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Garcia-Giner, V.

Publications and source records attributed to Garcia-Giner, V..

2 recordsLinked to original sources

Interleaved multi-magnification cryo-electron tomography bridges cellular and structural biology

Cryo-electron tomography (cryo-ET) enables in situ structural analysis of macromolecular complexes within native cellular environments. However, the limited field of view required for high-resolution structure determination necessarily restricts a wider assessment of the broader cellular context. We present a multi-magnification cryo-ET acquisition strategy that integrates low- and high-magnification information from coincident sample regions during the same tilt-series. By interleaving acquisition of the magnifications at each tilt angle, this strategy enables simultaneous collection of large field-of-view, low-resolution tomograms and high-resolution, small field-of-view tomograms while minimising the impact of the increased electron dose. We demonstrate that we can capture cellular organisation across tens of microns, while still enabling subtomogram averaging to resolutions below 4 [A]. This integrated acquisition framework establishes a practical route to multi-scale cryo-ET, bridging molecular and cellular scales for more comprehensive biological insight.

biochemistry↗

Early HIV-1 maturation drives Env clustering and fusion competence

Human immunodeficiency virus type 1 (HIV-1) particles are initially released from the cell in an immature state that cannot cause infection. The proteolytic processing of the Gag structural polyprotein into its individual components triggers a dramatic structural reorganisation that produces fully mature and infectious virions. HIV-1 maturation remodels the Gag lattice to enable membrane fusion, but how early proteolytic steps regulate the envelope glycoprotein (Env) organisation is unknown. Although cryo-electron tomography has defined structural intermediates of maturation, it has not resolved how Env conformers relate to specific early maturation states. Here, we show that partial Gag cleavage, prior to capsid formation, allosterically reorganises the membrane-proximal lattice, promoting Env clustering and fusion-competent conformations. Using native virus preparations combined with cryogenic fluorescence-lifetime imaging correlated to cryo-electron tomography, we map Env conformational signatures onto defined Gag-processing intermediates. This reveals an unrecognised early maturation stage in which incomplete Gag processing primes Env for entry, shifting current models by positioning functional Env activation upstream of core maturation. These results establish that early lattice remodelling is a key determinant of HIV-1 fusion competence and expose a previously inaccessible, intervention-sensitive step with implications for therapeutic and vaccine strategies targeting maturation-entry coupling.

microbiology↗