Publications by authors named "B McEwan"

The PP2A-B55 phosphatase regulates a plethora of signaling pathways throughout eukaryotes. How PP2A-B55 selects its substrates presents a severe knowledge gap. By integrating AlphaFold modeling with comprehensive high-resolution mutational scanning, we show that α helices in substrates bind B55 through an evolutionary conserved mechanism.

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The Ser/Thr protein phosphatase 2 A (PP2A) regulates the dephosphorylation of many phosphoproteins. Substrate recognition are mediated by B regulatory subunits. Here, we report the identification of a substrate conserved motif [RK]-V-x-x-[VI]-R in FAM122A, an inhibitor of B55α/PP2A.

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Article Synopsis
  • Invasive meningococcal disease (IMD) rates surged in Australia from 2014 to 2017, largely due to rising infections from serogroups W and Y, prompting a study on genetic diversity in 2017 and 2018 using whole genome sequencing.
  • The study analyzed 440 Australian IMD isolates and 1737 international MenW:CC11 isolates, revealing that MenW, MenB, and MenY were the most common serogroups and identified 18 clonal complexes, with three (CC11, CC23, CC41/44) making up 78% of the isolates.
  • Findings showed that while MenB isolates were highly diverse, MenW and MenC were less
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The PP2A-B55 phosphatase regulates a plethora of signaling pathways throughout eukaryotes. How PP2A-B55 selects its substrates presents a severe knowledge gap. By integrating AlphaFold modelling with comprehensive high resolution mutational scanning, we show that α-helices in substrates bind B55 through an evolutionary conserved mechanism.

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The Ser/Thr protein phosphatase 2A (PP2A) is a highly conserved collection of heterotrimeric holoenzymes responsible for the dephosphorylation of many regulated phosphoproteins. Substrate recognition and the integration of regulatory cues are mediated by B regulatory subunits that are complexed to the catalytic subunit (C) by a scaffold protein (A). PP2A/B55 substrate recruitment was thought to be mediated by charge-charge interactions between the surface of B55α and its substrates.

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