributed to Valimehr, S..

3 recordsLinked to original sources

Whole cryo-FIB lamella acquisition at high magnification with rectangular beam montage cryo-electron tomography

The visualisation of large biological samples in cryo-electron tomography requires both few-nanometre resolution and a wide, ideally >10 micrometrre, field of view. For a single image, increasing magnification trades increased resolution for a smaller field of view. Montaging, where high-magnification images are stitched together to increase field of view, addresses the trade-off but is dose-inefficient with round beams that are standard in transmission electron microscopy (TEM), since this illumination shape does not tessellate. Our workflow greatly simplifies montaging schemes for dose-sensitive specimens, allowing large montages of any shape - from individual cells or other features of interest up to whole lamellae - to be collected at high resolution without compromising electron dose efficiency. We demonstrate the workflow by acquiring montage tomograms of whole yeast (Saccharomyces cerevisiae) cells in cryo-FIB lamellae and of human neurons.

biophysics↗

The trimeric structures of the extracellular domains of FAM171A1 and FAM171A2 neuronal proteins belong to a novel structural superfamily

Cell surface molecules play fundamental roles in cell-cell communication, attraction, or repulsion, and when expressed in neurons they are often implicated in neurological disorders. FAM171 is a family of three type-I transmembrane domain cell surface proteins (FAM171A1, FAM171A2, and FAM171B) expressed in several human tissues and especially enriched in the brain. Recent findings suggest that FAM171A1 transduces signals between the cell surface and the cytoskeleton. Genetic evidence links FAM171A1 to multiple cancers and FAM171A2 to neurodegenerative diseases, including Alzheimers and Parkinsons diseases. Despite multiple connections with severe human diseases, no information is currently available on their monomeric structure or oligomerization. Here we show that, structurally, the monomeric ectodomains of human FAM171A1 and FAM171A2 have a new architecture with a novel combination of two domains. Furthermore, their ectodomains oligomerize to form an equilateral trimer. In addition, the ectodomain of FAM171A1 has the propensity to form larger trimer-trimer assemblies at high concentrations. Together, these results provide novel insights into the structure and oligomerization of the extracellular domain of FAM171A1 and FAM171A2, suggesting important roles in ligand binding and signaling.

neuroscience↗

Near-atomic structure of the PorKN rings, disulfide bonded to PorG and bound to Attachment Complexes, provide mechanistic insights into the type IX secretion system

The Type IX Secretion System exports proteins across the outer membrane (OM) of bacteria in the Bacteroidota phylum, however, the mechanistic details remain unknown. Here, we present a [~]3.5[A] cryo-EM structure of the periplasmic rings comprising 32-33 subunits each of PorK and PorN. Additionally, we show the presence of a critical disulfide bond between PorK and the PorG OM protein that is essential for protein secretion and demonstrate that the Attachment Complexes bind to and are localized above the PorKN rings. Overall, each ring resembles a cogwheel with PorN forming cog-like projections on the periplasmic side and the flat surface of PorK orienting towards the OM. Given these results, we propose that the PorLM motor drives the rotation of the PorKN cogwheel together with PorG and associated Attachment Complexes, potentially providing the energy to complete protein secretion and the coordinated cell surface attachment of the secreted cargo.

microbiology↗