Pinning Down Proline-Directed Phosphorylation Signaling

Notes on a 2002 Trends in Cell Biology review introducing phosphorylation-specific prolyl isomerization as a novel signaling mechanism. Pin1-mediated cis-trans switching of pSer/Thr-Pro motifs acts as a conformational timer for cellular signaling, impacting activity, interactions, and localization of key regulatory proteins.

Pinning Down Proline-Directed Phosphorylation Signaling

Notes on a 2002 Trends in Cell Biology review introducing phosphorylation-specific prolyl isomerization as a novel signaling mechanism. Pin1-mediated cis-trans switching of pSer/Thr-Pro motifs acts as a conformational timer for cellular signaling, impacting activity, interactions, and localization of key regulatory proteins.

Sequence Determinants of the Conformational Properties of an Intrinsically Disordered Protein Prior to and Upon Multisite Phosphorylation

A groundbreaking exploration of how sequence patterning, especially proline and charge distributions, governs the conformational behavior of intrinsically disordered regions (IDRs) even under multisite phosphorylation, with compensatory conformational changes maintaining overall dimensions.

Sequence Determinants of the Conformational Properties of an Intrinsically Disordered Protein Prior to and Upon Multisite Phosphorylation

A groundbreaking exploration of how sequence patterning, especially proline and charge distributions, governs the conformational behavior of intrinsically disordered regions (IDRs) even under multisite phosphorylation, with compensatory conformational changes maintaining overall dimensions.

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