Disorder-to-order transitions allow intrinsically disordered protein regions to become structured during binding. Explore their mechanisms and roles in molecular recognition, signaling and regulation.
Intrinsically disordered regions (IDRs) are flexible protein regions that regulate protein interactions, signaling, modification, degradation and biomolecular organization. Learn how IDRs function in cellular regulation.
Short linear motifs (SLiMs) are small sequence elements that regulate protein–protein interactions, signaling, localization and protein degradation. Learn how SLiMs work and why they are important in cellular regulation.
Disorder-to-order transitions allow intrinsically disordered protein regions to become structured during binding. Explore their mechanisms and roles in molecular recognition, signaling and regulation.
Intrinsically disordered regions (IDRs) are flexible protein regions that regulate protein interactions, signaling, modification, degradation and biomolecular organization. Learn how IDRs function in cellular regulation.
Short linear motifs (SLiMs) are small sequence elements that regulate protein–protein interactions, signaling, localization and protein degradation. Learn how SLiMs work and why they are important in cellular regulation.