Literature DB >> 20445236

Application of protein engineering to enhance crystallizability and improve crystal properties.

Zygmunt S Derewenda1.   

Abstract

Until recently, protein crystallization has mostly been regarded as a stochastic event over which the investigator has little or no control. With the dramatic technological advances in synchrotron-radiation sources and detectors and the equally impressive progress in crystallographic software, including automated model building and validation, crystallization has increasingly become the rate-limiting step in X-ray diffraction studies of macromolecules. However, with the advent of recombinant methods it has also become possible to engineer target proteins and their complexes for higher propensity to form crystals with desirable X-ray diffraction qualities. As most proteins that are under investigation today are obtained by heterologous overexpression, these techniques hold the promise of becoming routine tools with the potential to transform classical crystallization screening into a more rational high-success-rate approach. This article presents an overview of protein-engineering methods designed to enhance crystallizability and discusses a number of examples of their successful application.

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Year:  2010        PMID: 20445236      PMCID: PMC3089013          DOI: 10.1107/S090744491000644X

Source DB:  PubMed          Journal:  Acta Crystallogr D Biol Crystallogr        ISSN: 0907-4449


  149 in total

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4.  Solving the structure of human H ferritin by genetically engineering intermolecular crystal contacts.

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  44 in total

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6.  An electrically assisted device for protein crystallization in a vapor-diffusion setup.

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7.  Unscrambling the effect of C-terminal tail deletion on the stability of a cold-adapted, organic solvent stable lipase from Staphylococcus epidermidis AT2.

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8.  DNA-Directed Protein Packing within Single Crystals.

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