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    1. Neuroscience

    Population coupling predicts the plasticity of stimulus responses in cortical circuits

    Yann Sweeney, Claudia Clopath
    Networks simulations and in vivo imaging suggest a stable backbone of stimulus representation formed by neurons with low population coupling, alongside a flexible substrate of neurons with high population coupling.
    1. Cell Biology

    Single cell transcriptomics identifies a unique adipose lineage cell population that regulates bone marrow environment

    Leilei Zhong et al.
    A newly identified adipose lineage cell population, MALP, regulates marrow vasculature and osteogenesis in bone.
    1. Cell Biology

    Bone: A role for fat precursors in the marrow

    Noriaki Ono
    A group of cells that can become adipocytes controls the formation of blood vessels in the bone marrow, and also regulates the differentiation of resident mesenchymal progenitor cells.
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    1. Developmental Biology
    2. Neuroscience

    Caenorhabditis elegans processes sensory information to choose between freeloading and self-defense strategies

    Jodie A Schiffer et al.
    C. elegans nematodes use a sensory-neuronal circuit to determine whether to defend themselves from hydrogen peroxide attack or to freeload off orthologous protective defenses from bacteria in their surrounding environment.
    1. Neuroscience

    Recurrent circuit dynamics underlie persistent activity in the macaque frontoparietal network

    Eric Hart, Alexander C Huk
    Simultaneous recordings of neural ensembles in both the frontal and parietal cortices reveal how persistent activity can be maintained in the primate brain during visuospatial working memory.
    1. Chromosomes and Gene Expression

    Centromere deletion in Cryptococcus deuterogattii leads to neocentromere formation and chromosome fusions

    Klaas Schotanus, Joseph Heitman
    Centromere deletion in Cryptococcus deuterogattii results in neocentromeres, which span actively expressed genes and at elevated temperatures cen10∆ mutants are unstable leading to chromosome fusion and silencing of the neocentromere.
    1. Developmental Biology

    The metalloproteinase Papp-aa controls epithelial cell quiescence-proliferation transition

    Chengdong Liu et al.
    Zinc metalloproteinase Papp-aa-mediated Igfbp5 proteolysis functions as a [Ca2+]-regulated molecular switch linking IGF signaling to epithelial cell proliferation and bone calcification.
    1. Cell Biology
    2. Microbiology and Infectious Disease

    A single-parasite transcriptional atlas of Toxoplasma Gondii reveals novel control of antigen expression

    Yuan Xue et al.
    Single-cell RNA-sequencing resolves the transcriptional landscape of asexual development in Toxoplasma gondii, revealing concerted genetic programs to Plasmodiumfalciparum and a novel transcriptional factor that controls antigen switching.
    1. Biochemistry and Chemical Biology
    2. Neuroscience

    Post-translational regulation of retinal IMPDH1 in vivo to adjust GTP synthesis to illumination conditions

    Anna Plana-Bonamaisó et al.
    The nucleotide sensing ability of IMPDH1 at the Bateman domain is regulated by light-dependent phosphorylation in the retina, to adjust GTP synthesis to illumination conditions.