Glycan-protein interactionsGlycan-Protein interactions represent a class of biomolecular interactions that occur between free or protein-bound glycans and their cognate binding partners. Intramolecular glycan-protein (protein-glycan) interactions occur between glycans and proteins that they are covalently attached to. Together with protein-protein interactions, they form a mechanistic basis for many essential cell processes, especially for cell-cell interactions and host-cell interactions.
Nucleic acid double helixIn molecular biology, the term double helix refers to the structure formed by double-stranded molecules of nucleic acids such as DNA. The double helical structure of a nucleic acid complex arises as a consequence of its secondary structure, and is a fundamental component in determining its tertiary structure. The term entered popular culture with the publication in 1968 of The Double Helix: A Personal Account of the Discovery of the Structure of DNA by James Watson.
Protein–lipid interactionProtein–lipid interaction is the influence of membrane proteins on the lipid physical state or vice versa.
Protéine globulaireLes protéines globulaires ou sphéroprotéines constituent l'une des trois principales classes de protéines à côté des protéines fibreuses et des protéines membranaires. vignette|Structure de l'hémoglobine, une protéine globulaire de la famille des globines Elles ont un rapport axial inférieur à 10, ce sont donc des sphéroïdes. Elles sont solubles dans l'eau grâce à leurs nombreux groupements hydroxyles pouvant lier leur H avec l'O de l'eau en formant une liaison hydrogène.
Domaine protéiqueredresse=1.15|vignette|Exemples de structures de protéines organisées en domaines distincts. Le domaine de couleur brique, appelé domaine PH, est commun aux deux protéines,. Sa fonction est de fixer le phosphatidylinositol-3,4,5-trisphosphate (PIP3) Un domaine protéique est une partie d'une protéine capable d'adopter une structure de manière autonome ou partiellement autonome du reste de la molécule. C'est un élément modulaire de la structure des protéines qui peuvent ainsi être composées de l'assemblage de plusieurs de ces domaines.
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.
Short linear motifIn molecular biology short linear motifs (SLiMs), linear motifs or minimotifs are short stretches of protein sequence that mediate protein–protein interaction. The first definition was given by Tim Hunt: "The sequences of many proteins contain short, conserved motifs that are involved in recognition and targeting activities, often separate from other functional properties of the molecule in which they occur. These motifs are linear, in the sense that three-dimensional organization is not required to bring distant segments of the molecule together to make the recognizable unit.
Nanomachinevignette|Schéma du de Richard Feynman. Les nanomachines, appelées également machines moléculaires, sont de minuscules machines composées d'assemblages moléculaires dont au moins deux parties sont reliées par un lien mécanique et qui peuvent être animées de mouvements sous l'action d'un stimulus externe. Leur taille est de l'ordre du nanomètre et leur synthèse nécessite parfois un nombre important de réactions chimiques. Elles travaillent directement sur les atomes ou les molécules.
Histone acetylation and deacetylationHistone acetylation and deacetylation are the processes by which the lysine residues within the N-terminal tail protruding from the histone core of the nucleosome are acetylated and deacetylated as part of gene regulation. Histone acetylation and deacetylation are essential parts of gene regulation. These reactions are typically catalysed by enzymes with "histone acetyltransferase" (HAT) or "histone deacetylase" (HDAC) activity. Acetylation is the process where an acetyl functional group is transferred from one molecule (in this case, acetyl coenzyme A) to another.
Nucleic acid structureNucleic acid structure refers to the structure of nucleic acids such as DNA and RNA. Chemically speaking, DNA and RNA are very similar. Nucleic acid structure is often divided into four different levels: primary, secondary, tertiary, and quaternary. Nucleic acid sequence Primary structure consists of a linear sequence of nucleotides that are linked together by phosphodiester bond. It is this linear sequence of nucleotides that make up the primary structure of DNA or RNA.