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Flexible DNA transforms protein crystallization

Northwestern University chemists have developed a new approach that replaces traditional trial-and-error methods with intentional design using flexible DNA strands. The strategy enables precise control over protein connections, creating soft, flexible crystals with high structural order. This breakthrough simplifies one of structural b...

SourceNorthwestern University·JournalScience Advances·DateJul 29, 2026
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Solid but fluid: New materials reconfigure their entire crystal structure in response to humidity

Researchers at CUNY ASRC have created peptide-based crystalline solids that can switch between soft layered and stiff honeycomb architectures in response to humidity. These dynamic solids exhibit large, controllable changes in mechanical and optical properties, enabling unprecedented adaptability.

SourceAdvanced Science Research Center, GC/CUNY·JournalMatter·TypeExperimental study·DateMar 11, 2026

A smarter way to watch biology at work

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

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
SAMSUNG T9 Portable SSD 2TB

SAMSUNG T9 Portable SSD 2TB transfers large imagery and model outputs quickly between field laptops, lab workstations, and secure archives.

Proteins revolutionize organ preservation

A new study reveals specialized proteins can dramatically delay ice crystal formation in extreme cold, paving the way for impossible organ transplants. Cryogenic damage compromises cellular structures, leading to irreversible damage and organ failure.

SourceThe Hebrew University of Jerusalem·JournalLangmuir·TypeExperimental study·DateJun 17, 2024

Engineering bacteria to biosynthesize intricate protein complexes

Researchers developed an innovative bioengineering approach using genetically modified bacteria to incorporate protein cages around protein crystals. This method efficiently produces highly customized protein complexes for specialized applications. The resulting crystals have a core-shell structure with a cubic PhC core covered in five...

SourceTokyo Institute of Technology·JournalNano Letters·TypeExperimental study·DateNov 15, 2023

New study unveils nanocrystal shines on and off indefinitely

Researchers at Ulsan National Institute of Science and Technology have made a breakthrough in creating ultra-photostable avalanching nanoparticles that can perform unlimited photoswitching. This achievement has significant implications for fields like optical probes, 3D optical memory, and super-resolution microscopy.

SourceUlsan National Institute of Science and Technology(UNIST)·JournalNature·DateMay 31, 2023
Apple iPhone 17 Pro

Apple iPhone 17 Pro delivers top performance and advanced cameras for field documentation, data collection, and secure research communications.

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

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

New purification method could make protein drugs cheaper

MIT engineers develop a new purification method using bioconjugate-functionalized nanoparticles to rapidly crystallize proteins, reducing the cost of manufacturing protein drugs. The approach has shown promising results in isolating lysozyme and insulin, with faster crystallization times and increased nucleation rates.

SourceMassachusetts Institute of Technology·JournalACS Applied Materials & Interfaces·DateFeb 28, 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
Kestrel 3000 Pocket Weather Meter

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To track disease-carrying mosquitoes, researchers tag them with DNA barcodes

Researchers develop a new method to track disease-carrying mosquitoes by ingesting harmless DNA particles, providing unique fingerprints of information. This innovative approach has the potential to revolutionize mosquito-borne disease surveillance and tracking, offering insights into mosquito movement and hotspots.

SourceColorado State University·JournalPNAS Nexus·TypeExperimental study·DateNov 29, 2022

Novel cell-free protein crystallization method to advance structural biology

Scientists developed a novel cell-free protein crystallization (CFPC) method that allows rapid and direct formation of protein crystals without purification processes. The technique has enabled the analysis of unstable proteins, increasing knowledge of cellular processes and functions.

SourceTokyo Institute of Technology·JournalScientific Reports·TypeExperimental study·DateOct 3, 2022

New study explores cell receptor crucial for cardiovascular health

A new study provides critical insights into the pGC-A membrane receptor, a vital component of cardiovascular regulation. The research offers a clearer understanding of this complex receptor and its signaling mechanisms, paving the way for new anti-hypertensive drugs.

SourceArizona State University·JournalScientific Reports·TypeExperimental study·DateAug 5, 2022
Fluke 87V Industrial Digital Multimeter

Fluke 87V Industrial Digital Multimeter is a trusted meter for precise measurements during instrument integration, repairs, and field diagnostics.

New insights into switchable MOF structures

Researchers studied DUT-8, a switchable MOF structure that changes shape in response to guest molecules. The findings improve understanding of switching processes and gas exchange reactions in MOFs, paving the way for targeted development of functional materials.

SourceHelmholtz-Zentrum Berlin für Materialien und Energie·JournalNature Chemistry·DateMay 28, 2021
Nikon Monarch 5 8x42 Binoculars

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How the 3-D structure of eye-lens proteins is formed

Scientists observed disulphide bridge formation in ribosomal exit tunnel during protein synthesis, challenging previous assumptions. The discovery sheds new light on the causes of lens opacities and cataracts, a leading cause of vision loss worldwide.

SourceGoethe University Frankfurt·JournalNature Communications·DateFeb 10, 2021

New microfluidic device minimizes loss of high value samples

A team of scientists from Arizona State University developed a microfluidic device that reduces sample size and waste in X-ray crystallographic experiments. The device, validated by publishing results in Nature Communications, allows for the determination of protein structures with high resolution and reduced sample consumption.

SourceArizona State University·JournalNature Communications·DateSep 9, 2020

Researchers map protein motion

Cornell structural biologists develop a new method to capture collective protein motion, revealing subtle breathing motions that direct biochemical function. The technique adds valuable information to regular crystallography experiments.

SourceCornell University·JournalNature Communications·DateMar 9, 2020
Creality K1 Max 3D Printer

Creality K1 Max 3D Printer rapidly prototypes brackets, adapters, and fixtures for instruments and classroom demonstrations at large build volume.

Scientists discover how proteins form crystals that tile a microbe's shell

Researchers have uncovered the nucleation process behind microbial shells' formation, revealing the role of protein building blocks and their interaction with environments. The study could help scientists design self-assembling nanostructures for various tasks.

SourceDOE/SLAC National Accelerator Laboratory·JournalProceedings of the National Academy of Sciences·DateDec 17, 2019

Protein imaging at the speed of life

The European XFEL has enabled scientists to create molecular movies of ultrafast protein movement, allowing them to observe proteins' physical functioning and enzyme activity in real-time. This breakthrough capability opens the door to answering bigger biological questions and potentially saving lives.

SourceUniversity of Wisconsin - Milwaukee·JournalNature Methods·DateNov 18, 2019

WSU study identifies potential new target for treatment of gout

Researchers at Washington State University have identified a new therapeutic target for the treatment of gout, a common type of arthritis that causes episodes of painful and stiff joints. Blocking the signaling molecule TAK1 can suppress inflammation caused by gout, according to the study.

SourceWashington State University·JournalCellular and Molecular Immunology·DateOct 29, 2019

Engineered protein crystals make cells magnetic

Researchers have engineered protein crystals that can generate magnetic forces many times stronger than previously reported. By introducing these crystals into living cells, scientists can move the cells around with a magnet, offering potential applications in fields such as biotechnology and biomedical engineering.

SourceAmerican Chemical Society·JournalNano Letters·DateSep 25, 2019

New sample holder for protein crystallography

The new sample holder allows for direct crystallization of proteins on the holder, eliminating the need for transfer and reducing damage risk. This innovation simplifies protein crystallography by grouping up to 24 sample holders onto one plate.

SourceHelmholtz-Zentrum Berlin für Materialien und Energie·JournalJournal of Visualized Experiments·DateSep 16, 2019
Apple AirPods Pro (2nd Generation, USB-C)

Apple AirPods Pro (2nd Generation, USB-C) provide clear calls and strong noise reduction for interviews, conferences, and noisy field environments.

New approach for solving protein structures from tiny crystals

Scientists at Brookhaven National Laboratory developed a new approach to solve protein structures from tiny crystals, utilizing unique sample-handling and data-assembly techniques. The method enables the study of difficult-to-crystallize cell-surface receptors and other membrane proteins, improving our understanding of health and disease.

SourceDOE/Brookhaven National Laboratory·JournalIUCrJ·DateMay 3, 2019

Can an antifreeze protein also promote ice formation?

Antifreeze proteins, typically preventing ice formation, have also been found to promote its growth at extremely low temperatures. This study, published in the Journal of Physical Chemistry Letters, provides insight into the basic processes of ice formation and suggests potential implications for understanding climate.

SourceWeizmann Institute of Science·JournalThe Journal of Physical Chemistry Letters·DateMar 14, 2019

How antifreeze proteins make ice crystals grow

Researchers from Bielefeld University and international partners have confirmed two-fold ability of antifreeze molecules to trigger or inhibit ice crystal formation depending on temperature. This discovery challenges the long-held view that antifreeze proteins only inhibit ice crystal growth.

SourceBielefeld University·JournalThe Journal of Physical Chemistry Letters·DateMar 7, 2019

Enzyme's unfrozen adventure: In crystallo protein thermodynamics

A team from Osaka University has made a groundbreaking discovery using non-cryogenic crystals to analyze protein conformational changes and thermodynamic properties. This breakthrough technique allows for precise temperature control, providing valuable insights into the structure and function of enzymes.

SourceOsaka University·JournalProceedings of the National Academy of Sciences·DateDec 20, 2018
Garmin GPSMAP 67i with inReach

Garmin GPSMAP 67i with inReach provides rugged GNSS navigation, satellite messaging, and SOS for backcountry geology and climate field teams.

Focus on this: Japanese team increases X-ray laser focusing ability

A Japanese team has developed a new technique for manufacturing ultraprecise multilayer focusing mirrors that can achieve X-ray beam sizes of less than ten nanometers. This breakthrough enables high-performance X-ray free-electron lasers (XFELs) with improved quality and intensity.

SourceOsaka University·JournalScientific Reports·DateDec 18, 2018

Nanotubes built from protein crystals: Breakthrough in biomolecular engineering

Scientists have developed a method to construct protein nanotubes from engineered protein crystals, which could accelerate the development of artificial enzymes, nano-sized carriers and delivery systems. The new method, reported in Chemical Science, uses protein crystals as a scaffold for proteins to self-assemble into desired structures.

SourceTokyo Institute of Technology·JournalChemical Science·DateNov 14, 2018

Molecular details of protein crystal nucleation uncovered

A team of scientists has uncovered the molecular details of protein crystal nucleation, a process with great medical and scientific relevance. They developed a new methodology to study this elusive system, providing insights into polymorph selection and guiding the crystallization process to produce desired crystal forms.

SourceVIB (the Flanders Institute for Biotechnology)·JournalNature·DateApr 4, 2018

New tool for the crystallization of proteins

A new method has been developed to crystallize membrane proteins of any type or size, allowing researchers to elucidate their structure. The technique uses lipid-water mixtures to create self-assembled channels that enable large proteins to be crystallized.

SourceETH Zurich·JournalNature Communications·DateMar 5, 2018
DJI Air 3 (RC-N2)

DJI Air 3 (RC-N2) captures 4K mapping passes and environmental surveys with dual cameras, long flight time, and omnidirectional obstacle sensing.

Transforming fibrils into crystals

An international team of experts has made a fundamental discovery by transforming amyloid fibrils into crystals, a process previously thought to be impossible. The transformation involves untwisting the fibril to form an elongated, matchstick-like crystal with unprecedented stability.

SourceETH Zurich·JournalNature Communications·DateNov 8, 2017

NYU dentistry study pinpoints role of proteins that produce pearls

Researchers at NYU Dentistry have identified two proteins that regulate the formation of pearls, a process that could lead to the development of fracture-resistant materials. These materials could be used in dental implants, aerospace applications, or energy transmission.

SourceNew York University·JournalBiochemistry·DateSep 22, 2017
Sony Alpha a7 IV (Body Only)

Sony Alpha a7 IV (Body Only) delivers reliable low-light performance and rugged build for astrophotography, lab documentation, and field expeditions.

Novel nozzle saves crystals

Scientists developed a novel double flow-focusing nozzle to reduce protein crystal consumption in X-ray crystallography. The new device enables stable experimental conditions, increases the rate of high-quality diffraction patterns, and widens the spectrum of biomolecules that can be analysed.

SourceDeutsches Elektronen-Synchrotron DESY·JournalScientific Reports·DateMar 16, 2017

X-ray pulses reveal structure of viral cocoon

Researchers used high-intensity X-ray pulses to determine the structure of a viral cocoon down to a scale of 0.2 nanometres, approaching atom-scale resolution. The tiny viruses with their crystal casing are by far the smallest protein crystals ever analyzed using X-ray crystallography.

SourceDeutsches Elektronen-Synchrotron DESY·JournalProceedings of the National Academy of Sciences·DateFeb 13, 2017

In-cell molecular sieve from protein crystal

Researchers at Tokyo Institute of Technology create porous protein crystals with increased porosity, allowing for the accumulation and storage of exogenous molecules in living cells. The engineered crystals showed high stability and ability to retain fluorescent dyes in live cells.

SourceTokyo Institute of Technology·JournalACS Nano·DateFeb 9, 2017

Microcrystals of membrane proteins no longer hiding from scientists

Researchers from MIPT and JINR use intersecting laser beams to test protein crystal quality and spot peculiar protein features. This method improves the accuracy of detecting small crystals, essential for studying membrane proteins.

SourceMoscow Institute of Physics and Technology·JournalJournal of the American Chemical Society·DateOct 19, 2016
Anker Laptop Power Bank 25,000mAh (Triple 100W USB-C)

Anker Laptop Power Bank 25,000mAh (Triple 100W USB-C) keeps Macs, tablets, and meters powered during extended observing runs and remote surveys.

'Adaptive protein crystal' could form new kind of protective material

Researchers have created an 'adaptive protein crystal' that exhibits a unique property called 'auxetic', where stretching or compressing the material causes it to thicken or shrink in the opposite direction. This material has potential applications in shock-absorbing materials and body armor.

SourceUniversity of California - San Diego·JournalNature·DateMay 2, 2016

Outsourcing crystal growth...to space

Japanese researchers grew protein crystals in space using interferometry to measure growth rate and dissolution properties. The results showed an increased growth rate despite expected suppression of solution convection, which may be due to suppressed transport speed of impurity molecules.

SourceAmerican Institute of Physics·JournalReview of Scientific Instruments·DateMar 15, 2016

Twisted X-rays unravel the complexity of helical structures

Researchers propose using twisted X-rays to study non-crystalline but symmetric structures like helices. This method matches the symmetry of incoming radiation to the structure's symmetry, producing sharp peaks in diffraction data that can be used for accurate structure prediction.

SourceInternational Union of Crystallography·JournalActa Crystallographica Section A·DateFeb 9, 2016

Bacteriorhodopsin crystals consume their smaller counterparts

A team of scientists has discovered that larger crystals of bacteriorhodopsin grow by consuming smaller crystals around them, creating a depletion zone. This phenomenon was observed using fluorescence microscopy over the course of a month, showing how the distribution of protein in the sample changed with time.

SourceMoscow Institute of Physics and Technology·JournalCrystal Growth & Design·DateDec 9, 2015
CalDigit TS4 Thunderbolt 4 Dock

CalDigit TS4 Thunderbolt 4 Dock simplifies serious desks with 18 ports for high-speed storage, monitors, and instruments across Mac and PC setups.

Even if imprisoned inside a crystal, molecules can still move

Researchers used X-ray crystallography, NMR and simulation to study protein movements in crystals. The results show that proteins continue to produce slight residual movements even when crystallised, which blurs the structures obtained via crystallography.

SourceForschungszentrum Juelich·JournalNature Communications·DateOct 6, 2015

Cells target giant protein crystals for degradation

Researchers at RIKEN Brain Science Institute engineered fluorescent protein that rapidly assembles into large crystals in living cells. Cells actively targeted the crystals for degradation, a process known as autophagy, suggesting potential evolutionary pressure to discourage crystal formation.

SourceRIKEN·JournalMolecular Cell·DateMar 12, 2015

Smart crystallization

Researchers have developed a novel nucleating agent that improves crystal quality for reluctant proteins and boosts the probability of success in high-throughput trials. The modified molecularly imprinted polymer (MIP) is suitable for automated optimization, making it a potent tool for structural biologists.

SourceInternational Union of Crystallography·DateMar 2, 2015
Meta Quest 3 512GB

Meta Quest 3 512GB enables immersive mission planning, terrain rehearsal, and interactive STEM demos with high-resolution mixed-reality experiences.

New studies power legacy of UW-Madison research, 60 years later

Researchers have made significant discoveries about coenzyme Q and its production pathway, shedding light on mitochondrial function and its link to human diseases. Two new studies published in PNAS and Molecular Cell reveal the biochemical functions of key proteins involved in coenzyme Q synthesis.

SourceUniversity of Wisconsin-Madison·JournalMolecular Cell·DateDec 11, 2014

Antifreeze proteins in Antarctic fish prevent both freezing and melting

Researchers discovered that antifreeze protein-bound ice crystals resist melting even when temperatures warm, leading to potential adverse physiological consequences for the fish. The study also found ice superheating in nature, a phenomenon where internal ice crystals fail to melt at their normal melting point.

SourceU.S. National Science Foundation·JournalProceedings of the National Academy of Sciences·DateSep 23, 2014

Case Western Reserve University on track to become No. 1 synchrotron lab in world

The Case Center for Synchrotron Biosciences will assemble cutting-edge Nnew beamlines at Brookhaven National Laboratory, delivering ultra powerful x-rays to visualize nano-scale structures of molecules and proteins. The new facility will enable scientists to pinpoint disease-causing vulnerabilities and target therapeutic interventions.

SourceCase Western Reserve University·DateSep 23, 2014

Study: Antifreeze proteins in Antarctic fishes prevent freezing ... and melting

Researchers discovered that antifreeze proteins found in Antarctic fish also prevent internal ice crystals from melting, leading to potential health issues. The study found that these protein-bound ice crystals resist melting even when temperatures warm, causing superheating.

SourceUniversity of Illinois at Urbana-Champaign, News Bureau·JournalProceedings of the National Academy of Sciences·DateSep 22, 2014