SH2, SH3 and PDZ domains are major protein–protein interaction domains. Learn how they recognize phosphotyrosine, proline-rich and C-terminal motifs to organize cellular signaling complexes.
Protein–protein interaction domains allow proteins to recognize and bind specific partners. Explore SH2, SH3 and PDZ domains, interaction motifs, coiled-coils, signaling and protein complex formation.
Homodimers contain two copies of the same protein, while heterodimers contain two different protein subunits. Learn how both types of dimers regulate protein structure and function.
Homodimers contain two copies of the same protein, while heterodimers contain two different protein subunits. Learn how both types of dimers regulate protein structure and function.
Protein oligomerization is the assembly of multiple protein molecules into functional complexes. Explore homo- and hetero-oligomers, molecular interfaces, protein stability, signaling, enzymes and cellular organization.
Protein dimerization is the association of two protein molecules to form a functional dimer. Explore homodimers, heterodimers, interaction interfaces, coiled-coils and roles in cellular regulation.
SH2, SH3 and PDZ domains are major protein–protein interaction domains. Learn how they recognize phosphotyrosine, proline-rich and C-terminal motifs to organize cellular signaling complexes.
Protein–protein interaction domains allow proteins to recognize and bind specific partners. Explore SH2, SH3 and PDZ domains, interaction motifs, coiled-coils, signaling and protein complex formation.
Homodimers contain two copies of the same protein, while heterodimers contain two different protein subunits. Learn how both types of dimers regulate protein structure and function.
Homodimers contain two copies of the same protein, while heterodimers contain two different protein subunits. Learn how both types of dimers regulate protein structure and function.
Protein oligomerization is the assembly of multiple protein molecules into functional complexes. Explore homo- and hetero-oligomers, molecular interfaces, protein stability, signaling, enzymes and cellular organization.
Protein dimerization is the association of two protein molecules to form a functional dimer. Explore homodimers, heterodimers, interaction interfaces, coiled-coils and roles in cellular regulation.