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Volume 18 Issue 12, December 2022

Focus on phase separation

Phase separation participates in biological processes as a fundamental mechanism for assembling subcellular structures and provides new perspectives for basic study and therapeutic applications. The cover depicts drops of dew condensing on a leaf, symbolizing condensates formed via phase separation in cells.

See Jingjing Xie et al.

Image credit: Xuefeng Sun (photography), Hao He (image editing), Guangya Zhu (design). Cover Design: Alex Wing

Editorial

  • Phase separation is an important mechanism for biomolecule condensate assembly and is involved in multiple biological activities. Understanding its molecular mechanism provides a unique perspective for gaining insights into its role in cellular physiology and for developing new tools for the manipulation of cellular function.

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Research Highlights

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News & Views

  • Prostate tumors, resistant to current antiandrogen therapies, represent a serious clinical challenge. A new report identifies androgen-receptor-dependent liquid condensates as being responsible in part for therapeutic resistance, but, encouragingly, also reveals a novel vulnerability amenable to drug targeting.

    • Iain J. McEwan
    News & Views
  • Clustering and multimerization of cell surface proteins (CSPs) are essential for triggering downstream intracellular signaling events. Membrane-anchored liquid–liquid phase-separation systems have now been developed to manipulate the spatiotemporal distribution and activation of CSPs.

    • Zheng Wang
    • Hong Zhang
    News & Views
  • Isoform-selective inhibition of JAK kinases is of key interest in drug discovery. A novel pocket in the JAK pseudokinase domain was targeted by an allosteric covalent inhibitor, leading to specific JAK1 inhibition and providing a deeper understanding of cytokine signaling.

    • Olli Silvennoinen
    • Teemu Haikarainen
    • Anniina Virtanen
    News & Views
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