Bioinformatique structuralevignette|262x262px| Structure tridimensionnelle d'une protéine La bioinformatique structurale est la branche de la bio-informatique liée à l'analyse et à la prédiction de la structure tridimensionnelle des macromolécules biologiques telles que les protéines, l'ARN et l'ADN. Elle traite des généralisations sur les structures tridimensionnelles des macromolécules, telles que les comparaisons des repliements globaux et des motifs locaux, les principes du repliement moléculaire, l'évolution, les interactions de liaison et les relations structure/fonction, en travaillant à la fois à partir de structures résolues expérimentalement et de modèles informatiques.
CASPCritical Assessment of Structure Prediction (CASP), sometimes called Critical Assessment of Protein Structure Prediction, is a community-wide, worldwide experiment for protein structure prediction taking place every two years since 1994. CASP provides research groups with an opportunity to objectively test their structure prediction methods and delivers an independent assessment of the state of the art in protein structure modeling to the research community and software users.
Structural genomicsStructural genomics seeks to describe the 3-dimensional structure of every protein encoded by a given genome. This genome-based approach allows for a high-throughput method of structure determination by a combination of experimental and modeling approaches. The principal difference between structural genomics and traditional structural prediction is that structural genomics attempts to determine the structure of every protein encoded by the genome, rather than focusing on one particular protein.
Transmission electron cryomicroscopyTransmission electron cryomicroscopy (CryoTEM), commonly known as cryo-EM, is a form of cryogenic electron microscopy, more specifically a type of transmission electron microscopy (TEM) where the sample is studied at cryogenic temperatures (generally liquid-nitrogen temperatures). Cryo-EM is gaining popularity in structural biology. The utility of transmission electron cryomicroscopy stems from the fact that it allows the observation of specimens that have not been stained or fixed in any way, showing them in their native environment.
Microscope électroniquethumb|Microscope électronique construit par Ernst Ruska en 1933.thumb|Collection de microscopes électroniques anciens (National Museum of Health & Medicine). Un microscope électronique (ME) est un type de microscope qui utilise un faisceau d'électrons pour illuminer un échantillon et en créer une très agrandie. Il est inventé en 1931 par des ingénieurs allemands. Les microscopes électroniques ont un pouvoir de résolution supérieur aux microscopes optiques qui utilisent des rayonnements électromagnétiques visibles.
Folding funnelThe folding funnel hypothesis is a specific version of the energy landscape theory of protein folding, which assumes that a protein's native state corresponds to its free energy minimum under the solution conditions usually encountered in cells. Although energy landscapes may be "rough", with many non-native local minima in which partially folded proteins can become trapped, the folding funnel hypothesis assumes that the native state is a deep free energy minimum with steep walls, corresponding to a single well-defined tertiary structure.