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Here, the authors show the emergence of limbic-sensorimotor-association cortical hierarchy along with behavioral development during human infancy is underlaid by the spatiotemporal dynamics of cerebral blood flow meeting brain energy change demand.
The authors demonstrate a method for controlling the time-frequency distribution of electromagnetic waves, enabling real-time manipulation. Using standard telecom components, it enables GHz bandwidth, nanosecond programmability, and MHz-level resolution.
Here, Martin-Vicente et al. show that the Aspergillus fumigatus protein kinase, CotA, controls invasive growth in an isoform dependent manner in response to carbon source diversity, partially mediated by the downstream effector, SsdA.
Migrating earthquake sequences from a wide range of tectonic contexts exhibit two distinct behaviors. One is linked to slow slip and characterized by elevated migration velocities and moments, and the other is related to fluid-induced processes, with lower velocities and moments.
Symbiotic nitrogen fixation is a tightly regulated process serving as a sustainable source of nitrogen (N) in agriculture. Here it is shown that external N sources precisely regulate N fixation efficiency by modulating iron transport in nodules of legumes.
Autoantibody immune responses could contribute to acute and post-COVID-19 symptoms. Here, the authors describe longitudinal autoantibody responses in a cohort of healthcare workers and hospitalised COVID-19 patients from Sweden.
The carboamination of unsaturated molecules with bifunctional carboamination reagents is considered to be an attractive approach for the synthesis of nitrogen-containing compounds but employing bifunctional C–N reagents in the functionalization of cyclopropane remains underdeveloped. Here the authors present N-heterocyclic carbenes and a photoredox catalyst dualcatalyzed 1,3-aminoacylation of cyclopropane employing N-benzoyl saccharin as a bifunctional reagent.
Both the pyrroloindoline core and N–CF3 moiety hold significant importance in medicinal chemistry. Herein, the authors present a simple approach to assembling such intriguing skeletons from tryptamine-derived isocyanides through a cascade sequence, which includes an oxidative trifluorination and a subsequent halogenative cyclization.
When mantle plumes are coupled to spreading ridges, they can act as an anchor and impede spreading ridge migration but if the plume weakens, it can de-anchor from the ridge and facilitate rapid ridge migration.
Phonon polaritons can be harnessed for SEIRA spectroscopy. Here, the authors demonstrate a compact on-chip phononic SEIRA platform based on a h-BN/graphene/h-BN heterostructure atop a metal split-gate that serves both as a SEIRA substrate and as a room-temperature infrared detector.
The paraventricular hypothalamus (PVH) exerts an indispensable role in body weight control. Here, authors demonstrate the role of PVH RUVBL2 in suppressing food intake and reveal two anorexigenic circuits of PVHRUVBL2 → ARCPOMC and PVHRUVBL2 → DMH.
Single-cell intracellular recordings have been used as the primary tool for estimating driving forces across inhibitory receptors within the nervous system. Here, the authors present ORCHID as an all-optical method to measure inhibitory receptor driving forces in targeted brain cell types.
Epichaperomes are chaperone assemblies that reorganize protein networks under stress. Here, authors reveal how HSP90 phosphorylation drives epichaperome formation, linking this process to cancer cell behaviors and pluripotent stem cell functions.
The identification of HLA epitopes is essential for vaccine and immunotherapy development. Here, authors develop ImmuneApp using deep learning on extensive immunopeptidomics data, advancing antigen presentation prediction, neoepitope prioritisation, and immunopeptidomics deconvolution.
Kagome lattices host a plethora of topological phenomena. Here, the authors identify nearly flat spin-wave bands in part of the Brillouin zone and large orbital moments in the metallic kagome ferromagnet Fe3Sn2.
Microorganisms can be engineered to sustainably produce a variety of products including fuels, pharmaceuticals, materials, and food. This work reports the design and creation of syntrophic synthetic communities of single and multiple yeast species, which achieve improved bioproduction.
In this work, authors show that macrolides are effective against Pseudomonas aeruginosa infections despite intrinsic resistance. Prolonged use leads to ribosomal mutations causing resistance but also reduces virulence, aiding in long-term persistent infections.
The removal of low-concentration humid CO2 from confined space is necessary but challenging. Here, the authors propose a strategy to boost the humid CO2 removal performance by dynamically optimizing polar carbon nanopores with the formation of local surface bound water.
Autophagy plays a dual role in coronavirus infection. Here, the authors identify PDPK1 as a key regulator that switches between virophagy and mitophagy and demonstrate that a PDPK1-targeting peptide restored immunity and protected mice from lethal viral infections.