DOE PAGES title logo U.S. Department of Energy
Office of Scientific and Technical Information

Title: In situ counter-diffusion crystallization and long-term crystal preservation in microfluidic fixed targets for serial crystallography

Journal Article · · Journal of Applied Crystallography (Online)

Compared with batch and vapor diffusion methods, counter diffusion can generate larger and higher-quality protein crystals yielding improved diffraction data and higher-resolution structures. Typically, counter-diffusion experiments are conducted in elongated chambers, such as glass capillaries, and the crystals are either directly measured in the capillary or extracted and mounted at the X-ray beamline. Despite the advantages of counter-diffusion protein crystallization, there are few fixed-target devices that utilize counter diffusion for crystallization. In this article, different designs of user-friendly counter-diffusion chambers are presented which can be used to grow large protein crystals in a 2D polymer microfluidic fixed-target chip. Methods for rapid chip fabrication using commercially available thin-film materials such as Mylar, propylene and Kapton are also detailed. Rules of thumb are provided to tune the nucleation and crystal growth to meet users' needs while minimizing sample consumption. These designs provide a reliable approach to forming large crystals and maintaining their hydration for weeks and even months. This allows ample time to grow, select and preserve the best crystal batches before X-ray beam time. Importantly, the fixed-target microfluidic chip has a low background scatter and can be directly used at beamlines without any crystal handling, enabling crystal quality to be preserved. The approach is demonstrated with serial diffraction of photoactive yellow protein, yielding 1.32 Å resolution at room temperature. Fabrication of this standard microfluidic chip with commercially available thin films greatly simplifies fabrication and provides enhanced stability under vacuum. These advances will further broaden microfluidic fixed-target utilization by crystallographers.

Sponsoring Organization:
USDOE
Grant/Contract Number:
AC02-76SF00515; AC52-07NA27344
OSTI ID:
2452841
Journal Information:
Journal of Applied Crystallography (Online), Journal Name: Journal of Applied Crystallography (Online) Journal Issue: 5 Vol. 57; ISSN 1600-5767; ISSN JACGAR
Publisher:
International Union of Crystallography (IUCr)Copyright Statement
Country of Publication:
Denmark
Language:
English

References (43)

Crystallization and stability of different protein crystal modifications: A case study of lysozyme journal January 2015
The xanthopsins: a new family of eubacterial blue-light photoreceptors. journal July 1996
Counterdiffusion protein crystallisation in microgravity and its observation with PromISS (protein microscope for the international space station) journal September 2006
Isolation and characterization of soluble cytochromes, ferredoxins and other chromophoric proteins from the halophilic phototrophic bacterium Ectothiorhodospira halophila journal January 1985
Reconstitution photoactive yellow protein from apoprotein and p‐coumaric acid derivatives journal October 1995
Improved isolation and crystallization of photosystem I for structural analysis journal June 1998
Counterdiffusion Methods for Macromolecular Crystallization book January 2003
Protein crystallization by capillary counterdiffusion for applied crystallographic structure determination journal April 2003
Counterdiffusion methods applied to protein crystallization journal November 2009
Efficient Screening Methodology for Protein Crystallization Based on the Counter-Diffusion Technique journal November 2017
1.4 .ANG. Structure of Photoactive Yellow Protein, a Cytosolic Photoreceptor: Unusual Fold, Active Site, and Chromophore journal May 1995
Fiji: an open-source platform for biological-image analysis journal June 2012
Time-resolved serial femtosecond crystallography at the European XFEL journal November 2019
Nylon mesh-based sample holder for fixed-target serial femtosecond crystallography journal May 2019
Fixed-target protein serial microcrystallography with an x-ray free electron laser journal August 2014
Plug-and-play polymer microfluidic chips for hydrated, room temperature, fixed-target serial crystallography journal January 2021
Polymer-based microfluidic device for on-chip counter-diffusive crystallization and in situ X-ray crystallography at room temperature journal January 2023
Microfluidic chips for the crystallization of biomacromolecules by counter-diffusion and on-chip crystal X-ray analysis journal January 2009
All polymer microfluidic chips—A fixed target sample delivery workhorse for serial crystallography journal September 2023
Diffusion-limited kinetics of the solution-solid phase transition of molecular substances journal January 2003
A robust and scalable microfluidic metering method that allows protein crystal growth by free interface diffusion journal December 2002
Crystallography using an X-ray free-electron laser journal July 2014
An ultra-compact x-ray free-electron laser journal September 2020
Trainable Weka Segmentation: a machine learning tool for microscopy pixel classification journal March 2017
The development and exploitation of synchrotron single-crystal diffraction for chemistry and materials journal April 2019
xia2 : an expert system for macromolecular crystallography data reduction journal December 2009
High-throughput counter-diffusion capillary crystallization andin situdiffraction using high-pressure freezing in protein crystallography journal September 2012
A high-transparency, micro-patternable chip for X-ray diffraction analysis of microcrystals under native growth conditions journal September 2015
Equilibration of precipitants in a counter-diffusion apparatus for protein crystallization journal June 2023
Crystallization of ornithine acetyltransferase from yeast by counter-diffusion and preliminary X-ray study
  • Maes, Dominique; Crabeel, Marjolaine; Van de Weerdt, Cécile
  • Acta Crystallographica Section F Structural Biology and Crystallization Communications, Vol. 62, Issue 12 https://doi.org/10.1107/S1744309106050561
journal November 2006
Rapid and efficient room-temperature serial synchrotron crystallography using the CFEL TapeDrive journal October 2022
3D-printed sheet jet for stable megahertz liquid sample delivery at X-ray free-electron lasers journal September 2023
DIALS : implementation and evaluation of a new integration package journal February 2018
Crystallography on a chip – without the chip: sheet-on-sheet sandwich journal October 2018
Macromolecular structure determination using X-rays, neutrons and electrons: recent developments in Phenix journal October 2019
Scaling diffraction data in the DIALS software package: algorithms and new approaches for multi-crystal scaling journal March 2020
The CCP4 suite: integrative software for macromolecular crystallography journal May 2023
A user-friendly plug-and-play cyclic olefin copolymer-based microfluidic chip for room-temperature, fixed-target serial crystallography journal September 2023
Conformational substates in different crystal forms of the photoactive yellow protein-Correlation with theoretical and experimental flexibility journal December 2008
Time-resolved serial crystallography captures high-resolution intermediates of photoactive yellow protein journal December 2014
Time-resolved protein nanocrystallography using an X-ray free-electron laser journal January 2012
On the Quality of Protein Crystals Grown under Diffusion Mass-transport Controlled Regime (I) journal January 2020
Through Diffusion Measurements of Molecules to a Numerical Model for Protein Crystallization in Viscous Polyethylene Glycol Solution journal June 2022