Jove
Visualize
Contact Us
JoVE
x logofacebook logolinkedin logoyoutube logo
ABOUT JoVE
OverviewLeadershipBlogJoVE Help Center
AUTHORS
Publishing ProcessEditorial BoardScope & PoliciesPeer ReviewFAQSubmit
LIBRARIANS
TestimonialsSubscriptionsAccessResourcesLibrary Advisory BoardFAQ
RESEARCH
JoVE JournalMethods CollectionsJoVE Encyclopedia of ExperimentsArchive
EDUCATION
JoVE CoreJoVE BusinessJoVE Science EducationJoVE Lab ManualFaculty Resource CenterFaculty Site
Terms & Conditions of Use
Privacy Policy
Policies

Related Concept Videos

The Nucleus01:32

The Nucleus

The nucleus is a membrane-bound organelle that acts as a control center in a eukaryotic cell. It contains chromosomal DNA, which controls gene expression and precisely regulates the production of proteins within the cell. In contrast, the DNA inside the mitochondria and chloroplast only carries out functions that are specific to those organelles.
Arrangement of DNA within Nucleus
The regulation of gene expression inside the nucleus is dependent on many factors, including the DNA structure. The...
The Nucleolus02:55

The Nucleolus

The nucleolus is the most prominent substructure of the nucleus. When it was first discovered, it was considered to be an isolated organelle that forms fibrils and granules. In 1931, the relationship between the nucleolus and chromosomes was first described by Heitz. He observed that the appearance and size of nucleolus varies depending on the stage of the cell cycle. He also noticed constricted regions on different chromosomes clustered together at definite cell cycle stages. These regions,...
Additional Subnuclear Structures02:10

Additional Subnuclear Structures

The eukaryotic nucleus is a double membrane-bound organelle that contains nearly all of the cell’s genetic material in the form of chromosomes. It is rightly called the “brain” of the cell as it shoulders the responsibility of responding to various physiological processes, stress, altered metabolic conditions, and other cellular signals. 
The nucleus contains many membrane-less subnuclear organelles or nuclear bodies, such as nucleoli, Cajal bodies, speckles, paraspeckles, etc. These nuclear...
Studying the Cytoskeleton01:17

Studying the Cytoskeleton

The cytoskeletal architecture can be studied using different microscopic and biochemical techniques. Electron microscopy was instrumental in discovering the cytoskeletal architecture around the 1960s, which allowed obtaining structural information at a high-resolution level. However, the sample preparation procedure often limits this ability in biological samples. Several protocols have been developed over the years to optimize sample preparation. In one of the protocols known as rotary...
The Nucleus01:25

The Nucleus

The nucleus is a membrane-bound organelle that acts as a control center in a eukaryotic cell. It contains chromosomal DNA, which controls gene expression and precisely regulates the production of proteins within the cell. In contrast, the DNA inside the mitochondria and chloroplast only carries out functions that are specific to those organelles.
Arrangement of DNA within Nucleus
The regulation of gene expression inside the nucleus is dependent on many factors, including the DNA structure. The...
Cell Inclusions01:27

Cell Inclusions

Prokaryotic cells possess a variety of inclusions that play crucial roles in nutrient storage, metabolic processes, and environmental adaptation. These structures enable bacteria to thrive under fluctuating environmental conditions by storing essential resources and optimizing their metabolic efficiency.Carbon Storage: Poly-β-Hydroxybutyric Acid and Glycogen GranulesBacteria frequently store excess carbon in specialized granules. Poly-β-hydroxybutyric acid (PHB) granules are lipid polymers that...

You might also read

Related Articles

Articles linked to this work by shared authors, journal, and citation graph.

Sort by
Same author

Single-cell structural biology with intracellular electron crystallography.

Nature communications·2026
Same author

Guide to dynamic OCT data analysis.

Biomedical optics express·2025
Same author

The Pharmaceutical Future of Remimazolam as Compared to Propofol and Midazolam: A Literature Review.

South Dakota medicine : the journal of the South Dakota State Medical Association·2024
Same author

Distraction Enterogenesis in Rats: A Novel Approach for the Treatment of Short Bowel Syndrome.

Pathophysiology : the official journal of the International Society for Pathophysiology·2024
Same author

Histologic Analysis of 'Distraction Vaginogenesis' in a Rat Model.

Pathophysiology : the official journal of the International Society for Pathophysiology·2024
Same author

SARS-CoV-2 M<sup>pro</sup> responds to oxidation by forming disulfide and NOS/SONOS bonds.

Nature communications·2024

Related Experiment Video

Updated: Jun 29, 2026

High-throughput Crystallization of Membrane Proteins Using the Lipidic Bicelle Method
07:26

High-throughput Crystallization of Membrane Proteins Using the Lipidic Bicelle Method

Published on: January 9, 2012

23.1K

Intracellular protein crystallization in living insect cells.

Robert Schönherr1, Nina Eichler1, Fatama A Sornaly1

  • 1Institute of Biochemistry, University of Lübeck, Germany.

FEBS Open Bio
|March 28, 2025
PubMed
Summary

Intracellular protein crystallization enables serial diffraction experiments without purification. This streamlined pipeline, InCellCryst, optimizes crystal growth within living insect cells for faster structural analysis.

Keywords:
InCellCrystX‐ray crystallographybaculovirusin cellulo crystallizationprotein crystallizationserial X‐ray diffraction

More Related Videos

Transient Expression and Cellular Localization of Recombinant Proteins in Cultured Insect Cells
12:09

Transient Expression and Cellular Localization of Recombinant Proteins in Cultured Insect Cells

Published on: April 20, 2017

10.5K
Microcrystallography of Protein Crystals and In Cellulo Diffraction
09:35

Microcrystallography of Protein Crystals and In Cellulo Diffraction

Published on: July 21, 2017

8.5K

Related Experiment Videos

Last Updated: Jun 29, 2026

High-throughput Crystallization of Membrane Proteins Using the Lipidic Bicelle Method
07:26

High-throughput Crystallization of Membrane Proteins Using the Lipidic Bicelle Method

Published on: January 9, 2012

23.1K
Transient Expression and Cellular Localization of Recombinant Proteins in Cultured Insect Cells
12:09

Transient Expression and Cellular Localization of Recombinant Proteins in Cultured Insect Cells

Published on: April 20, 2017

10.5K
Microcrystallography of Protein Crystals and In Cellulo Diffraction
09:35

Microcrystallography of Protein Crystals and In Cellulo Diffraction

Published on: July 21, 2017

8.5K

Area of Science:

  • Structural biology
  • Biophysics
  • X-ray crystallography

Background:

  • Crystallization of recombinant proteins in living cells is an emerging technique.
  • This method offers a quasi-native environment, avoiding protein purification.
  • Existing methods require systematic screening strategies for intracellular crystal growth.

Purpose of the Study:

  • To present a detailed protocol for the InCellCryst pipeline.
  • To optimize intracellular microcrystal production for serial X-ray diffraction.
  • To utilize cellular compartments as screening parameters for crystal growth.

Main Methods:

  • Optimized target gene expression using a baculovirus vector system.
  • Intracellular crystal formation and detection within living insect cells.
  • Serial X-ray diffraction data collection directly from cells.

Main Results:

  • Successful production of homogeneous microcrystals within living insect cells.
  • Demonstration of serial X-ray diffraction experiments using these intracellular crystals.
  • Potential for diffraction data collection within 24 days of target gene cloning.

Conclusions:

  • The InCellCryst pipeline provides a systematic and versatile strategy for intracellular protein crystallization.
  • This approach facilitates rapid structural determination using X-ray diffraction.
  • Intracellular crystallization is a powerful complement to conventional protein crystallization techniques.