Single Crystal X-ray

Single crystal X-ray diffraction is a structural analysis technique that determines the three-dimensional arrangement of atoms in a crystalline sample, making molecular architecture visible at near-atomic resolution. In the method, a purified molecule forms an ordered crystal, which is exposed to X-rays; the resulting diffraction pattern is mathematically converted into an electron-density map and atomic model. In biology, single-crystal X-ray studies reveal how proteins, nucleic acids, and ligands adopt specific structures and interact, supporting mechanistic research, structure-guided drug design, and interpretation of mutations or engineered variants.

Single Crystal X-ray - Related Videos

Education

JoVE Science Education - Chemistry
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Single Crystal and Powder X-ray Diffraction

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2023

Source: Tamara M. Powers, Department of Chemistry, Texas A&M University X-ray crystallography is a technique that uses X-rays to study the structure of molecules. X-ray diffraction (XRD) experiments are routinely carried out with either single-crystal or powdered samples. Single-crystal XRD: Single-crystal XRD allows for absolute structure determination. With single-crystal XRD data, the exact atomic positions can be observed, and thus bond lengths and angles can be determined. This...

Education

JoVE Science Education - Chemistry

Growing Crystals for X-ray Diffraction Analysis

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2023

Source: Laboratory of Dr. Jimmy Franco - Merrimack College X-ray crystallography is a method commonly used to determine the spatial arrangement of atoms in a crystalline solid, which allows for the determination of the three-dimensional shape of a molecule or complex. Determining the three-dimensional structure of a compound is of particular importance, since a compound's structure and function are intimately related. Information about a compound's structure is often used to explain its...

Research

JoVE Journal - Biology

Protein Crystallization for X-ray Crystallography

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Cited by 71 •

2011

The 3-D structure of a molecule provides a unique understanding of how the molecule functions. The principal method for structure determination at near-atomic resolution is X-ray crystallography. Here, we demonstrate the current methods for obtaining three-dimensional crystals of any given macromolecule that are suitable for structure determination by X-ray crystallography.

Preparing Adherent Cells for X-ray Fluorescence Imaging by Chemical Fixation

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Cited by 14 •

2015

Here, we present a protocol on how to determine the quantity and distribution of metals in a sample using synchrotron X-ray fluorescence. We focus on adherent cells, and describe the chemical fixation method to prepare this sample. We then describe how to mount and image the sample using synchrotron X-rays.

Measurement of X-ray Beam Coherence along Multiple Directions Using 2-D Checkerboard Phase Grating

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Cited by 10 •

2016

The measurement protocol and data analysis procedure are given for obtaining transverse coherence of a synchrotron radiation X-ray source along four directions simultaneously using a single 2-D checkerboard phase grating. This simple technique can be applied for complete transverse coherence characterization of X-ray sources and X-ray optics.

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