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Showing 51–100 of 25883 results
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  • Nitazenes are potent synthetic opioids that are difficult to detect. Here, authors computationally redesign a plant receptor to create sensitive sensors capable of detecting diverse nitazenes and their metabolites in biological samples.

    • Alison C. Leonard
    • Chase Lenert-Mondou
    • Timothy A. Whitehead
    ResearchOpen Access
    Nature Communications
    Volume: 17, P: 1-12
  • Bacteriophages play a pivotal, yet poorly understood, role in shaping antibiotic resistance dynamics in natural environments. A global analysis of 840 groundwater metagenomes reveals that phage–host interactions constrain ARG acquisition via enhanced phage defence.

    • Huaiyu Cao
    • Songfeng Liu
    • Jinren Ni
    Research
    Nature Water
    Volume: 4, P: 78-90
  • Gene isoforms are quantified with a machine learning method that optimally integrates long and short sequencing reads.

    • Haoran Li
    • Dingjie Wang
    • Kin Fai Au
    ResearchOpen Access
    Nature Biotechnology
    P: 1-13
  • Climate change can alter when and how animals grow, breed, and migrate, but it is unclear whether this allows populations to persist. This global study shows that shifts in seasonal timing are key to helping vertebrate species maintain population growth under global warming.

    • Viktoriia Radchuk
    • Carys V. Jones
    • Martijn van de Pol
    ResearchOpen Access
    Nature Communications
    Volume: 17, P: 1-14
  • This work introduces a pedigree-derived benchmark for single-nucleotide variants, indels, structural variants and tandem repeats, offering a variant map to validate sequencing workflows or to support the development and evaluation of new variant callers.

    • Zev Kronenberg
    • Cillian Nolan
    • Michael A. Eberle
    Research
    Nature Methods
    Volume: 22, P: 1669-1676
  • Human impacts on marine ecosystems are increasing the likelihood of pathogenic outbreaks, harmful algal blooms and coral stress. Here the authors develop a CRISPR biomonitoring tool that can help detect key marine species that are important to public health, the aquaculture sector and marine ecosystems.

    • Nayoung Kim
    • Daniel S. Collins
    • Peter Q. Nguyen
    Research
    Nature Sustainability
    Volume: 9, P: 51-64
  • A detailed spatiotemporal roadmap of the human female and male reproductive tracts during key periods of sexual differentiation provides new cellular and molecular insights into how early axial gradients lead to specific cell lineages and tissue structures.

    • Valentina Lorenzi
    • Cecilia Icoresi-Mazzeo
    • Roser Vento-Tormo
    ResearchOpen Access
    Nature
    P: 1-10
  • An in-depth analysis of tissue biopsies from patients with multiple myeloma and CAR T cell therapy-associated immune-related adverse events (CirAEs) after treatment with commercial BCMA-targeted CAR T cell therapy shows that CD4+ CAR T cells mediate off-tumor toxicities and that high CD4:CD8 ratio at apheresis, robust early CAR T cell expansion, ICANS and ciltacabtagene autoleuce treatment are independently associated with the development of CirAEs.

    • Matthew Ho
    • Luca Paruzzo
    • Joseph A. Fraietta
    Research
    Nature Medicine
    P: 1-15
  • The authors present the results of a phase I/II clinical trial using autologous CD133+ bone marrow stem cell therapy to restore fertility in patients with Asherman Syndrome. The intervention was safe and showed promising results for the restoration of menstruation and reproductive function.

    • Xavier Santamaria
    • María Pardo-Figuerez
    • Carlos Simon
    ResearchOpen Access
    Nature Communications
    Volume: 17, P: 1-17
  • Wastewater-based surveillance tends to focus on specific pathogens. Here, the authors mapped the wastewater virome from 62 cities worldwide to identify over 2,500 viruses, revealing city-specific virome fingerprints and showing that wastewater metagenomics enables early detection of emerging viruses.

    • Nathalie Worp
    • David F. Nieuwenhuijse
    • Miranda de Graaf
    ResearchOpen Access
    Nature Communications
    Volume: 16, P: 1-19
  • Pulmonary type 2 inflammation is associated with type 2 innate lymphoid cells. Here the authors use the Collaborative Cross mouse panel to show that ILC2 abundance during type 2 lung inflammation is different across the panel and identify free-fatty acid receptor 3 (Ffar3) as a gene responsible and show cytokine and ILC2 functional changes.

    • Mark Rusznak
    • Shinji Toki
    • R. Stokes Peebles Jr
    ResearchOpen Access
    Nature Communications
    Volume: 17, P: 1-23
  • Insulin signaling plays a crucial role in coordinating skeletal development with whole‑body energy metabolism. Here, the authors use phosphoproteomics to show insulin-signaling rewiring in aged, insulin-resistant bone and identify defective phosphorylation of AFF4 as a key mechanism for regulating gene-specific transcriptional activation.

    • Mriga Dutt
    • Luoping Liao
    • Benjamin L. Parker
    ResearchOpen Access
    Nature Communications
    Volume: 17, P: 1-23
  • Repetitive DNA sequences shape genome evolution and instability. Here, the authors analyze repeat length distributions across over 300 mammals and show that long repeats arise and persist through a dynamic balance of mutation processes, without requiring natural selection.

    • Ryan J. McGinty
    • Daniel J. Balick
    • Shamil R. Sunyaev
    ResearchOpen Access
    Nature Communications
    Volume: 17, P: 1-22
  • Rare loss-of-function mutations in SETD1A are associated with schizophrenia, but how SETD1A haploinsufficiency leads to disease phenotypes remains unknown. Here, authors show that SETD1A regulates genes at common schizophrenia risk loci regulating genomic stability and synaptic function.

    • Tomoyo Sawada
    • Arthur S. Feltrin
    • Jennifer A. Erwin
    ResearchOpen Access
    Nature Communications
    Volume: 17, P: 1-20
  • The 4D Nucleome Project demonstrates the use of genomic assays and computational methods to measure genome folding and then predict genomic structure from DNA sequence, facilitating the discovery of potential effects of genetic variants, including variants associated with disease, on genome structure and function.

    • Job Dekker
    • Betul Akgol Oksuz
    • Feng Yue
    ResearchOpen Access
    Nature
    Volume: 649, P: 759-776
  • 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
  • Hole spin semiconductor qubits suffer from charge noise, but now it has been demonstrated that placing them in an appropriately oriented magnetic field can suppress this noise and improve qubit performance.

    • M. Bassi
    • E. A. Rodríguez-Mena
    • V. Schmitt
    Research
    Nature Physics
    Volume: 22, P: 75-80
  • Murphy et al. reveal a unifying pathogenetic mechanism according to which diverse mutations in the muscle-specific ribosomal protein RPL3L cause severe neonatal dilated cardiomyopathy, establishing a framework for interpreting the growing spectrum of RPL3L variants.

    • Michael R. Murphy
    • Mythily Ganapathi
    • Xuebing Wu
    ResearchOpen Access
    Nature Cardiovascular Research
    Volume: 5, P: 51-66
  • The anterior cingulate cortex encodes affective pain behaviours modulated by opioids; targeting opioid-sensitive neurons through a new chemogenetic gene therapy replicates the analgesic effects of morphine, providing precise chronic pain relief without affecting sensory detection.

    • Corinna S. Oswell
    • Sophie A. Rogers
    • Gregory Corder
    ResearchOpen Access
    Nature
    Volume: 649, P: 938-947
  • Hodgkin Reed Sternberg (HRS) cells and their surrounding microenvironment in Hodgkin lymphoma remain poorly characterized. Here, the authors perform genome-wide transcriptional profiling with spatial and single-cell resolution to explore the cellular and molecular composition of the Hodgkin lymphoma microenvironment and used machine learning to identify IL13 as a potential HRS cell survival factor.

    • Vignesh Shanmugam
    • Neriman Tokcan
    • Todd R. Golub
    ResearchOpen Access
    Nature Communications
    Volume: 17, P: 1-17
  • The cell states and lineage connections underlying the progression from Barrett’s esophagus to esophageal adenocarcinoma remain unresolved. Here, the authors use single-cell lineage tracing and transcriptomics to analyse patient samples from the gastroesophageal junction and identify cellular relationships in the progression of Barrett’s esophagus to cancer.

    • Rodrigo A. Gier
    • Sydney A. Bracht
    • Sydney M. Shaffer
    ResearchOpen Access
    Nature Communications
    Volume: 16, P: 1-14
  • Affinity-proteomics platforms often yield poorly correlated measurements. Here, the authors show that protein-altering variants drive a portion of inter-platform inconsistency and that accounting for genetic variants can improve concordance of protein measures and phenotypic associations across ancestries.

    • Jayna C. Nicholas
    • Daniel H. Katz
    • Laura M. Raffield
    ResearchOpen Access
    Nature Communications
    Volume: 17, P: 1-21
  • Integrated single-cell and spatial data analysis, combined with bidirectional CRISPR screens, identify the transcription factor GLIS3 as a key driver of chronic inflammation and fibrosis and a potential marker of disease severity in patients with ulcerative colitis.

    • Vladislav Pokatayev
    • Alok Jaiswal
    • Ramnik J. Xavier
    ResearchOpen Access
    Nature
    P: 1-10
  • Engineering polymerases to synthesize alternative genetic polymers remains a challenging problem in synthetic biology. Using DNA shuffling and droplet microfluidics, the current study provides a short evolutionary path from a DNA polymerase to one with robust RNA-synthesizing activity.

    • Esau L. Medina
    • Victoria A. Maola
    • John C. Chaput
    Research
    Nature Chemical Biology
    P: 1-9
  • Mitochondrial damage is a central pathological mechanism of cerebral ischemia-reperfusion injury. This study develops a bioengineered nanolamellar system to sequentially restore neuronal cell mitochondrial function and modulate microglial polarization to mitigate ischemia-reperfusion injury.

    • Yue Yin
    • Zixuan Li
    • Wei Wang
    ResearchOpen Access
    Nature Communications
    Volume: 17, P: 1-22
  • Selecting for varieties of commercial crops with enhanced nutritional quality is important in agriculture. Here, the authors identify alleles of a gene in tomatoes that give rise to increased levels of vitamin E and find that the promoter of the gene is differentially methylated.

    • Leandro Quadrana
    • Juliana Almeida
    • Fernando Carrari
    Research
    Nature Communications
    Volume: 5, P: 1-11
  • In this study, the authors show that integrating a host gene biomarker with a large language model (LLM) improved lower respiratory tract infections diagnosis in a cohort of critically ill patients. The LLM plus biomarker outperformed the diagnosis made by the initial medical team and each component alone.

    • Hoang Van Phan
    • Natasha Spottiswoode
    • Charles R. Langelier
    ResearchOpen Access
    Nature Communications
    Volume: 16, P: 1-8
  • Dendritic cells (DCs) are required to establish thymic central tolerance. Here Srinivasan et al. use single-cell transcriptomics to define thymic conventional dendritic cell (cDC) subsets and find that CD8+ single-positive thymocytes modulate the thymus environment to regulate plasmacytoid DC and cDC2 homeostasis and interferon signatures in DCs, while CD4+ single-positive thymocytes regulate cDC1 activation via cognate and CD40L–CD40 interactions.

    • Jayashree Srinivasan
    • Colin R. Moore
    • Lauren I. R. Ehrlich
    Research
    Nature Immunology
    Volume: 27, P: 265-280
  • How landscapes are arranged affects soil pathogenic fungi worldwide. The authors reveal the global pattern and pronounced scale-dependency of landscape complexity and land-cover quantity on soil pathogenic fungal diversity.

    • Yawen Lu
    • Nico Eisenhauer
    • Carlos A. Guerra
    ResearchOpen Access
    Nature Communications
    Volume: 17, P: 1-15
  • Single-cell manipulation and processing techniques and improvements in mass spectrometry sensitivity make single-cell proteomic profiling feasible. This study presents a label-free approach for the characterisation of native N-glycans of single mammalian cells and ng-level blood isolates, demonstrating the potential to detect cell surface glycome changes at the single-cell level in health or disease.

    • Anne-Lise Marie
    • Yunfan Gao
    • Alexander R. Ivanov
    ResearchOpen Access
    Nature Communications
    Volume: 15, P: 1-17
  • Improved vaccines and antivirals are needed for many enveloped viruses. Here, the authors identify sulfur-based small molecules that disrupt viral membrane properties, inhibiting fusion and entry, and safely inactivate influenza virus. The resulting inactivated influenza vaccine is protective in mice.

    • David W. Buchholz
    • Armando Pacheco
    • Hector C. Aguilar
    ResearchOpen Access
    Nature Communications
    Volume: 17, P: 1-14