6533b82dfe1ef96bd129200c

RESEARCH PRODUCT

The Interaction Mechanism of Intrinsically Disordered PP2A Inhibitor Proteins ARPP-16 and ARPP-19 With PP2A

Chandan ThapaChandan ThapaChandan ThapaPekka RoivasPekka RoivasTatu HaatajaTatu HaatajaTatu HaatajaPerttu PermiPerttu PermiUlla PentikäinenUlla Pentikäinen

subject

macromolecular substancesIntrinsically disordered proteinsBiochemistry Genetics and Molecular Biology (miscellaneous)Biochemistryenvironment and public healthProtein–protein interactionprotein-protein interaction03 medical and health sciences0302 clinical medicineNMR spectroscopyIDPSARPP-16Molecular BiosciencesARPP-19NMR-spektroskopialcsh:QH301-705.5Molecular BiologyProtein secondary structure030304 developmental biologyOriginal Researchsoluviestintä0303 health sciencesMicroscale thermophoresisChemistryAlternative splicingInhibitor proteinProtein phosphatase 2Nuclear magnetic resonance spectroscopySAXS3. Good healthPP2APP2A inhibitor proteinssyöpäsolutlcsh:Biology (General)Biophysicsintrinsically disordered proteinsproteiinit030217 neurology & neurosurgery

description

Protein phosphatase 2A (PP2A) activity is critical for maintaining normal physiological cellular functions. PP2A is inhibited by endogenous inhibitor proteins in several pathological conditions including cancer. A PP2A inhibitor protein, ARPP-19, has recently been connected to several human cancer types. Accordingly, the knowledge about ARPP-19—PP2A inhibition mechanism is crucial for the understanding the disease development and the therapeutic targeting of ARPP-19—PP2A. Here, we show the first structural characterization of ARPP-19, and its splice variant ARPP-16 using NMR spectroscopy, and SAXS. The results reveal that both ARPP proteins are intrinsically disordered but contain transient secondary structure elements. The interaction mechanism of ARPP-16/19 with PP2A was investigated using microscale thermophoresis and NMR spectroscopy. Our results suggest that ARPP—PP2A A-subunit interaction is mediated by linear motif and has modest affinity whereas, the interaction of ARPPs with B56-subunit is weak and transient. Like many IDPs, ARPPs are promiscuous binders that transiently interact with PP2A A- and B56 subunits using multiple interaction motifs. In summary, our results provide a good starting point for future studies and development of therapeutics that block ARPP-PP2A interactions.

http://urn.fi/URN:NBN:fi:jyu-202103312249