Analysis of hundreds of single-cell genomes from Yellowstone National Park shows bacterial species are less cohesive than previously thought.
A conserved signaling axis linking Drosophila adipose tissue to nephrocyte function reveals how obesity can drive kidney dysfunction and points to new opportunities for therapeutic intervention.
By modeling the single-trial electroencephalogram of participants performing perceptual decisions, and building on predictions from two century-old psychological laws, we estimate the times of ...
This important study combines optogenetic manipulations and wide-field imaging to show that the retrosplenial cortex controls behavioral responses to whisker deflection in a context-dependent manner.
Antigen-driven TCR signaling in the epidermis during CD8+ TRM differentiation results in a lower TGFβ requirement for persistence and increased proliferative capacity that together enhance epidermal ...
Maintaining CDK4/6 inhibition constrains drug‑resistant breast tumors by delaying cell‑cycle entry, and adding CDK2 inhibition further deepens control to guide post‑progression therapy.
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This study offers important insight into the pathogenic basis of intragenic frameshift deletions in the carboxy-terminal domain of MECP2, which account for some Rett syndrome cases, yet similar ...
This study presents SynaptoGen, a differentiable extension of connectome models that links gene expression, protein-protein interaction probabilities, synaptic multiplicity, and synaptic weights, and ...
This is an important contribution that largely confirms prior evidence that word recognition - a cornerstone of development - improves across early childhood and is related to vocabulary growth. This ...
Countless everyday tasks that seem effortless to many of us are orchestrated by complex networks in the brain. Try to keep track of a moving object – how does your brain keep your eyes stable? Try ...
Post‑HI oxidative‑phosphorylation uncoupling drives secondary energy failure in neonatal brains, and preventing the post‑HI CMRO 2 surge is a key mechanism underlying hypothermia’s neuroprotection.