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Search results for “Crystallography”

1,000+ results for "Crystallography"

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Researchers have developed a device that cuts sample consumption by as much as 97% while producing high-quality structural data for X-ray crystallography. This innovation enables the study of rare proteins and accelerates drug discovery, unlocking new insights into disease mechanisms.

SourceArizona State University·TypeObservational study·DateFeb 5, 2026

Osaka Medical and Pharmaceutical University researchers capture real-time molecular movies of enzyme catalysis

Osaka Medical and Pharmaceutical University researchers have captured time-resolved structures of an enzyme during its catalytic cycle, revealing dynamics that are nearly impossible to observe by other methods. This breakthrough offers valuable insights into enzyme function and potential applications in molecular design of novel enzymes.

SourceOsaka Medical and Pharmaceutical University·JournalNature Communications·DateDec 18, 2025

Structure of the natural red pigment carmine revealed

Advanced electron crystallography techniques have revealed the unexpected structure of carmine, a natural red colouring agent. The substance has a well-defined, three-dimensional porous structure composed of two calcium ions, two aluminium ions, and four organic ligand molecules.

SourceStockholm University·JournalCrystal Growth & Design·TypeExperimental study·DateJun 3, 2025
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With AI, researchers can now identify the smallest crystals

Researchers at Columbia University have developed an AI algorithm that can accurately determine the atomic structure of materials with minimal sample size. The technique uses diffusion generative modeling to augment the diffraction data from nanocrystals, enabling near-perfect reconstruction of the crystal's atomic-scale structure.

SourceColumbia University School of Engineering and Applied Science·JournalNature Materials·DateApr 28, 2025

AI model can reveal the structures of crystalline materials

A new AI model called Crystalyze can analyze X-ray crystallography data to determine the structure of powdered crystals. The model was trained on a database of over 150,000 materials and successfully predicted structures for over 100 previously unsolved patterns.

SourceMassachusetts Institute of Technology·JournalJournal of the American Chemical Society·DateSep 19, 2024

Crystallized alternative DNA structure sheds light on insulin and diabetes

A UCL-led research team has crystallized the first alternative DNA structure from the insulin gene, revealing its shape and structure. The discovery suggests that different variants in the insulin gene can form different DNA structures, which could affect insulin function and potentially play a role in diabetes development.

SourceUniversity College London·JournalNature Communications·DateSep 6, 2024

New study paves the way for precision drugs to treat blood cancers

Researchers used single-molecule microscopy and X-ray crystallography to discover that pathogenic JAK2 mutations utilize pseudokinase domain-mediated dimerization as a mechanism for activation. The study provides new insights into the molecular basis of JAK2 activation and its role in blood cancers.

SourceTampere University·JournalScience Advances·DateApr 3, 2024
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Filming ultrafast molecular motions in single crystal

Scientists have applied time-resolved serial femtosecond crystallography (TR-SFX) to study molecular motion in real-time with atomic resolution, revealing three pathways of structural change in a porous coordination network sample. This breakthrough unlocks new opportunities for investigating chemical systems and material science.

SourceInstitute for Basic Science·JournalNature Chemistry·TypeExperimental study·DateMar 25, 2024

High speed protein movies to aid drug design

Researchers at the University of Southampton have developed a method for fast mixing using droplet microfluidics, allowing for the creation of 'movies' of proteins in action. This enables scientists to observe proteins in motion and gain insights into their function.

SourceUniversity of Southampton·JournalIUCrJ·TypeExperimental study·DateMar 21, 2024

NIH scientists find weak points on Epstein-Barr virus

Researchers discovered two distinct sites on the EBV protein gp42 that can be targeted to prevent infection and cancer. Monoclonal antibody A10 provided nearly complete protection against EBV infection in mice.

SourceNIH/National Institute of Allergy and Infectious Diseases·JournalImmunity·DateMar 12, 2024

Exploring the surface properties of NiO with low-energy electron diffraction

Researchers use LEED to investigate coherent exchange scattering in NiO, revealing a resonance enhancement attributed to surface wave resonance. The study reaffirms previous data on surface-spin structure and magnetic properties while providing new insights into temperature dependence.

SourceSophia University·JournalThe European Physical Journal D·TypeExperimental study·DateMar 7, 2024
Sony Alpha a7 IV (Body Only)

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UC Irvine study shows similarities and differences in human and insect vision formation

A recent UCI study found profound similarities between humans and insects in producing the critical light-absorbing molecule of the retina, 11-cis-retinal. The research provides new insights into retinal disease origins and potential therapeutic targets, with implications for understanding loss-of-function mutations in RPE65.

SourceUniversity of California - Irvine·JournalNature Chemical Biology·DateFeb 22, 2024

Spying on a shape-shifting protein

Scientists at the Advanced Science Research Center used X-ray crystallography with elevated temperature and pressure to observe distinct shapes in a protein molecule. The study reveals how proteins change shape to bind metabolites or other proteins, offering insight into disease treatment and development of novel drugs.

SourceAdvanced Science Research Center, GC/CUNY·JournalCommunications Biology·TypeImaging analysis·DateJan 12, 2024
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From infamy to ingenuity

Researchers have uncovered the intricate molecular mechanism used by parasitic phytoplasma bacteria to manipulate plants. The discovery sheds light on a peculiar phenomenon in nature, where plants exhibit 'zombie-like' effects due to bacterial infection.

SourceJohn Innes Centre·JournalProceedings of the National Academy of Sciences·TypeExperimental study·DateDec 5, 2023

Researchers at TU Graz decipher enzyme scissors of intestinal microbes

Microorganisms in the intestinal flora utilize beta-elimination to break down glycosides, enabling humans to absorb healthy plant natural products. The 'enzyme scissors' mechanism is a universal catalytic principle allowing for efficient cleavage of various glycosides.

SourceGraz University of Technology·TypeObservational study·DateNov 29, 2023

Releasing brakes on biocatalysis

Researchers have elucidated the molecular mechanism of formaldehyde poisoning in a class of efficient hydrogen-producing biocatalysts. The study suggests that modifying the enzyme to resist formaldehyde inhibition could enable its use in bio-based industrial processes and understanding metabolic pathways.

SourceRuhr-University Bochum·JournalJournal of the American Chemical Society·TypeExperimental study·DateNov 29, 2023
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New method for determining the water content of water-soluble compounds

Researchers at University of Eastern Finland developed a new method for accurate determination of water content in water-soluble compounds, utilizing solution-state nuclear magnetic resonance spectroscopy. The method is simple, accurate and quick, with results comparable to traditional methods like TGA and X-ray crystallography.

SourceUniversity of Eastern Finland·JournalAnalytical Chemistry·DateNov 21, 2023

How to protect biocatalysts from oxygen

Researchers at Ruhr-University Bochum developed a method to increase oxygen stability of [FeFe] hydrogenase enzyme using site-directed mutagenesis, electrochemistry, X-ray crystallography and molecular dynamics simulations. Blockages in dynamic water channels near the H-cluster were found to improve oxygen resistance.

SourceRuhr-University Bochum·JournalChemSusChem·TypeExperimental study·DateOct 30, 2023
Sky-Watcher EQ6-R Pro Equatorial Mount

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Getting protein factories to run – How deubiquitinating enzymes moonlight as Fubi proteases

Researchers from Max Planck Institute identified mechanisms of deubiquitinating enzymes acting as Fubi proteases, regulating ribosomal protein maturation and modulating immune responses. This discovery expands understanding of post-translational modification systems and their roles in cellular processes.

SourceMax Planck Institute of Molecular Physiology·JournalNature Chemical Biology·TypeExperimental study·DateAug 24, 2023

Mechanism underlying bacterial resistance to the antibiotic albicidin revealed

A new study reveals that bacterial resistance to albicidin is caused by an increase in the number of copies of a specific gene, leading to up to a 1,000-fold increase in resistance. This discovery highlights the growing threat of antibiotic resistance and underscores the need for effective strategies to combat it.

SourcePLOS·JournalPLOS Biology·TypeExperimental study·DateAug 10, 2023
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Displaying the design of DNA

Researchers at Arizona State University successfully demonstrated the use of MicroED to analyze a DNA crystal, overcoming limitations of X-ray crystallography. The technique, combined with cryo-FIB milling, enables work with smaller crystals, opening opportunities for understanding RNA structure and developing novel nanotechnologies.

SourceArizona State University·JournalStructure·TypeExperimental study·DateAug 3, 2023

Structural insights illuminate the arms race between crop plants and fungal pathogens

Researchers from the Max Planck Institute for Plant Breeding Research have characterized the structures of several powdery mildew effectors, revealing a common scaffold that allows them to evade recognition by plant immune receptors. This discovery provides new insights into the molecular arms race between plants and fungal pathogens.

SourceMax Planck Institute for Plant Breeding Research·JournalProceedings of the National Academy of Sciences·TypeExperimental study·DateJul 31, 2023

A new bacterial blueprint to aid in the war on antibiotic resistance

Scientists have gained high-res structural insights into a key bacterial enzyme to develop new drugs that target its weaknesses and suppress disease-causing bacteria. The enzyme Lnt is not found in humans and has huge potential as a therapeutic target with fewer side effects for patients.

SourceTrinity College Dublin·JournalScience Advances·DateJun 30, 2023
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Discovery of grain-interior planar defects induced by heteroatom monolayer

Researchers found a new type of grain-interior planar defect induced by ordered distribution of heteroatoms on W and C crystal planes, which display distinct characteristics. The defects' high stability may reduce transgranular fracture risk, allowing for optimal mechanical performance.

SourceKeAi Communications Co., Ltd.·JournalAdvanced Powder Materials·TypeExperimental study·DateJun 28, 2023

Rensselaer researcher uses pressure to understand RNA dynamics

A Rensselaer Polytechnic Institute researcher used high hydrostatic pressure to examine conformational dynamics of human tRNA, finding excited states that play a role in both normal function and HIV infection. The study suggests new insights into RNA function and potential targets for therapeutics.

SourceRensselaer Polytechnic Institute·JournalProceedings of the National Academy of Sciences·TypeExperimental study·DateJun 22, 2023

Computational mid-infrared photothermal imaging unveils intracellular tau aggregates

A new technique, FBS-IDT, enables high-resolution imaging of intracellular tau aggregates in their native environments. It demonstrates potential correlations between tau fibrils and lipid accumulation, offering a cost-effective solution for neurodegeneration research.

SourceLight Publishing Center, Changchun Institute of Optics, Fine Mechanics And Physics, CAS·JournalLight Science & Applications·DateJun 20, 2023

Malaria: New molecule with therapeutic potential

CNRS scientists have identified a molecule that prevents parasites of Plasmodium from invading blood cells, paving the way for a new class of antimalarials. The discovery is based on the key role of myosin A in malaria infection and its inhibition by KNX-002.

SourceCNRS·JournalNature Communications·DateJun 15, 2023
Creality K1 Max 3D Printer

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High resolution X-ray microscopy with exceptionally low X-ray dose

The team created a new technique using Compton scattering to generate high-resolution images of biological structures at very low X-ray doses. This method allows imaging to be performed at less than 1% of the X-ray damage threshold of the specimen, enabling images with a resolution of 70 nanometres.

SourceLight Publishing Center, Changchun Institute of Optics, Fine Mechanics And Physics, CAS·JournalLight Science & Applications·DateJun 1, 2023

An algorithm for sharper protein films

Researchers have developed an algorithm that can be used to evaluate measurements at X-ray free-electron lasers, improving the precision of protein film analysis. The new method, called low-pass spectral analysis (LPSA), mitigates errors in protein movement reconstruction, allowing for more detailed information to be extracted from data.

SourcePaul Scherrer Institute·JournalStructural Dynamics·TypeExperimental study·DateMay 30, 2023

Clarity with tiny drug crystals

A team of researchers used 3D-electron diffraction/micro-crystal diffraction to determine the structure of Levocetirizine dihydrochloride, an over-the-counter oral antihistamine. This breakthrough allows for a better understanding of its properties and potential applications.

SourceWiley·JournalAngewandte Chemie International Edition·TypeExperimental study·DateMay 22, 2023

Picking up good vibrations – of proteins – at CHESS

A new method developed by Cornell researchers provides tools to interpret discarded X-ray crystallography data, enabling better understanding of proteins' movement, structure, and function. This breakthrough could lead to designing new drugs targeting specific proteins.

SourceCornell University·JournalNature Communications·DateMay 11, 2023
Garmin GPSMAP 67i with inReach

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Time-resolved crystallography for the masses

The Spitrobot simplifies sample preparation for time-resolved crystallography, allowing non-specialist groups to conduct experiments that previously required expert expertise. This technology accelerates research in enzymatic mechanisms and enables broader applications in biotechnology and disease-related problems.

SourceMax Planck Institute for the Structure and Dynamics of Matter·JournalNature Communications·DateMay 4, 2023

XFELs show the final milliseconds of oxygen formation

Researchers have visualized the crucial final step of oxygen formation in Photosystem II, a protein complex that powers photosynthesis. The study provides new insights into the interaction between the protein environment and the Mn/Ca cluster, shedding light on the mechanism behind water-splitting and oxygen production.

SourceUppsala University·JournalNature·TypeExperimental study·DateMay 3, 2023

Lightning strike creates phosphorus material for the first time on Earth

A team of scientists, led by University of South Florida professor Matthew Pasek, discovered a new phosphorus material in a fulgurite created by a lightning strike. The material is transitional between space minerals and those found on Earth, and its formation could have implications for our understanding of high-energy events.

SourceUniversity of South Florida·JournalNature Communications·TypeObservational study·DateApr 11, 2023
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Watch nanoparticles grow into crystals

For the first time, scientists have observed nanoparticles forming crystals with unprecedented clarity. The study used optimized liquid-phase transmission electron microscopy to capture the self-assembly process of thousands of nanoparticles. This breakthrough could lead to designing new materials for electronic applications.

SourceNorthwestern University·JournalNature Nanotechnology·TypeExperimental study·DateMar 30, 2023

Global analysis of coronavirus protein research reveals how countries respond to disease

A global analysis of coronavirus protein research found that countries with larger economies generated more 3D structure determinations for the protein components of coronaviruses. However, there were many outliers, with some advanced and prosperous countries publishing few or no structures, while others strongly affected by COVID-19 p...

SourceAmerican Society for Biochemistry and Molecular Biology·DateMar 26, 2023
GoPro HERO13 Black

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Eggshells of large, flightless birds evolved along different tracks

A new study analyzes the microstructure of eggshells from living and extinct flightless birds, shedding light on their evolutionary history. The research finds that wedge-like microstructures in rhea eggs evolved from ancient ancestors, while prism-like structures in ostrich and tinamous eggs likely developed independently.

SourceeLife·JournaleLife·DateJan 31, 2023

X-ray light reveals how virus responsible for COVID-19 covers its tracks, eluding the immune system

A new study uses serial femtosecond X-ray crystallography to reveal the structure of NendoU protein at room temperature. The resulting high-resolution image shows that the protein's flexibility plays a crucial role in its functional mechanism, which is essential for designing antiviral drugs against SARS-CoV-2.

SourceArizona State University·JournalStructure·TypeExperimental study·DateJan 10, 2023

Collaborative research between Oxford and Diamond reveals the structure of influenza replication, unveiling new discoveries and potential drug targets

Structural insights from collaborative Oxford-Diamond research reveal new potential drug targets for novel antiviral drugs. The study elucidated how the viral polymerase interacts with cellular proteins, including ANP32A, and appropriates it to shelter viral RNA from detection by the immune system.

SourceDiamond Light Source·JournalTrends in Microbiology·TypeImaging analysis·DateNov 4, 2022

Experimental monoclonal antibodies show promise against Epstein-Barr virus

Researchers developed investigational monoclonal antibodies targeting EBV's gH and gL proteins, blocking infection in human cells and providing nearly complete protection against EBV infection in mice. The findings highlight viable vaccine targets and potential treatment options for immunocompromised patients.

SourceNIH/National Institute of Allergy and Infectious Diseases·JournalImmunity·DateOct 27, 2022
Apple Watch Series 11 (GPS, 46mm)

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A new tool for cryo-electron microscopy

Researchers developed a new method combining cryo-EM with iDPC-STEM, achieving sub-nanometer resolution for protein structures. This technique expands possibilities for structural analysis of heterogeneous and single-particle samples.

SourceForschungszentrum Juelich·JournalNature Methods·DateSep 7, 2022
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