4.6 Article

Isoform-Selective Disruption of AKAP-Localized PKA Using Hydrocarbon Stapled Peptides

期刊

ACS CHEMICAL BIOLOGY
卷 9, 期 3, 页码 635-642

出版社

AMER CHEMICAL SOC
DOI: 10.1021/cb400900r

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资金

  1. NIH [1K22CA154600, R01 DK073368]
  2. European Union [241481]
  3. Federal Ministry of Education and Research [0316177F]

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A-kinase anchoring proteins (AKAPs) play an important role in the spatial and temporal regulation of protein kinase A (PKA) by scaffolding critical intracellular signaling complexes. Here we report the design of conformationally constrained peptides that disrupt interactions between PICA and AKAPs in an isoform-selective manner. Peptides derived from the A Kinase Binding (AKB) domain of several AKAPs were chemically modified to contain an all-hydrocarbon staple and target the docking/dimerization domain of PKA-R, thereby occluding AKAP interactions. The peptides are cell-permeable against diverse human cell lines, are highly isoform-selective for PKA-RII, and can effectively inhibit interactions between AKAPs and PKA-RII in intact cells. These peptides can be applied as useful reagents in cell-based studies to selectively disrupt AKAP-localized PKA-RII activity and block AKAP signaling complexes. In summary, the novel hydrocarbon-stapled peptides developed in this study represent a new class of AKAP disruptors to study compartmentalized RII-regulated PKA signaling in cells.

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