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Showing 101–150 of 194371 results
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  • A new platform comprising large-scale 2D arrays of quantum dots patterned with sub-nanometre precision, with each quantum dot defined by tens of phosphorus atoms doped into silicon, allows for analogue simulation of quantum materials on arbitrary lattices.

    • M. B. Donnelly
    • Y. Chung
    • M. Y. Simmons
    ResearchOpen Access
    Nature
    P: 1-6
  • Functional studies of O-GlcNAcylation have often focused on individual modifications. Now, a systems-level approach has identified simultaneous O-GlcNAcylation events that coordinate cellular activities and tissue-specific functions.

    • Matthew E. Griffin
    • John W. Thompson
    • Linda C. Hsieh-Wilson
    ResearchOpen Access
    Nature Chemical Biology
    P: 1-12
  • The study used snMultiome-seq to map gene expression and chromatin accessibility in human central amygdala cells from people with and without AUD. Here, the authors show that inhibitory neurons are most affected, with KLF16-driven regulatory changes and AUD-risk variants disrupting gene activity.

    • Che Yu Lee
    • Ahyeon Hwang
    • Matthew J. Girgenti
    ResearchOpen Access
    Nature Communications
    P: 1-17
  • Nanomechanical measurements of molecular thin films are non-trivial due to ease of perturbation of the molecular surface. The authors present a direct, experimental demonstration of the tunability in the nanomechanical properties for a family of molecular semiconductors with systematic alkyl sidechain substitution.

    • Ki-Hwan Hwang
    • Dorothée Brandt
    • Deepak Venkateshvaran
    ResearchOpen Access
    Nature Communications
    P: 1-13
  • Juno radio occultations precisely redefine Jupiter’s shape, measuring a polar diameter of 66,842 km and an equatorial diameter of 71,488 km, both smaller than long-used values, bringing models of the planet’s interior into better agreement with observations.

    • Eli Galanti
    • Maria Smirnova
    • Yohai Kaspi
    Research
    Nature Astronomy
    P: 1-9
  • A classical device generates states with no relative superposition. Here, authors introduce models to simulate sets of quantum states by stochastically combining classical devices. They present an avenue to understand to what extent quantum states defy generic models based on classical devices.

    • Gabriele Cobucci
    • Alexander Bernal
    • Armin Tavakoli
    ResearchOpen Access
    Nature Communications
    Volume: 17, P: 1-10
  • The phase 2/3 DEVOTE trial demonstrated that high-dose nusinersen significantly improved motor function and was safe in patients with spinal muscular atrophy, compared with a matched sham control.

    • Richard S. Finkel
    • Thomas O. Crawford
    • Stephanie Fradette
    ResearchOpen Access
    Nature Medicine
    P: 1-10
  • Response to immune therapy varies among cancer types and individual cancer patients; thus, predictive biomarkers of success are urgently needed. Here, the authors present a computational framework that integrates tumor clonality and neoantigen characterization data to predict patient outcomes upon immune checkpoint inhibitor treatment.

    • Ko-Han Lee
    • Timothy J. Sears
    • Hannah Carter
    ResearchOpen Access
    Nature Communications
    P: 1-18
  • Native top-down proteomics reveals epidermal growth factor receptor–estrogen receptor-alpha (EGFR–ER) signaling crosstalk in breast cancer cells and dissociation of nuclear transport factor 2 (NUTF2) dimers to modulate ER signaling and cell growth.

    • Fabio P. Gomes
    • Kenneth R. Durbin
    • John R. Yates III
    Research
    Nature Chemical Biology
    Volume: 21, P: 1205-1213
  • Atomic force microscopy is used to investigate the adsorption and organization of ions on charged surfaces. Trivalent ions adopt complex networks, clusters and layers associated with overcharging, whereas divalent ions follow classical predictions.

    • Mingyi Zhang
    • Benjamin A. Legg
    • James J. De Yoreo
    Research
    Nature Materials
    P: 1-8
  • The STAR experiment at the Relativistic Heavy Ion Collider at Brookhaven National Laboratory demonstrates evidence of spin correlations in \(\Lambda \bar{\Lambda }\) hyperon pairs inherited from virtual spin-correlated strange quark–antiquark pairs during QCD confinement.

    • B. E. Aboona
    • J. Adam
    • M. Zyzak
    ResearchOpen Access
    Nature
    Volume: 650, P: 65-71
  • González-Gualda, Reinius et al. demonstrate that platinum-based chemotherapy-induced senescence promotes malignancy in ovarian and lung cancer via TGFβ ligands, with evidence in mouse models validated in clinical samples. Concomitantly blocking TGFβ signaling with chemotherapy reduces tumor burden and increases survival in mice.

    • Estela González-Gualda
    • Marika A. V. Reinius
    • Daniel Muñoz-Espín
    ResearchOpen Access
    Nature Aging
    P: 1-25
  • Spatiotemporal insight into photoactivation of the prototypical B12 photoreceptor CarH is revealed across nine orders of magnitude in time, identifying a transient adduct that distinguishes it from thermally activated B12 enzymes.

    • Ronald Rios-Santacruz
    • Harshwardhan Poddar
    • Giorgio Schirò
    Research
    Nature
    P: 1-8
  • This study of magic-angle twisted trilayer graphene moiré superconductors using scanning tunnelling microscopy and spectroscopy identifies two energy gaps that develop from many-body resonance in this highly tunable class of materials.

    • Hyunjin Kim
    • Gautam Rai
    • Stevan Nadj-Perge
    Research
    Nature
    P: 1-7
  • Neville, Ferguson et al. show that non-canonical Polycomb repressive complex 1.1-mediated gene silencing is antagonized by DOT1L and is required for the therapeutic efficacy of Menin and DOT1L inhibitors in mixed-lineage leukaemia.

    • Daniel Neville
    • Daniel T. Ferguson
    • Omer Gilan
    ResearchOpen Access
    Nature Cell Biology
    P: 1-16
  • Conventional methods for human motion analysis using sensors tightly attached to the body are often uncomfortable. Here, the authors demonstrate motion recognition and prediction using sensors embedded in garments. The results provide guidance for the development of wearable technology integrated into everyday clothing.

    • Tianchen Shen
    • Sacha Morris
    • Matthew Howard
    ResearchOpen Access
    Nature Communications
    Volume: 17, P: 1-14
  • Muscularis macrophages, housekeepers of enteric nervous system integrity and intestinal homeostasis, modulate α-synuclein pathology and neurodegeneration in models of Parkinson’s disease, and understanding the accompanying mechanisms could pave the way for early-stage biomarkers.

    • Sebastiaan De Schepper
    • Viktoras Konstantellos
    • Tim Bartels
    ResearchOpen Access
    Nature
    P: 1-11
  • The Ocean Equity Index provides a systematic, twelve-criteria framework to assess and improve equity in ocean initiatives, projects and policies, producing structured data that guide evidence-based decisions and support more equitable outcomes for coastal communities and ecosystems.

    • Jessica L. Blythe
    • Joachim Claudet
    • Noelia Zafra-Calvo
    ResearchOpen Access
    Nature
    Volume: 650, P: 123-128
  • Immunotherapies that employ engineered T cells rely on the selective and high expression of the targeted antigen in cancer cells and thus tumor heterogeneity compromises therapeutic success. Here authors generate an engineered T cell coreceptor that targets a secondary antigen and selectively enhances antigen receptor sensitivity in T cells.

    • Chiou-Tsun Tsai
    • Jorge Ibanez-Vega
    • Maksim Mamonkin
    ResearchOpen Access
    Nature Communications
    Volume: 17, P: 1-16
  • Juvenile idiopathic arthritis (JIA) associated uveitis can cause vision loss in children, but mechanisms remain unclear. The authors here identify elevated CD19+IgD-CD27- double negative type 1 B cells in JIA-uveitis and show that targeting B-T cell interactions suppresses disease in mouse models of uveitis.

    • Bethany R. Jebson
    • Benjamin Ingledow
    • Sarah Clarke
    ResearchOpen Access
    Nature Communications
    Volume: 17, P: 1-20
  • The hierarchy of DNA repair pathways at stalled replication forks is not fully understood. Here, the authors isolate two mutations in yeast RAD51 with defects in binding to duplex DNA and stalled replication forks, suggesting a role of Rad51 duplex DNA binding in fork stabilization and postreplication repair.

    • Damon Meyer
    • Steven K. Gore
    • Wolf-Dietrich Heyer
    ResearchOpen Access
    Nature Communications
    P: 1-20
  • Bacteria use diverse defence systems against phages, including a 164-residue prophage-encoded protein, Rip1, which senses conserved phage assembly rings to form membrane pores that block virion maturation and trigger premature host cell death.

    • Pramalkumar H. Patel
    • Matthew R. McCarthy
    • Karen L. Maxwell
    Research
    Nature
    P: 1-8
  • Earth’s core dynamo, which produces the magnetic field, may have been influenced by spatial variations in heat flux across the core–mantle boundary, according to combined palaeomagnetic datasets and geodynamo simulations.

    • A. J. Biggin
    • C. J. Davies
    • R. K. Bono
    ResearchOpen Access
    Nature Geoscience
    P: 1-8
  • Resonant inelastic X-ray scattering interferometry reveals a highly entangled electronic phase in Nd2Ir2O7, enabling extraction of its entanglement structure and confirming the cubic-symmetry-breaking order predicted from complementary Raman spectroscopy.

    • Junyoung Kwon
    • Jaehwon Kim
    • B. J. Kim
    Research
    Nature Materials
    P: 1-8
  • Terahertz microspectroscopic imaging at subgap millielectronvolt energies of a two-dimensional superfluid plasmon in few-layer Bi2Sr2CaCu2O8+x is demonstrated, allowing the spatial resolution of its deeply subdiffractive terahertz electrodynamics.

    • A. von Hoegen
    • T. Tai
    • N. Gedik
    Research
    Nature
    P: 1-6
  • Native state proteomics of PV interneurons revealed unique molecular features of high translational and metabolic activity, and enrichment of Alzheimer’s risk genes. Early amyloid pathology exerted unique effects on mitochondria, mTOR signaling and neurotransmission in PV neurons.

    • Prateek Kumar
    • Annie M. Goettemoeller
    • Srikant Rangaraju
    ResearchOpen Access
    Nature Communications
    Volume: 15, P: 1-26
  • The authors analytically determine how neuronal correlations and geometry collectively determine readout generalization across tasks and show how these geometric features follow distinct trajectories over the course of learning.

    • Albert J. Wakhloo
    • Will Slatton
    • SueYeon Chung
    ResearchOpen Access
    Nature Neuroscience
    P: 1-11
  • Rearrangement of the B cell receptor is sequential, and pairing of the successfully assembled heavy chain with the surrogate light chain proteins VpreB and λ5 to form the pre-B cell receptor is an important checkpoint signal for continued B cell development. Here, the authors show that λ5 plays a key role in the multi-step assembly process involving association-induced folding reactions.

    • Jasmin König
    • Natalia Catalina Sarmiento Alam
    • Johannes Buchner
    ResearchOpen Access
    Nature Communications
    Volume: 17, P: 1-17
  • Neural mechanism underlying behavioural flexibility is not fully understood. Here authors study decision-making of macaques in a reversal task. They identify two complementary cognitive processes. Distinct neural patterns link these processes to the dorsomedial prefrontal cortex, thalamus, and hippocampus.

    • K. Marche
    • N. Trudel
    • MFS Rushworth
    ResearchOpen Access
    Nature Communications
    Volume: 17, P: 1-22
  • Experimental realizations of discrete time crystals have mainly involved 1D models with Ising-like couplings. Here, the authors realize a 2D discrete time crystal with anisotropic Heisenberg coupling on a quantum simulator based on superconducting qubits, uncovering a rich phase diagram.

    • Eric D. Switzer
    • Niall F. Robertson
    • Nicolás Lorente
    ResearchOpen Access
    Nature Communications
    Volume: 17, P: 1-9
  • Antimony selenide is a promising photovoltaic material, but the presence of point defects degrades performance. Here, the authors use positron annihilation spectroscopy combined with theory to detect and identify vacancy-type point defects.

    • David J. Keeble
    • Theodore D. C. Hobson
    • Ken Durose
    ResearchOpen Access
    Nature Communications
    P: 1-9
  • Pseudaminic acids (Pse) are a family of carbohydrates found within bacterial lipopolysaccharides, capsular polysaccharides and glycoproteins. Now, monoclonal antibodies have been developed that recognize diverse Pse across several bacterial species, enabling mapping of the Pse glycoproteome and demonstrating therapeutic potential against multidrug-resistant Acinetobacter baumanii in in vitro and in vivo infection models.

    • Arthur H. Tang
    • Niccolay Madiedo Soler
    • Richard J. Payne
    Research
    Nature Chemical Biology
    P: 1-12
  • PARM is a deep-learning model trained on data from massively parallel reporter assays to help predict promoter activity in different human cell types, design synthetic promoters and identify key features of regulatory promoter grammar.

    • Lucía Barbadilla-Martínez
    • Noud Klaassen
    • Bas van Steensel
    ResearchOpen Access
    Nature
    P: 1-10
  • Identifying jets originating from heavy quarks plays a fundamental role in hadronic collider experiments. In this work, the ATLAS Collaboration describes and tests a transformer-based neural network architecture for jet flavour tagging based on low-level input and physics-inspired constraints.

    • G. Aad
    • E. Aakvaag
    • L. Zwalinski
    ResearchOpen Access
    Nature Communications
    Volume: 17, P: 1-22