Crystal Density Optimization

Crystal Density Optimization is the systematic adjustment of crystallization conditions to control the number, size, and packing of crystals, an important step in producing suitable samples for biochemical analysis. By balancing protein concentration, precipitant levels, pH, temperature, and additives, researchers regulate supersaturation so that nucleation and crystal growth proceed at useful rates rather than producing overcrowded or poorly formed crystals. In protein crystallography, this optimization can improve crystal uniformity and diffraction quality, supporting more reliable structural determination. It also helps researchers refine crystallization screens, compare experimental conditions, and obtain reproducible crystals for studying molecular structure and function.

Crystal Density Optimization - Related Videos

Education

JoVE Core - Physical Chemistry

Crystal Density

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2026

The crystal lattice structure of a material allows us to determine how many molecules exist in its unit cell. With this information, alongside the unit-cell parameters - three distance parameters (a, b, c) and three angular parameters (α, β, γ).Density (ρ) = (Z × M) / (a × b × c × NA)where:Z is the number of formula units per unit cellM is the molar mass of the substancea, b, and c are the edge lengths of the unit cellNA is Avogadro’s numberFor a simple cubic lattice, atoms are located only at...

Research

JoVE Journal - Biology

Iterative Optimization of DNA Duplexes for Crystallization of SeqA-DNA Complexes

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2012

Crystal structure of protein–DNA complexes can provide insight into protein function, mechanism, as well as, the nature of the specific interaction. Here, we report how to optimize the length, sequence and ends of duplex DNA for co-crystallization with Escherichia coli SeqA, a negative regulator of replication initiation.

Research

JoVE Journal - Biology
Free Sample

Optimization of Crystal Growth for Neutron Macromolecular Crystallography

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Cited by 2 •

2021

Structural studies of biomacromolecules by crystallography require high-quality crystals. Here we demonstrate a protocol that can be used by OptiCrys (a fully automated instrument developed in our lab) and/or microdialysis buttons for growing large high-quality crystals based on knowledge of the crystallization phase diagram.

Determining Optimal Target Cell Density Using a Luciferase-Based Pseudovirus Infection Assay

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2026

Source: Chang, X., et al. Preparation of Pseudo-Typed H5 Avian Influenza Viruses with Calcium Phosphate Transfection Method and Measurement of Antibody Neutralizing Activity. J. Vis. Exp. (2021)This video demonstrates a luciferase-based pseudovirus titration assay to determine the optimal target cell density for maximum infection. By comparing luminescence across cell densities, the method ensures high assay sensitivity and reproducibility for downstream applications.

Protein Crystallization

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2023

Protein crystallization, obtaining a solid lattice of biomolecules, elucidates protein structure and enables the study of protein function. Crystallization involves drying purified protein under a combination of many factors, including pH, temperature, ionic strength, and protein concentration. Once crystals are obtained, the protein structure can be elucidated by x-ray diffraction and computation of an electron density model. This video introduces protein crystallization and shows a general...

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